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1.
Cancer Cell ; 41(7): 1242-1260.e6, 2023 07 10.
Article in English | MEDLINE | ID: mdl-37267953

ABSTRACT

The accumulation of senescent cells in the tumor microenvironment can drive tumorigenesis in a paracrine manner through the senescence-associated secretory phenotype (SASP). Using a new p16-FDR mouse line, we show that macrophages and endothelial cells are the predominant senescent cell types in murine KRAS-driven lung tumors. Through single cell transcriptomics, we identify a population of tumor-associated macrophages that express a unique array of pro-tumorigenic SASP factors and surface proteins and are also present in normal aged lungs. Genetic or senolytic ablation of senescent cells, or macrophage depletion, result in a significant decrease in tumor burden and increased survival in KRAS-driven lung cancer models. Moreover, we reveal the presence of macrophages with senescent features in human lung pre-malignant lesions, but not in adenocarcinomas. Taken together, our results have uncovered the important role of senescent macrophages in the initiation and progression of lung cancer, highlighting potential therapeutic avenues and cancer preventative strategies.


Subject(s)
Cellular Senescence , Lung Neoplasms , Aged , Animals , Humans , Mice , Carcinogenesis/genetics , Carcinogenesis/metabolism , Cellular Senescence/genetics , Endothelial Cells , Lung Neoplasms/genetics , Lung Neoplasms/metabolism , Macrophages/metabolism , Proto-Oncogene Proteins p21(ras)/genetics , Proto-Oncogene Proteins p21(ras)/metabolism , Tumor Microenvironment
2.
Mol Oncol ; 16(3): 630-647, 2022 02.
Article in English | MEDLINE | ID: mdl-34520622

ABSTRACT

Wilms tumour (WT), an embryonal kidney cancer, has been extensively characterised for genetic and epigenetic alterations, but a proportion of WTs still lack identifiable abnormalities. To uncover DNA methylation changes critical for WT pathogenesis, we compared the epigenome of foetal kidney with two WT cell lines, filtering our results to remove common cancer-associated epigenetic changes and to enrich for genes involved in early kidney development. This identified four hypermethylated genes, of which ESRP2 (epithelial splicing regulatory protein 2) was the most promising for further study. ESRP2 was commonly repressed by DNA methylation in WT, and this occurred early in WT development (in nephrogenic rests). ESRP2 expression was reactivated by DNA methyltransferase inhibition in WT cell lines. When ESRP2 was overexpressed in WT cell lines, it inhibited cellular proliferation in vitro, and in vivo it suppressed tumour growth of orthotopic xenografts in nude mice. RNA-seq of the ESRP2-expressing WT cell lines identified several novel splicing targets. We propose a model in which epigenetic inactivation of ESRP2 disrupts the mesenchymal to epithelial transition in early kidney development to generate WT.


Subject(s)
Kidney Neoplasms , Wilms Tumor , Animals , Cell Line, Tumor , DNA/metabolism , DNA Methylation/genetics , Genes, Tumor Suppressor , Humans , Kidney Neoplasms/genetics , Mice , Mice, Nude , RNA-Binding Proteins/genetics , RNA-Binding Proteins/metabolism , Wilms Tumor/genetics
3.
Nat Commun ; 8(1): 1819, 2017 11 28.
Article in English | MEDLINE | ID: mdl-29180744

ABSTRACT

Senescent cells may promote tumour progression through the activation of a senescence-associated secretory phenotype (SASP), whether these cells are capable of initiating tumourigenesis in vivo is not known. Expression of oncogenic ß-catenin in Sox2+ young adult pituitary stem cells leads to formation of clusters of stem cells and induction of tumours resembling human adamantinomatous craniopharyngioma (ACP), derived from Sox2- cells in a paracrine manner. Here, we uncover the mechanisms underlying this paracrine tumourigenesis. We show that expression of oncogenic ß-catenin in Hesx1+ embryonic precursors also results in stem cell clusters and paracrine tumours. We reveal that human and mouse clusters are analogous and share a common signature of senescence and SASP. Finally, we show that mice with reduced senescence and SASP responses exhibit decreased tumour-inducing potential. Together, we provide evidence that senescence and a stem cell-associated SASP drive cell transformation and tumour initiation in vivo in an age-dependent fashion.


Subject(s)
Cellular Senescence/physiology , Craniopharyngioma/metabolism , Neoplastic Stem Cells/metabolism , Pituitary Neoplasms/metabolism , Aniline Compounds/pharmacology , Animals , Biphenyl Compounds/pharmacology , Cell Transformation, Neoplastic , Child , Craniopharyngioma/pathology , Disease Models, Animal , Homeodomain Proteins/metabolism , Humans , Mice , Nitrophenols/pharmacology , Oncogenes/physiology , Piperazines/pharmacology , Pituitary Gland/metabolism , Pituitary Gland/pathology , Pituitary Neoplasms/pathology , Repressor Proteins/metabolism , SOXB1 Transcription Factors/metabolism , Sulfonamides/pharmacology , Exome Sequencing , Young Adult , beta Catenin/metabolism
4.
Development ; 144(18): 3289-3302, 2017 09 15.
Article in English | MEDLINE | ID: mdl-28807898

ABSTRACT

Sonic hedgehog (SHH) is an essential morphogenetic signal that dictates cell fate decisions in several developing organs in mammals. In vitro data suggest that SHH is required to specify LHX3+/LHX4+ Rathke's pouch (RP) progenitor identity. However, in vivo studies have failed to reveal such a function, supporting instead a crucial role for SHH in promoting proliferation of these RP progenitors and for differentiation of pituitary cell types. Here, we have used a genetic approach to demonstrate that activation of the SHH pathway is necessary to induce LHX3+/LHX4+ RP identity in mouse embryos. First, we show that conditional deletion of Shh in the anterior hypothalamus results in a fully penetrant phenotype characterised by a complete arrest of RP development, with lack of Lhx3/Lhx4 expression in RP epithelium at 9.0 days post coitum (dpc) and total loss of pituitary tissue by 12.5 dpc. Conversely, overactivation of the SHH pathway by conditional deletion of Ptch1 in RP progenitors leads to severe hyperplasia and enlargement of the Sox2+ stem cell compartment by the end of gestation.


Subject(s)
Cell Lineage , Hedgehog Proteins/metabolism , Hypothalamus/embryology , Hypothalamus/metabolism , LIM-Homeodomain Proteins/metabolism , Pituitary Gland/embryology , Pituitary Gland/metabolism , Transcription Factors/metabolism , Cell Compartmentation , Cell Count , Cell Differentiation , Cell Proliferation , Clone Cells , Crosses, Genetic , Ectoderm/embryology , Ectoderm/metabolism , Embryo, Mammalian/metabolism , Endoderm/embryology , Endoderm/metabolism , Epithelium/embryology , Epithelium/metabolism , Female , Gene Expression Regulation, Developmental , Genotype , Hedgehog Proteins/genetics , Humans , Male , Mutation/genetics , Pituitary Gland/pathology , Signal Transduction , Stem Cells
5.
Development ; 144(12): 2141-2152, 2017 06 15.
Article in English | MEDLINE | ID: mdl-28506993

ABSTRACT

Despite the importance of the RAS-RAF-MAPK pathway in normal physiology and disease of numerous organs, its role during pituitary development and tumourigenesis remains largely unknown. Here, we show that the over-activation of the MAPK pathway, through conditional expression of the gain-of-function alleles BrafV600E and KrasG12D in the developing mouse pituitary, results in severe hyperplasia and abnormal morphogenesis of the gland by the end of gestation. Cell-lineage commitment and terminal differentiation are disrupted, leading to a significant reduction in numbers of most of the hormone-producing cells before birth, with the exception of corticotrophs. Of note, Sox2+ stem cells and clonogenic potential are drastically increased in the mutant pituitaries. Finally, we reveal that papillary craniopharyngioma (PCP), a benign human pituitary tumour harbouring BRAF p.V600E also contains Sox2+ cells with sustained proliferative capacity and disrupted pituitary differentiation. Together, our data demonstrate a crucial function of the MAPK pathway in controlling the balance between proliferation and differentiation of Sox2+ cells and suggest that persistent proliferative capacity of Sox2+ cells may underlie the pathogenesis of PCP.


Subject(s)
Craniopharyngioma/physiopathology , MAP Kinase Signaling System/physiology , Pituitary Neoplasms/physiopathology , Animals , Cell Differentiation , Cell Proliferation , Craniopharyngioma/genetics , Craniopharyngioma/pathology , Embryonic Stem Cells/pathology , Embryonic Stem Cells/physiology , Female , Gene Expression Regulation, Developmental , Homeodomain Proteins/genetics , Homeodomain Proteins/metabolism , Humans , MAP Kinase Signaling System/genetics , Mice , Mice, Mutant Strains , Mice, Transgenic , Mutant Proteins/genetics , Mutant Proteins/metabolism , Pituitary Gland/cytology , Pituitary Gland/embryology , Pituitary Gland/enzymology , Pituitary Neoplasms/genetics , Pituitary Neoplasms/pathology , Pregnancy , Proto-Oncogene Proteins B-raf/genetics , Proto-Oncogene Proteins B-raf/metabolism , Proto-Oncogene Proteins p21(ras)/genetics , Proto-Oncogene Proteins p21(ras)/metabolism , Repressor Proteins/genetics , Repressor Proteins/metabolism , SOXB1 Transcription Factors/metabolism
6.
PLoS One ; 8(1): e55274, 2013.
Article in English | MEDLINE | ID: mdl-23383134

ABSTRACT

The vertebrate Scube family consists of three independent members Scube1-3; which encode secreted cell surface-associated membrane glycoproteins that share a domain organization of at least five recognizable motifs and the ability to both homo- and heterodimerize. There is recent biochemical evidence to suggest that Scube2 is directly involved in Hedgehog signaling, acting co-operatively with Dispatched to mediate the release in soluble form of cholesterol and palmitate-modified Hedgehog ligand during long-range activity. Indeed, in the zebrafish myotome, all three Scube proteins can subtly promote Hedgehog signal transduction in a non-cell autonomous manner. In order to further investigate the role of Scube genes during development, we have generated mice with targeted inactivation of Scube3. Despite a dynamic developmental expression pattern, with transcripts present in neuroectoderm, endoderm and endochondral tissues, particularly within the craniofacial region; an absence of Scube3 function results in no overt embryonic phenotype in the mouse. Mutant mice are born at expected Mendelian ratios, are both viable and fertile, and seemingly retain normal Hedgehog signaling activity in craniofacial tissues. These findings suggest that in the mouse, Scube3 is dispensable for normal development; however, they do not exclude the possibility of a co-operative role for Scube3 with other Scube members during embryogenesis or a potential role in adult tissue homeostasis over the long-term.


Subject(s)
Embryonic Development/physiology , Face/embryology , Gene Expression Regulation, Developmental/physiology , Glycoproteins/metabolism , Skull/embryology , Animals , Calcium-Binding Proteins , Glycoproteins/deficiency , Hedgehog Proteins/metabolism , Mice , Mice, Knockout , Neural Plate/metabolism , Skull/metabolism
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