Search PubMedSearch

Biomedical subjects

Bixia Zheng

Publications and source records attributed to Bixia Zheng.

3 recordsLinked to original sources

Clinical and molecular characterization of TCF12 variants in an Asian pediatric cohort with craniosynostosis.

BACKGROUND: Craniosynostosis is a genetically heterogeneous craniofacial disorder caused by the premature fusion of one or more cranial sutures. Pathogenic variants in TCF12, encoding a basic helix-loop-helix (bHLH) transcription factor, represent a major cause of autosomal dominant coronal craniosynostosis and are characterized by incomplete penetrance and marked phenotypic variability. However, clinical and molecular data from Asian pediatric populations remain limited. METHODS: Trio-based whole-exome sequencing was performed on ten pediatric patients with cranial deformities and their parents. The identified TCF12 variants were classified according to the American College of Medical Genetics and Genomics (ACMG) guidelines and validated by Sanger sequencing. Detailed clinical and radiological data were collected. In addition, a comprehensive literature review was conducted to summarize previously reported TCF12 variants and associated phenotypes. RESULTS: Ten distinct heterozygous TCF12 variants were identified in ten unrelated pediatric patients, all of which were classified as pathogenic or likely pathogenic according to ACMG criteria. Six variants were inherited, and four occurred de novo. Seven patients had imaging-confirmed craniosynostosis, predominantly involving the coronal sutures (five bilateral and one unilateral), while one patient presented with multisuture craniosynostosis (left coronal and sagittal sutures). Three patients showed cranial deformities without radiographic evidence of suture fusion. Phenotypic heterogeneity and incomplete penetrance were observed, including a mildly affected parent. Most pathogenic variants were truncating variants distributed mainly across exons 14-19 and predicted to induce loss of function, either through nonsense-mediated mRNA decay or the production of truncated proteins lacking the entire C-terminal bHLH domain. Structural modeling analysis further indicated that the bHLH-domain-located missense variant p.Arg603Trp alters the local DNA-binding conformation of TCF12 and impairs its binding affinity to the E-box DNA motif. CONCLUSIONS: This study provides additional clinical and molecular data on TCF12-related craniosynostosis in a pediatric cohort from an Asian population. Our findings support haploinsufficiency as the central pathogenic mechanism, primarily driven by truncating variants affecting the C-terminal bHLH domain. The marked clinical heterogeneity, the presence of mild or evolving phenotypes, and incomplete penetrance observed in our cohort underscore the importance of early diagnosis and longitudinal clinical surveillance in affected families.

Humans

Phenotypic and Genotypic Landscape of Sitosterolemia in China: Including a Rare Case With Nephronophthisis.

BACKGROUND: Sitosterolemia (STSL) is a rare autosomal recessive disorder caused by mutations in ABCG5 or ABCG8, characterized by hemolytic anemia, xanthomas, and atherosclerosis. Nephronophthisis (NPHP), another autosomal recessive disorder, is characterized by its devastating progression toward renal failure. METHODS: We analyzed the clinical, laboratory, and genetic data of a Chinese boy with concurrent STSL and NPHP. Separately, we conducted a comprehensive review of the phenotypic and genotypic profiles of all previously reported STSL cases in China. RESULTS: The proband presented with recurrent fever, thrombocytopenia, splenomegaly, and renal dysfunction and was initially misdiagnosed with hemophagocytic lymphohistiocytosis. Genetic testing confirmed biallelic ABCG8 mutations (c.490C>T and c.323-1G>C) and a homozygous NPHP1 deletion. A comprehensive review of 131 Chinese STSL cases (130 from the literature) found that xanthomas, hypercholesterolemia, and elevated low-density lipoprotein cholesterol (LDL-C) were the most common manifestations (each with a prevalence of 82.4%), followed by splenomegaly (32.1%), thrombocytopenia (32.1%), and anemia (30.5%). Hypercholesterolemia and high LDL-C were more common in children, whereas hematologic abnormalities and organ damage were more prevalent in adults. Mutations in ABCG5 accounted for 77.1% of patients. CONCLUSIONS: Genetic testing is crucial when clinical findings conflict with the initial diagnosis. This study summarizes the largest cohort of Chinese STSL patients to date, which may aid in the early recognition and management of this condition.

Humans

Trio exome sequencing identifies de novo variants in novel candidate genes in 19.62% of CAKUT families.

PURPOSE: Congenital anomalies of the kidney and urinary tract (CAKUT) encompass heterogenous malformations arising from defective nephrogenesis. To date, approximately 50 monogenic genes are known to cause CAKUT if mutated. Recent studies show the impact of de novo variants in genetic disease etiology. Trio exome sequencing identifies de novo variants in novel candidate genes in 19.62% of CAKUT families. METHODS: We performed trio-based exome sequencing in 209 families with CAKUT to detect novel candidate disease genes. RESULTS: Trio analysis yielded in the identification of CAKUT candidate genes in 96 of 209 trio families (45.93%). In 41 of 209 cases, we detected strong de novo variants in 45 potential novel CAKUT candidate genes (19.62%). We developed a prioritization approach that highlights a truncating de novo variant in SOX13 (HGNC:11192) as a promising cause for CAKUT. In addition, further allele carriers for the candidate gene CHD1L (HGNC:1916) were identified, thus supporting the role of CHD1L in the pathogenesis of CAKUT. CONCLUSION: We conclude that de novo variants in potential novel CAKUT candidate genes contribute to the disease etiology and present SOX13 as a potential novel cause for CAKUT.

Humans