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人类疾病中的基因组结构变异景观。

Landscape of Constitutional Variation in Human Disorders.

机构信息

SSD Genetica Medica, Dipartimento Materno Infantile, AOU Policlinico Modena, 41125 Modena, Italy.

Medical Genetics Unit, AUSL Romagna, 47522 Cesena, Italy.

出版信息

Genes (Basel). 2024 Jan 25;15(2):158. doi: 10.3390/genes15020158.

Abstract

SOX proteins are transcription factors which play a role in regulating the development of progenitor cells and tissue differentiation. Twenty members are known, clustered in eight groups named A through H and sharing a common DNA-binding domain called the HMG (high-mobility-group) box. Eleven of the SOX genes have been associated with genetic disorders so far, covering a broad spectrum of developmental diseases. is a single-exon gene and belongs to the SOXC group, together with and . variants have been recently described to cause a highly penetrant but heterogeneous disorder, with a phenotypic spectrum ranging from mild developmental delays and learning difficulties to intellectual disabilities with congenital anomalies. Nineteen pathogenic variants have been reported to date, generally de novo, heterozygous, and inactivating, either stop-gain or missense, the latter ones primarily targeting the HMG domain. Further, a bi-allelic variant was reported in a single consanguineous family. Copy number variants leading to whole gene deletion or duplication are rare and not clearly associated with any neurodevelopmental disorder. Many open questions remain regarding the definition of variants of unknown significance, a possible role of missense variants outside the HMG domain, genotype-phenotype correlation, the range of phenotypic spectrum and modifying factors, and treatment options.

摘要

SOX 蛋白是转录因子,在调节祖细胞的发育和组织分化中发挥作用。已知有 20 个成员,分为 8 组,命名为 A 至 H,并共享一个称为 HMG(高迁移率族)盒的共同 DNA 结合域。迄今为止,已有 11 个 SOX 基因与遗传疾病相关,涵盖了广泛的发育疾病谱。 是一个单外显子基因,属于 SOXC 组,与 和 一起。 变体最近被描述为导致一种高外显但异质性的疾病,表型谱从轻度发育迟缓和学习困难到伴有先天异常的智力障碍。迄今为止已报道了 19 种致病性变异,通常是从头开始、杂合子和失活的,要么是终止增益要么是错义,后者主要针对 HMG 结构域。此外,在一个单一的近亲家庭中报道了一个双等位基因变体。导致整个基因缺失或重复的拷贝数变异很少见,与任何神经发育障碍都没有明确关联。关于意义不明的变异的定义、HMG 结构域外的错义变异可能的作用、基因型-表型相关性、表型谱和修饰因子的范围以及治疗选择,仍有许多悬而未决的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f0e/10887744/eb805a48004c/genes-15-00158-g001.jpg

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