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小鼠 Sotos 综合征缺失的产生。

Generation of the Sotos syndrome deletion in mice.

机构信息

Experimental Cancer Genetics, Wellcome Trust Sanger Institute, Wellcome Trust Genome Campus, Hinxton, Cambridge, CB10 1HH, UK.

出版信息

Mamm Genome. 2012 Dec;23(11-12):749-57. doi: 10.1007/s00335-012-9416-0. Epub 2012 Aug 29.

Abstract

Haploinsufficiency of the human 5q35 region spanning the NSD1 gene results in a rare genomic disorder known as Sotos syndrome (Sotos), with patients displaying a variety of clinical features, including pre- and postnatal overgrowth, intellectual disability, and urinary/renal abnormalities. We used chromosome engineering to generate a segmental monosomy, i.e., mice carrying a heterozygous 1.5-Mb deletion of 36 genes on mouse chromosome 13 (4732471D19Rik-B4galt7), syntenic with 5q35.2-q35.3 in humans (Df(13)Ms2Dja ( +/- ) mice). Surprisingly Df(13)Ms2Dja ( +/- ) mice were significantly smaller for their gestational age and also showed decreased postnatal growth, in contrast to Sotos patients. Df(13)Ms2Dja ( +/- ) mice did, however, display deficits in long-term memory retention and dilation of the pelvicalyceal system, which in part may model the learning difficulties and renal abnormalities observed in Sotos patients. Thus, haploinsufficiency of genes within the mouse 4732471D19Rik-B4galt7 deletion interval play important roles in growth, memory retention, and the development of the renal pelvicalyceal system.

摘要

人类 5q35 区域的单倍体功能不全,跨越 NSD1 基因,导致一种罕见的基因组疾病,称为 Sotos 综合征(Sotos),患者表现出多种临床特征,包括产前和产后过度生长、智力障碍和泌尿/肾脏异常。我们使用染色体工程产生了片段单体性,即携带小鼠染色体 13 上 36 个基因的杂合 1.5-Mb 缺失的小鼠(4732471D19Rik-B4galt7),与人类的 5q35.2-q35.3 同源(Df(13)Ms2Dja (+/-) 小鼠)。令人惊讶的是,与 Sotos 患者相反,Df(13)Ms2Dja (+/-) 小鼠的胎龄明显较小,并且也表现出出生后生长减少。然而,Df(13)Ms2Dja (+/-) 小鼠确实表现出长期记忆保留和肾盂系统扩张的缺陷,这在一定程度上可能模拟了 Sotos 患者中观察到的学习困难和肾脏异常。因此,小鼠 4732471D19Rik-B4galt7 缺失间隔内的基因单倍体功能不全在生长、记忆保留和肾脏肾盂系统发育中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86e2/3510424/6306984da08f/335_2012_9416_Fig1_HTML.jpg

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