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1.
Int J Mol Sci ; 25(9)2024 Apr 24.
Article in English | MEDLINE | ID: mdl-38731849

ABSTRACT

Tumors of the head and neck, more specifically the squamous cell carcinoma, often show upregulation of the Hedgehog signaling pathway. However, almost nothing is known about its role in the sinonasal adenocarcinoma, either in intestinal or non-intestinal subtypes. In this work, we have analyzed immunohistochemical staining of six Hedgehog pathway proteins, sonic Hedgehog (SHH), Indian Hedgehog (IHH), Patched1 (PTCH1), Gli family zinc finger 1 (GLI1), Gli family zinc finger 2 (GLI2), and Gli family zinc finger 3 (GLI3), on 21 samples of sinonasal adenocarcinoma and compared them with six colon adenocarcinoma and three salivary gland tumors, as well as with matching healthy tissue, where available. We have detected GLI2 and PTCH1 in the majority of samples and also GLI1 in a subset of samples, while GLI3 and the ligands SHH and IHH were generally not detected. PTCH1 pattern of staining shows an interesting pattern, where healthy samples are mostly positive in the stromal compartment, while the signal shifts to the tumor compartment in tumors. This, taken together with a stronger signal of GLI2 in tumors compared to non-tumor tissues, suggests that the Hedgehog pathway is indeed activated in sinonasal adenocarcinoma. As Hedgehog pathway inhibitors are being tested in combination with other therapies for head and neck squamous cell carcinoma, this could provide a therapeutic option for patients with sinonasal adenocarcinoma as well.


Subject(s)
Adenocarcinoma , Hedgehog Proteins , Immunohistochemistry , Signal Transduction , Zinc Finger Protein Gli2 , Humans , Hedgehog Proteins/metabolism , Hedgehog Proteins/genetics , Adenocarcinoma/metabolism , Adenocarcinoma/pathology , Male , Female , Zinc Finger Protein Gli2/metabolism , Zinc Finger Protein Gli2/genetics , Middle Aged , Pilot Projects , Aged , Patched-1 Receptor/metabolism , Patched-1 Receptor/genetics , Zinc Finger Protein GLI1/metabolism , Zinc Finger Protein GLI1/genetics , Zinc Finger Protein Gli3/metabolism , Zinc Finger Protein Gli3/genetics , Paranasal Sinus Neoplasms/metabolism , Paranasal Sinus Neoplasms/pathology , Adult , Gene Expression Regulation, Neoplastic , Nerve Tissue Proteins , Nuclear Proteins
2.
Proc Natl Acad Sci U S A ; 121(20): e2321711121, 2024 May 14.
Article in English | MEDLINE | ID: mdl-38713624

ABSTRACT

During development, neural stem cells in the cerebral cortex, also known as radial glial cells (RGCs), generate excitatory neurons, followed by production of cortical macroglia and inhibitory neurons that migrate to the olfactory bulb (OB). Understanding the mechanisms for this lineage switch is fundamental for unraveling how proper numbers of diverse neuronal and glial cell types are controlled. We and others recently showed that Sonic Hedgehog (Shh) signaling promotes the cortical RGC lineage switch to generate cortical oligodendrocytes and OB interneurons. During this process, cortical RGCs generate intermediate progenitor cells that express critical gliogenesis genes Ascl1, Egfr, and Olig2. The increased Ascl1 expression and appearance of Egfr+ and Olig2+ cortical progenitors are concurrent with the switch from excitatory neurogenesis to gliogenesis and OB interneuron neurogenesis in the cortex. While Shh signaling promotes Olig2 expression in the developing spinal cord, the exact mechanism for this transcriptional regulation is not known. Furthermore, the transcriptional regulation of Olig2 and Egfr has not been explored. Here, we show that in cortical progenitor cells, multiple regulatory programs, including Pax6 and Gli3, prevent precocious expression of Olig2, a gene essential for production of cortical oligodendrocytes and astrocytes. We identify multiple enhancers that control Olig2 expression in cortical progenitors and show that the mechanisms for regulating Olig2 expression are conserved between the mouse and human. Our study reveals evolutionarily conserved regulatory logic controlling the lineage switch of cortical neural stem cells.


Subject(s)
Basic Helix-Loop-Helix Transcription Factors , Cerebral Cortex , ErbB Receptors , Hedgehog Proteins , Nerve Tissue Proteins , Neural Stem Cells , Neurogenesis , Oligodendrocyte Transcription Factor 2 , PAX6 Transcription Factor , Animals , Neurogenesis/physiology , Cerebral Cortex/metabolism , Cerebral Cortex/cytology , Basic Helix-Loop-Helix Transcription Factors/metabolism , Basic Helix-Loop-Helix Transcription Factors/genetics , ErbB Receptors/metabolism , ErbB Receptors/genetics , Mice , Oligodendrocyte Transcription Factor 2/metabolism , Oligodendrocyte Transcription Factor 2/genetics , Nerve Tissue Proteins/metabolism , Nerve Tissue Proteins/genetics , Hedgehog Proteins/metabolism , Hedgehog Proteins/genetics , PAX6 Transcription Factor/metabolism , PAX6 Transcription Factor/genetics , Neural Stem Cells/metabolism , Neural Stem Cells/cytology , Homeodomain Proteins/metabolism , Homeodomain Proteins/genetics , Zinc Finger Protein Gli3/metabolism , Zinc Finger Protein Gli3/genetics , Eye Proteins/metabolism , Eye Proteins/genetics , Repressor Proteins/metabolism , Repressor Proteins/genetics , Paired Box Transcription Factors/metabolism , Paired Box Transcription Factors/genetics , Neuroglia/metabolism , Neuroglia/cytology , Gene Expression Regulation, Developmental , Signal Transduction , Olfactory Bulb/metabolism , Olfactory Bulb/cytology , Cell Lineage , Humans
3.
Front Endocrinol (Lausanne) ; 15: 1333284, 2024.
Article in English | MEDLINE | ID: mdl-38370352

ABSTRACT

Prostate cancer (PCa) is the most prevalent cause of death in the male population worldwide. The G Protein-Coupled Estrogen Receptor (GPER) has been gaining relevance in the development of PCa. Hedgehog (Hh) pathway activation is associated with aggressiveness, metastasis, and relapse in PCa patients. To date, no studies have evaluated the crosstalk between the GPER and the Hh pathway along different group grades in PCa. We conducted an analysis of paraffin-embedded tissues derived from patients with different prognostic grade of PCa using immunohistochemistry. Expression and correlation between GPER and glioma associated oncogene homologue (GLI) transcriptional factors in the parenchyma and stroma of PCa tumors were evaluated. Our results indicate that GPER is highly expressed in the nucleus and increases with higher grade groups. Additionally, GPER's expression correlates with pGLI3 nuclear expression across different grade groups in PCa tissues; however, whether the receptor induces the activation of GLI transcriptional factors, or the latter modulate the expression of GPER is yet to be discovered, as well as the functional consequence of this correlation.


Subject(s)
Prostatic Neoplasms , Receptors, Estrogen , Receptors, G-Protein-Coupled , Zinc Finger Protein Gli3 , Humans , Male , Neoplasm Grading , Neoplasm Recurrence, Local , Prostatic Neoplasms/pathology , Transcription Factors
4.
Aging (Albany NY) ; 15(24): 14996-15024, 2023 Dec 20.
Article in English | MEDLINE | ID: mdl-38126976

ABSTRACT

Drug resistance in breast cancer (BC) is a clinical challenge. Exploring the mechanism and identifying a precise predictive biomarker for the drug resistance in BC is critical. Three first-line drug (paclitaxel, doxorubicin and tamoxifen) resistance datasets in BC from GEO were merged to obtain 1,461 differentially expressed genes for weighted correlation network analysis, resulting in identifying ATRX as the hub gene. ATRX is a chromatin remodelling protein, therefore, ATRX-associated transcription factors were explored, thereby identifying the network of AR, GLI3 and GATA2. GO and KEGG analyses revealed immunity, transcriptional regulation and endocrinotherapy/chemotherapy resistance were enriched. Moreover, CIBERSORT revealed immunity regulation was inhibited in the resistance group. ssGSEA showed a significantly lower immune status in the ATRX-Low group compared to the ATRX-High group. Furthermore, the peaks of H3K9me3 ChIP-seq on the four genes were higher in normal tissues than in BC tissues. Notably, the frequency of ATRX mutation was higher than BRCA in BC. Moreover, depressed ATRX revealed worse overall survival and disease-free survival in the human epidermal growth factor receptor 2 (HER2)-/hormone receptor (HR)+ BC. Additionally, depressed ATRX predicted poor results for patients who underwent endocrinotherapy or chemotherapy in the HER2-/HR+ BC subgroup. A nomogram based on ATRX, TILs and ER exhibited a significantly accurate survival prediction ability. Importantly, overexpression of ATRX significantly inhibited the IC50 of the three first-line drugs on MCF-7 cell. Thus, ATRX is an efficient predictive biomarker for endocrinotherapy and chemotherapy resistance in HER2-/HR+ BC and acts by suppressing the AR, GLI3 and GATA2 transcriptional network.


Subject(s)
Breast Neoplasms , Drug Resistance, Neoplasm , X-linked Nuclear Protein , Female , Humans , Breast Neoplasms/drug therapy , Breast Neoplasms/genetics , Breast Neoplasms/metabolism , Doxorubicin/therapeutic use , GATA2 Transcription Factor/genetics , Gene Regulatory Networks , Nerve Tissue Proteins , Paclitaxel/therapeutic use , Receptor, ErbB-2/genetics , Receptor, ErbB-2/metabolism , Tamoxifen/therapeutic use , X-linked Nuclear Protein/genetics , Zinc Finger Protein Gli3 , Drug Resistance, Neoplasm/genetics , Receptors, Androgen/genetics , Receptors, Androgen/metabolism
5.
Dev Biol ; 504: 128-136, 2023 12.
Article in English | MEDLINE | ID: mdl-37805104

ABSTRACT

Transcriptional responses to the Hedgehog (HH) signaling pathway are primarily modulated by GLI repression in the mouse limb. Previous studies suggested a role for the BAF chromatin remodeling complex in mediating GLI repression. Consistent with this possibility, the core BAF complex protein SMARCC1 is present at most active limb enhancers including the majority of GLI enhancers. However, in contrast to GLI repression which reduces chromatin accessibility, SMARCC1 maintains chromatin accessibility at most enhancers, including those bound by GLI. Moreover, SMARCC1 binding at GLI-regulated enhancers occurs independently of GLI3. Consistent with previous studies, some individual GLI target genes are mis-regulated in Smarcc1 conditional knockouts, though most GLI target genes are unaffected. Moreover, SMARCC1 is not necessary for mediating constitutive GLI repression in HH mutant limb buds. We conclude that SMARCC1 does not mediate GLI3 repression, which we propose utilizes alternative chromatin remodeling complexes.


Subject(s)
Chromatin , Limb Buds , Animals , Mice , Chromatin/metabolism , Hedgehog Proteins/genetics , Hedgehog Proteins/metabolism , Limb Buds/metabolism , Nerve Tissue Proteins/metabolism , Zinc Finger Protein GLI1/genetics , Zinc Finger Protein GLI1/metabolism , Zinc Finger Protein Gli3/genetics , Zinc Finger Protein Gli3/metabolism
7.
J Med Genet ; 60(5): 505-510, 2023 05.
Article in English | MEDLINE | ID: mdl-36411030

ABSTRACT

Many genetic testing methodologies are biased towards picking up structural variants (SVs) that alter copy number. Copy-neutral rearrangements such as inversions are therefore likely to suffer from underascertainment. In this study, manual review prompted by a virtual multidisciplinary team meeting and subsequent bioinformatic prioritisation of data from the 100K Genomes Project was performed across 43 genes linked to well-characterised skeletal disorders. Ten individuals from three independent families were found to harbour diagnostic inversions. In two families, inverted segments of 1.2/14.8 Mb unequivocally disrupted GLI3 and segregated with skeletal features consistent with Greig cephalopolysyndactyly syndrome. For one family, phenotypic blending was due to the opposing breakpoint lying ~45 kb from HOXA13 In the third family, long suspected to have Marfan syndrome, a 2.0 Mb inversion disrupting FBN1 was identified. These findings resolved lengthy diagnostic odysseys of 9-20 years and highlight the importance of direct interaction between clinicians and data-analysts. These exemplars of a rare mutational class inform future SV prioritisation strategies within the NHS Genomic Medicine Service and similar genome sequencing initiatives. In over 30 years since these two disease-gene associations were identified, large inversions have yet to be described and so our results extend the mutational spectra linked to these conditions.


Subject(s)
Bone Diseases, Developmental , Chromosome Inversion , Humans , Base Sequence , Bone Diseases, Developmental/diagnosis , Bone Diseases, Developmental/genetics , Chromosome Inversion/genetics , Chromosome Mapping , Fibrillin-1/genetics , Genetic Testing , Mutation , Nerve Tissue Proteins/genetics , Zinc Finger Protein Gli3/genetics
8.
Zhonghua Yi Xue Yi Chuan Xue Za Zhi ; 40(1): 92-95, 2023 Jan 10.
Article in Chinese | MEDLINE | ID: mdl-36585009

ABSTRACT

OBJECTIVE: To explore the clinical and genetic characteristics of a child with Pallister-Hall syndrome (PHS). METHODS: DNA was extracted from peripheral blood sample from the child and subjected to whole exome sequencing. Suspected variants were verified by Sanger sequencing of his family members. RESULTS: Genetic testing revealed that the child has harbored a heterozygous c.3320_3330delGGTACGAGCAG (p.G1107Afs×18) variant of the GLI3 gene. Neither parent was found to carry the same variant. CONCLUSION: The c.3320_3330delGGTACGAGCAG (p.G1107Afs×18) frameshift variant of the GLI3 gene probably underlay the pathogenesis of PHS in this child. Genetic testing should be considered for patients featuring hypothalamic hamartoma and central polydactyly.


Subject(s)
Hamartoma , Pallister-Hall Syndrome , Polydactyly , Humans , Child , Pallister-Hall Syndrome/genetics , Kruppel-Like Transcription Factors/genetics , Zinc Finger Protein Gli3/genetics , Polydactyly/genetics , Hamartoma/genetics , Hamartoma/pathology , Nerve Tissue Proteins/genetics
9.
J Pediatr Urol ; 19(1): 23.e1-23.e9, 2023 02.
Article in English | MEDLINE | ID: mdl-36272934

ABSTRACT

INTRODUCTION AND OBJECTIVE: Stress urinary incontinence is of concern in both pediatric and adult population. Double mutant GLI family zinc finger Gli2+/-; Gli3Δ699/+ murine model of stress incontinence has been recently developed as a reliable model which does not require surgical manipulation to create incontinence and is shown to survive to adulthood. The aim of this study was to establish the etiology of incontinence in the double mutant Gli2+/-; Gli3Δ699/+ mice. STUDY DESIGN: We used 13 cluster of differentiation 1 (CD-1) mice (7-9 weeks) for demonstration of histology of the bladder and urethra. There were 3 Wild Gli2+/- females, 2 Wild Gli2+/- males, 4 Gli2+/-;Gli3Δ699/+ females and 4 Gli2+/-;Gli3Δ699/+ males. The Wild Gli2+/- mice served as the control group and Gli2+/-;Gli3Δ699/+ mice served as the test group. Additionally, eight 16.5 days mice (2 each of Wild Gli2+/- females, Wild Gli2+/- males, double knockout (DKO) Gli2+/-;Gli3Δ699/+ females and Gli2+/-;Gli3Δ699/+ males) were used to assess the histology of the spinal cord. The gross appearance of bladder and urethra was studied using ink injection assays. Immunohistochemistry was done for smooth muscle actin and cytokeratin. RESULTS: Gross and histologic appearance confirmed the previously reported widening of bladder outlet and hypoplasia of smooth muscles in female urethra and also established them in the male urethra of Gli2+/-;Gli3Δ699/+ mice compared to Gli2+/- mice. The double knockout mice were smaller than the Gli2 mice (5.2 vs 6.1 cm, p = 0.002). Immunohistochemistry demonstrated epithelial hyperplasia and smooth muscle hypoplasia. Additionally, there was prostatic hypoplasia in the Gli2+/-;Gli3Δ699/+ male mice. The spinal cord length for body size appeared comparable between the Gli2+/- and Gli2+/-;Gli3Δ699/+ mice but histological evaluation revealed abnormal development of the caudal end of the vertebral body with premature termination of the spinal cord (Figure). DISCUSSION: The histological changes in the bladder neck and urethra were consistent to those previously reported. While previous report described the findings in female mice only, we confirmed that these findings are also present in males as well as prostatic hypoplasia, a possible additional factor leading to stress incontinence. The most important finding in the present study however, was the detection of premature termination of spinal cord in the DKO Gli2+/-; Gli3Δ699/+ mice which has not been reported previously and is likely a major contributor to incontinence in this model. CONCLUSION: The incontinence in male as well as female Gli2+/-; Gli3Δ699/+ mice is due to both myogenic and neurogenic involvement. These double knockout mice are a valuable model of stress incontinence related to neurogenic bladder due to low outlet resistance.


Subject(s)
Transcription Factors , Urinary Incontinence , Male , Female , Mice , Animals , Transcription Factors/physiology , Trans-Activators , Mice, Knockout , Kruppel-Like Transcription Factors , Zinc Finger Protein Gli2 , Zinc Finger Protein Gli3 , Hedgehog Proteins , Nerve Tissue Proteins
10.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-970885

ABSTRACT

OBJECTIVE@#To explore the clinical and genetic characteristics of a child with Pallister-Hall syndrome (PHS).@*METHODS@#DNA was extracted from peripheral blood sample from the child and subjected to whole exome sequencing. Suspected variants were verified by Sanger sequencing of his family members.@*RESULTS@#Genetic testing revealed that the child has harbored a heterozygous c.3320_3330delGGTACGAGCAG (p.G1107Afs×18) variant of the GLI3 gene. Neither parent was found to carry the same variant.@*CONCLUSION@#The c.3320_3330delGGTACGAGCAG (p.G1107Afs×18) frameshift variant of the GLI3 gene probably underlay the pathogenesis of PHS in this child. Genetic testing should be considered for patients featuring hypothalamic hamartoma and central polydactyly.


Subject(s)
Humans , Child , Pallister-Hall Syndrome/genetics , Kruppel-Like Transcription Factors/genetics , Zinc Finger Protein Gli3/genetics , Polydactyly/genetics , Hamartoma/pathology , Nerve Tissue Proteins/genetics
11.
Am J Med Genet C Semin Med Genet ; 190(3): 264-278, 2022 09.
Article in English | MEDLINE | ID: mdl-36165461

ABSTRACT

Pallister-Hall syndrome (PHS) is a rare autosomal dominant disease diagnosed by the presence of hypothalamic hamartoma, mesoaxial polydactyly and a truncating variant in the middle third of the GLI-Kruppel family member 3 (GLI3) gene. PHS may also include a wide range of clinical phenotypes affecting multiple organ systems including congenital anomalies of the kidney and urinary tract (CAKUT). The observed clinical phenotypes are consistent with the essential role of GLI3, a transcriptional effector in the hedgehog (Hh) signaling pathway, in organogenesis. However, the mechanisms by which truncation of GLI3 in PHS results in such a variety of clinical phenotypes with variable severity, even within the same organ, remain unclear. In this study we focus on presentation of CAKUT in PHS. A systematic analysis of reported PHS patients (n = 78) revealed a prevalence of 26.9% (21/78) of CAKUT. Hypoplasia (± dysplasia) and agenesis were the two main types of CAKUT; bilateral and unilateral CAKUT were reported with equal frequency. Examination of clinical phenotypes with CAKUT revealed a significant association between CAKUT and craniofacial defects, bifid epiglottis and a Disorder of Sex Development, specifically affecting external genitalia. Lastly, we determined that PHS patients with CAKUT predominately had substitution type variants (as opposed to deletion type variants in non-CAKUT PHS patients) in the middle third of the GLI3 gene. These results provide a foundation for future work aimed at uncovering the molecular mechanisms by which variant GLI3 result in the wide range and severity of clinical features observed in PHS.


Subject(s)
Abnormalities, Multiple , Pallister-Hall Syndrome , Urinary Tract , Humans , Pallister-Hall Syndrome/diagnosis , Pallister-Hall Syndrome/genetics , Zinc Finger Protein Gli3/genetics , Kruppel-Like Transcription Factors/genetics , Abnormalities, Multiple/genetics , Nerve Tissue Proteins/genetics , Hedgehog Proteins , Kidney
12.
Oncotarget ; 13: 944-959, 2022.
Article in English | MEDLINE | ID: mdl-35937499

ABSTRACT

The transcription factor GLI3 is a member of the GLI family and has been shown to be regulated by canonical hedgehog (HH) signaling through smoothened (SMO). Little is known about SMO-independent regulation of GLI3. Here, we identify TLR signaling as a novel pathway regulating GLI3 expression. We show that GLI3 expression is induced by LPS/TLR4 in human monocyte cell lines and peripheral blood CD14+ cells. Further analysis identified TRIF, but not MyD88, signaling as the adapter used by TLR4 to regulate GLI3. Using pharmacological and genetic tools, we identified IRF3 as the transcription factor regulating GLI3 downstream of TRIF. Furthermore, using additional TLR ligands that signal through TRIF such as the TLR4 ligand, MPLA and the TLR3 ligand, Poly(I:C), we confirm the role of TRIF-IRF3 in the regulation of GLI3. We found that IRF3 directly binds to the GLI3 promoter region and this binding was increased upon stimulation of TRIF-IRF3 with Poly(I:C). Furthermore, using Irf3 -/- MEFs, we found that Poly(I:C) stimulation no longer induced GLI3 expression. Finally, using macrophages from mice lacking Gli3 expression in myeloid cells (M-Gli3-/- ), we found that in the absence of Gli3, LPS stimulated macrophages secrete less CCL2 and TNF-α compared with macrophages from wild-type (WT) mice. Taken together, these results identify a novel TLR-TRIF-IRF3 pathway that regulates the expression of GLI3 that regulates inflammatory cytokines and expands our understanding of the non-canonical signaling pathways involved in the regulation of GLI transcription factors.


Subject(s)
Lipopolysaccharides , Toll-Like Receptor 4 , Adaptor Proteins, Vesicular Transport/metabolism , Animals , Cytokines/metabolism , Hedgehog Proteins/metabolism , Humans , Interferon Regulatory Factor-3/genetics , Interferon Regulatory Factor-3/metabolism , Ligands , Lipopolysaccharides/pharmacology , Mice , Myeloid Differentiation Factor 88/genetics , NF-kappa B/metabolism , Nerve Tissue Proteins , Poly I-C/pharmacology , Toll-Like Receptor 3/genetics , Toll-Like Receptor 3/metabolism , Toll-Like Receptor 4/metabolism , Toll-Like Receptors/metabolism , Tumor Necrosis Factor-alpha/metabolism , Zinc Finger Protein Gli3/genetics , Zinc Finger Protein Gli3/metabolism
13.
Stem Cell Reports ; 17(9): 2064-2080, 2022 09 13.
Article in English | MEDLINE | ID: mdl-35931079

ABSTRACT

Mutations in the embryonic ectoderm development (EED) cause Weaver syndrome, but whether and how EED affects embryonic brain development remains elusive. Here, we generated a mouse model in which Eed was deleted in the forebrain to investigate the role of EED. We found that deletion of Eed decreased the number of upper-layer neurons but not deeper-layer neurons starting at E16.5. Transcriptomic and genomic occupancy analyses revealed that the epigenetic states of a group of cortical neurogenesis-related genes were altered in Eed knockout forebrains, followed by a decrease of H3K27me3 and an increase of H3K27ac marks within the promoter regions. The switching of H3K27me3 to H3K27ac modification promoted the recruitment of RNA-Pol2, thereby enhancing its expression level. The small molecule activator SAG or Ptch1 knockout for activating Hedgehog signaling can partially rescue aberrant cortical neurogenesis. Taken together, we proposed a novel EED-Gli3-Gli1 regulatory axis that is critical for embryonic brain development.


Subject(s)
Brain , Neurogenesis , Polycomb Repressive Complex 2 , Zinc Finger Protein GLI1 , Zinc Finger Protein Gli3 , Animals , Brain/growth & development , Epigenesis, Genetic , Hedgehog Proteins/genetics , Hedgehog Proteins/metabolism , Histones/metabolism , Mice , Nerve Tissue Proteins/metabolism , Neurogenesis/genetics , Polycomb Repressive Complex 2/genetics , Polycomb Repressive Complex 2/metabolism , Zinc Finger Protein GLI1/genetics , Zinc Finger Protein GLI1/metabolism , Zinc Finger Protein Gli3/genetics , Zinc Finger Protein Gli3/metabolism
14.
PLoS Genet ; 18(7): e1010315, 2022 07.
Article in English | MEDLINE | ID: mdl-35867772

ABSTRACT

Proper Hedgehog (HH) signaling is essential for embryonic development, while aberrant HH signaling drives pediatric and adult cancers. HH signaling is frequently dysregulated in pancreatic cancer, yet its role remains controversial, with both tumor-promoting and tumor-restraining functions reported. Notably, the GLI family of HH transcription factors (GLI1, GLI2, GLI3), remain largely unexplored in pancreatic cancer. We therefore investigated the individual and combined contributions of GLI1-3 to pancreatic cancer progression. At pre-cancerous stages, fibroblast-specific Gli2/Gli3 deletion decreases immunosuppressive macrophage infiltration and promotes T cell infiltration. Strikingly, combined loss of Gli1/Gli2/Gli3 promotes macrophage infiltration, indicating that subtle changes in Gli expression differentially regulate immune infiltration. In invasive tumors, Gli2/Gli3 KO fibroblasts exclude immunosuppressive myeloid cells and suppress tumor growth by recruiting natural killer cells. Finally, we demonstrate that fibroblasts directly regulate macrophage and T cell migration through the expression of Gli-dependent cytokines. Thus, the coordinated activity of GLI1-3 directs the fibroinflammatory response throughout pancreatic cancer progression.


Subject(s)
Hedgehog Proteins , Pancreatic Neoplasms , Adult , Child , Female , Hedgehog Proteins/genetics , Hedgehog Proteins/metabolism , Humans , Kruppel-Like Transcription Factors/genetics , Kruppel-Like Transcription Factors/metabolism , Nerve Tissue Proteins/metabolism , Pancreatic Neoplasms/genetics , Pregnancy , Zinc Finger Protein GLI1/genetics , Zinc Finger Protein Gli2/genetics , Zinc Finger Protein Gli3/genetics
15.
Mol Genet Genomic Med ; 10(7): e1968, 2022 07.
Article in English | MEDLINE | ID: mdl-35546307

ABSTRACT

BACKGROUND: Polydactyly is a common congenital malformation characterized by the presence of supernumerary fingers or toes. In this case study, we sought to identify the causative pathogenic factor in a family from a northern region of China affected by non-syndromic postaxial polydactyly (PAP). METHODS: After recruiting a three-generation family with PAP, whole-exome sequencing was performed to identify the causative variant. In silico analysis and Sanger sequencing were used to validate the variant. RESULTS: We identified a novel heterozygous frameshift variant (NM_000168.6:c.4540delG, p.Asp1514Thrfs*5) in the transcriptional activator (TA1) domain of the GLI3 gene. CONCLUSION: The novel frameshift variant identified in this study further confirms the relationship between non-syndromic PAP and GLI3 and extends the previously established mutational and phenotypic spectra of GLI3.


Subject(s)
Nerve Tissue Proteins , Polydactyly , Zinc Finger Protein Gli3 , Fingers/abnormalities , Humans , Nerve Tissue Proteins/genetics , Pedigree , Phenotype , Polydactyly/genetics , Toes/abnormalities , Zinc Finger Protein Gli3/genetics
16.
Pediatr Neurol ; 131: 1-3, 2022 06.
Article in English | MEDLINE | ID: mdl-35436645

ABSTRACT

BACKGROUND: GLI3 encodes a zinc finger transcription factor that plays a role in the sonic hedgehog pathway. Germline pathogenic GLI3 variants are associated with Greig cephalopolysyndactyly and Pallister-Hall syndromes, two syndromes involving brain malformation and polydactyly. METHODS: We identified patients with pathogenic GLI3 variants and brain malformations in the absence of polydactyly or other skeletal malformation. RESULTS: Two patients were identified. Patient #1 is a 4-year-old boy with hypotonia and global developmental delay. Brain MRI showed a focal cortical dysplasia, but he had no history of seizures. Genetic testing identified a de novo likely pathogenic GLI3 variant: c.4453A>T, p.Asn1485Tyr. Patient #2 is a 4-year-old boy with hypotonia, macrocephaly, and global developmental delay. His brain MRI showed partial agenesis of the corpus callosum, dilatation of the right lateral ventricle, and absent hippocampal commissure. Genetic testing identified a de novo pathogenic GLI3 variant: c.4236_4237del, p.Gln1414AspfsTer21. Neither patient had polydactyly or any apparent skeletal abnormality. CONCLUSIONS: These patients widen the spectrum of clinical features that may be associated with GLI3 pathogenic variants to include hypotonia, focal cortical dysplasia, and other brain malformations, in the absence of apparent skeletal malformation. Further study is needed to determine if GLI3 pathogenic variants are a more common cause of focal cortical dysplasia or corpus callosum agenesis than presently recognized.


Subject(s)
Malformations of Cortical Development , Polydactyly , Brain/diagnostic imaging , Brain/pathology , Child, Preschool , Hedgehog Proteins/genetics , Humans , Male , Malformations of Cortical Development/complications , Muscle Hypotonia/complications , Muscle Hypotonia/genetics , Nerve Tissue Proteins/genetics , Phenotype , Polydactyly/complications , Polydactyly/diagnostic imaging , Polydactyly/genetics , Syndrome , Zinc Finger Protein Gli3/genetics
17.
Cell Rep ; 38(5): 110312, 2022 02 01.
Article in English | MEDLINE | ID: mdl-35108539

ABSTRACT

The Zic family of zinc finger transcription factors plays a critical role in multiple developmental processes. Using loss-of-function studies, we find that Zic5 is important for the differentiation of retinal pigmented epithelium (RPE) and the rod photoreceptor layer through suppressing Hedgehog (Hh) signaling. Further, Zic5 interacts with the critical Hh signaling molecule, Gli3, through the zinc finger domains of both proteins. This Zic5-Gli3 interaction disrupts Gli3/Gli3 homodimerization, resulting in Gli3 protein stabilization via a reduction in Gli3 ubiquitination. During embryonic Hh signaling, the activator form of Gli is normally converted to a repressor form through proteosome-mediated processing of Gli3, and the ratio of Gli3 repressor to full-length (activator) form of Gli3 determines the Gli3 repressor output required for normal eye development. Our results suggest Zic5 is a critical player in regulating Gli3 stability for the proper differentiation of RPE and rod photoreceptor layer during Xenopus eye development.


Subject(s)
DNA-Binding Proteins/metabolism , Nerve Tissue Proteins/metabolism , Retina/growth & development , Xenopus Proteins/metabolism , Zinc Finger Protein Gli3/metabolism , Animals , Cell Differentiation/physiology , Gene Expression Regulation, Developmental/physiology , Hedgehog Proteins/metabolism , Kruppel-Like Transcription Factors/metabolism , Repressor Proteins/metabolism , Signal Transduction/physiology , Trans-Activators/metabolism , Transcription Factors/metabolism , Xenopus
18.
Mol Genet Genomic Med ; 10(4): e1895, 2022 04.
Article in English | MEDLINE | ID: mdl-35218158

ABSTRACT

BACKGROUND: Polydactyly and syndactyly are congenital limb deformities, segregating in an autosomal-dominant fashion. The variants in the GLI3 gene are closely related to congenital limb malformations. However, the causes underlying polydactyly and syndactyly are not well understood. METHODS: We conducted a whole-exome sequencing on two four-generation Chinese families with polydactyly and syndactyly. Then c.2374C>T and c.1728C>A mutant plasmids were transfected to HEK293T cells and mice limb bud cells to explore the functional consequences of these variants. Western blot and real-time quantitative PCR were used to analyze the expression of GLI3 and Shh. RESULTS: In these two families, the known GLI3 variant (NM_000168.6:c.2374C>T) and the novel GLI3 variant (NM_000168.6:c.1728C>A) contributed to polydactyly and syndactyly. Additionally, the GLI3 c.2374C>T mutant plasmid led to truncated GLI3 protein, and the GLI3 c.1728C>A mutant plasmid led to degraded GLI3 protein. Simultaneously, we demonstrated that the GLI3-mutant plasmids led to decreased Shh expression in mice limb bud cells. CONCLUSION: We demonstrated that the novel GLI3 variant (c.1728C>A) and known GLI3 variant (c.2374C>T) contributed to the malformations in two four-generation pedigrees with polydactyly and syndactyly by affecting SHH signaling.


Subject(s)
Limb Deformities, Congenital , Polydactyly , Syndactyly , Animals , Codon, Nonsense , HEK293 Cells , Hedgehog Proteins/genetics , Hedgehog Proteins/metabolism , Humans , Mice , Nerve Tissue Proteins/genetics , Pedigree , Polydactyly/genetics , Syndactyly/genetics , Zinc Finger Protein Gli3/genetics
19.
Cell Signal ; 92: 110278, 2022 04.
Article in English | MEDLINE | ID: mdl-35134468

ABSTRACT

Hedgehog signaling pathway has been previously elucidated to be inappropriately activated in many human cancers, including ovarian and breast cancer. However, mechanistic contribution of GLI3, one of the terminal effectors of the pathway, to ovarian and mammary cancer development is underexplored. In this study, we investigated whether GLI3 is necessary for the growth and migration of ovarian and breast cancer cells and further explored the underlying mechanism of GLI3-mediated oncogenesis. We report that GLI3 knockdown inhibited growth and migration of androgen receptor (AR)-positive ovarian and breast cancer cells, but not AR-negative ovarian and breast cancer cells. Furthermore, knockdown of AR expression was effective in inhibiting the growth and migration of AR-positive ovarian and breast cancer cells in the presence of GLI3, but not in GLI3 knockdown cells. Similarly, ectopic expression of AR promoted the growth and migration of AR-negative ovarian and breast cancer cells in the presence of GLI3, but not in GLI3 knockdown cells. GLI3 and AR co-immunoprecipitated each other. GLI3 expression was negatively associated with overall survival of ovarian or breast patients whose tumors expressed a high level of AR. Our findings suggest that GLI3 and AR not only physically interact, but also are mutually dependent for their malignancy-promoting activity in ovarian and breast cancer cells. GLI3-specific inhibitors may be novel therapeutics for AR-expressing ovarian and breast cancers.


Subject(s)
Breast Neoplasms , Receptors, Androgen , Breast Neoplasms/pathology , Cell Line, Tumor , Female , Hedgehog Proteins , Humans , Nerve Tissue Proteins/metabolism , Receptors, Androgen/metabolism , Signal Transduction , Zinc Finger Protein Gli3/genetics , Zinc Finger Protein Gli3/metabolism
20.
Cells ; 11(2)2022 01 10.
Article in English | MEDLINE | ID: mdl-35053334

ABSTRACT

The ventricular-subventricular zone (V-SVZ) is a postnatal germinal niche. It holds a large population of neural stem cells (NSCs) that generate neurons and oligodendrocytes for the olfactory bulb and (primarily) the corpus callosum, respectively. These NSCs are heterogeneous and generate different types of neurons depending on their location. Positional identity among NSCs is thought to be controlled in part by intrinsic pathways. However, extrinsic cell signaling through the secreted ligand Sonic hedgehog (Shh) is essential for neurogenesis in both the dorsal and ventral V-SVZ. Here we used a genetic approach to investigate the role of the transcription factors GLI2 and GLI3 in the proliferation and cell fate of dorsal and ventral V-SVZ NSCs. We find that while GLI3 is expressed in stem cell cultures from both dorsal and ventral V-SVZ, the repressor form of GLI3 is more abundant in dorsal V-SVZ. Despite this high dorsal expression and the requirement for other Shh pathway members, GLI3 loss affects the generation of ventrally-, but not dorsally-derived olfactory interneurons in vivo and does not affect trilineage differentiation in vitro. However, loss of GLI3 in the adult dorsal V-SVZ in vivo results in decreased numbers of OLIG2-expressing progeny, indicating a role in gliogenesis.


Subject(s)
Adult Stem Cells/metabolism , Nerve Tissue Proteins/metabolism , Neural Stem Cells/metabolism , Oligodendrocyte Transcription Factor 2/metabolism , Zinc Finger Protein Gli3/metabolism , Adult Stem Cells/cytology , Animals , Cell Differentiation , Cells, Cultured , Interneurons/metabolism , Lateral Ventricles/metabolism , Mice , Neural Stem Cells/cytology , Smoothened Receptor/metabolism
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