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1.
Am J Med Genet A ; 194(4): e63473, 2024 Apr.
Article in English | MEDLINE | ID: mdl-37964495

ABSTRACT

Ophthalmological conditions are underreported in patients with KBG syndrome, which is classically described as presenting with dental, developmental, intellectual, skeletal, and craniofacial abnormalities. This study analyzed the prevalence of four ophthalmological conditions (strabismus, astigmatism, myopia, hyperopia) in 43 patients with KBG syndrome carrying variants in ANKRD11 or deletions in 16q24.3 and compared it to the literature. Forty-three patients were recruited via self-referral or a private Facebook group hosted by the KBG Foundation, with 40 of them having pathogenic or likely pathogenic variants. Virtual interviews were conducted to collect a comprehensive medical history verified by medical records. From these records, data analysis was performed to calculate the prevalence of ophthalmological conditions. Out of the 40 participants with pathogenic or likely pathogenic variants, strabismus was reported in 9 (22.5%) participants, while astigmatism, myopia, and hyperopia were reported in 11 (27.5%), 6 (15.0%), and 8 (20.0%) participants, respectively. Other reported conditions include anisometropia, amblyopia, and nystagmus. When compared to the literature, the prevalence of strabismus and refractive errors is higher than other studies. However, more research is needed to determine if variants in ANKRD11 play a role in abnormal development of the visual system. In patients with established KBG syndrome, screening for misalignment or refractive errors should be done, as interventions in patients with these conditions can improve functioning and quality of life.


Subject(s)
Abnormalities, Multiple , Astigmatism , Bone Diseases, Developmental , Hyperopia , Intellectual Disability , Myopia , Refractive Errors , Strabismus , Tooth Abnormalities , Humans , Abnormalities, Multiple/diagnosis , Intellectual Disability/diagnosis , Bone Diseases, Developmental/diagnosis , Tooth Abnormalities/epidemiology , Tooth Abnormalities/genetics , Tooth Abnormalities/diagnosis , Facies , Hyperopia/epidemiology , Hyperopia/genetics , Quality of Life , Refractive Errors/epidemiology , Refractive Errors/genetics , Refractive Errors/diagnosis , Transcription Factors , Myopia/diagnosis , Myopia/epidemiology , Myopia/genetics
2.
Am J Med Genet A ; 191(9): 2364-2375, 2023 09.
Article in English | MEDLINE | ID: mdl-37226940

ABSTRACT

Ankyrin Repeat Domain 11 (ANKRD11) gene mutations are associated with KBG syndrome, a developmental disability that affects multiple organ systems. The function of ANKRD11 in human growth and development is not clear, but gene knockout or mutation are lethal in mice embryos and/or pups. In addition, it plays a vital role in chromatin regulation and transcription. Individuals with KBG syndrome are often misdiagnosed or remain undiagnosed until later in life. This is largely due to KBG syndrome's varying and nonspecific phenotypes as well as a lack of accessible genetic testing and prenatal screening. This study documents perinatal outcomes for individuals with KBG syndrome. We obtained data from 42 individuals through videoconferences, medical records, and emails. 45.2% of our cohort was born by C-section, 33.3% had a congenital heart defect, 23.8% were born prematurely, 23.8% were admitted to the NICU, 14.3% were small for gestational age, and 14.3% of the families had a history of miscarriage. These rates were higher in our cohort compared to the overall population, including non-Hispanic and Hispanic populations. Other reports included feeding difficulties (21.4%), neonatal jaundice (14.3%), decreased fetal movement (7.1%), and pleural effusions in utero (4.7%). Comprehensive perinatal studies about KBG syndrome and updated documentation of its phenotypes are important in ensuring prompt diagnosis and can facilitate correct management.


Subject(s)
Abnormalities, Multiple , Bone Diseases, Developmental , Intellectual Disability , Tooth Abnormalities , Humans , Animals , Mice , Adolescent , Abnormalities, Multiple/diagnosis , Abnormalities, Multiple/epidemiology , Abnormalities, Multiple/genetics , Intellectual Disability/genetics , Bone Diseases, Developmental/genetics , Tooth Abnormalities/genetics , Facies , Prevalence , Chromosome Deletion , Repressor Proteins/genetics , Phenotype , Documentation
3.
PLoS Pathog ; 17(9): e1009493, 2021 09.
Article in English | MEDLINE | ID: mdl-34555127

ABSTRACT

Listeria monocytogenes is an intracellular bacterium that elicits robust CD8+ T-cell responses. Despite the ongoing development of L. monocytogenes-based platforms as cancer vaccines, our understanding of how L. monocytogenes drives robust CD8+ T-cell responses remains incomplete. One overarching hypothesis is that activation of cytosolic innate pathways is critical for immunity, as strains of L. monocytogenes that are unable to access the cytosol fail to elicit robust CD8+ T-cell responses and in fact inhibit optimal T-cell priming. Counterintuitively, however, activation of known cytosolic pathways, such as the inflammasome and type I IFN, lead to impaired immunity. Conversely, production of prostaglandin E2 (PGE2) downstream of cyclooxygenase-2 (COX-2) is essential for optimal L. monocytogenes T-cell priming. Here, we demonstrate that vacuole-constrained L. monocytogenes elicit reduced PGE2 production compared to wild-type strains in macrophages and dendritic cells ex vivo. In vivo, infection with wild-type L. monocytogenes leads to 10-fold increases in PGE2 production early during infection whereas vacuole-constrained strains fail to induce PGE2 over mock-immunized controls. Mice deficient in COX-2 specifically in Lyz2+ or CD11c+ cells produce less PGE2, suggesting these cell subsets contribute to PGE2 levels in vivo, while depletion of phagocytes with clodronate abolishes PGE2 production completely. Taken together, this work demonstrates that optimal PGE2 production by phagocytes depends on L. monocytogenes access to the cytosol, suggesting that one reason cytosolic access is required to prime CD8+ T-cell responses may be to facilitate production of PGE2.


Subject(s)
Dendritic Cells/immunology , Dinoprostone/biosynthesis , Dinoprostone/immunology , Listeriosis/immunology , Macrophages/immunology , Animals , Dendritic Cells/metabolism , Dendritic Cells/microbiology , Female , Listeria monocytogenes/immunology , Lymphocyte Activation/immunology , Macrophages/metabolism , Macrophages/microbiology , Male , Mice , Mice, Inbred C57BL
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