外显子组测序
遗传学
先证者
智力残疾
生物
身材矮小
移码突变
损失函数
表型
创始人效应
张力减退
基因
突变
等位基因
单倍型
内分泌学
作者
Rivka Birnbaum,Shlomit Ezer,Nava Shaul Lotan,Avital Eilat,Keren Sternlicht,Lilach Benyamini,Orit Reish,Tzipora C. Falik‐Zaccai,Gali Ben-Gad,Raya Rod,Reeval Segel,Katherine Kim,Barabra Burton,Catherine E. Keegan,Mallory Wagner,Lindsay B. Henderson,Nofar Mor,Ortal Barel,Yoel Hirsch,Vardiella Meiner
标识
DOI:10.1136/jmg-2023-109504
摘要
BACKGROUND: Neurodevelopmental disorders (NDDs) impact both the development and functioning of the brain and exhibit clinical and genetic variability. RAP and RAB proteins, belonging to the RAS superfamily, are identified as established contributors to NDDs. However, the involvement of SGSM (small G protein signalling modulator), another member of the RAS family, in NDDs has not been previously documented. METHODS: Proband-only or trio exome sequencing was performed on DNA samples obtained from affected individuals and available family members. The variant prioritisation process focused on identifying rare deleterious variants. International collaboration aided in the identification of additional affected individuals. RESULTS: gene. The variant was predicted to cause a loss of function, potentially leading to impaired protein structure or function. The variant co-segregated with the disease in all available family members. The affected individuals displayed mild global developmental delay and mild to moderate intellectual disability. Additional prevalent phenotypes observed included hypotonia, behavioural challenges and short stature. CONCLUSIONS: was discovered in individuals with NDDs and short stature. This finding establishes a connection between another member of the RAS family and NDDs. Additional research is needed to uncover the specific molecular mechanisms by which SGSM3 influences neurodevelopmental processes and the regulation of growth.
科研通智能强力驱动
Strongly Powered by AbleSci AI