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SOX5 基因在 12p12.1 上的杂合性缺失与发育迟缓有关,其主要表现为语言发育迟缓、行为问题和轻度的发育异常特征。

Haploinsufficiency of SOX5 at 12p12.1 is associated with developmental delays with prominent language delay, behavior problems, and mild dysmorphic features.

机构信息

Signature Genomic Laboratories, PerkinElmer, Inc., Spokane, Washington 99207, USA.

出版信息

Hum Mutat. 2012 Apr;33(4):728-40. doi: 10.1002/humu.22037.

Abstract

SOX5 encodes a transcription factor involved in the regulation of chondrogenesis and the development of the nervous system. Despite its important developmental roles, SOX5 disruption has yet to be associated with human disease. We report one individual with a reciprocal translocation breakpoint within SOX5, eight individuals with intragenic SOX5 deletions (four are apparently de novo and one inherited from an affected parent), and seven individuals with larger 12p12 deletions encompassing SOX5. Common features in these subjects include prominent speech delay, intellectual disability, behavior abnormalities, and dysmorphic features. The phenotypic impact of the deletions may depend on the location of the deletion and, consequently, which of the three major SOX5 protein isoforms are affected. One intragenic deletion, involving only untranslated exons, was present in a more mildly affected subject, was inherited from a healthy parent and grandparent, and is similar to a deletion found in a control cohort. Therefore, some intragenic SOX5 deletions may have minimal phenotypic effect. Based on the location of the deletions in the subjects compared to the controls, the de novo nature of most of these deletions, and the phenotypic similarities among cases, SOX5 appears to be a dosage-sensitive, developmentally important gene.

摘要

SOX5 编码一种转录因子,参与软骨生成和神经系统发育的调控。尽管 SOX5 在发育过程中具有重要作用,但目前尚未发现其与人类疾病有关。我们报告了一例 SOX5 内的相互易位断点,8 例 SOX5 基因内缺失(其中 4 例为明显的新生突变,1 例由受影响的父母遗传),以及 7 例包含 SOX5 的更大的 12p12 缺失。这些个体的共同特征包括明显的言语延迟、智力残疾、行为异常和发育不良。缺失的表型影响可能取决于缺失的位置,进而取决于受影响的三个主要 SOX5 蛋白异构体的位置。一个基因内缺失,仅涉及非翻译外显子,存在于一个受影响较小的个体中,由健康的父母和祖父母遗传,与在对照组中发现的缺失相似。因此,一些基因内 SOX5 缺失可能具有最小的表型效应。根据与对照组相比,个体中缺失的位置、大多数缺失的新生性质,以及病例之间的表型相似性,SOX5 似乎是一个剂量敏感的、发育重要的基因。

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