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建模人类染色体 21q11.2-q21.1 的部分单体性揭示了影响行为和脂肪沉积的单倍不足基因。

Modeling partial monosomy for human chromosome 21q11.2-q21.1 reveals haploinsufficient genes influencing behavior and fat deposition.

机构信息

Wellcome Trust Sanger Institute, Hinxton, Cambridge, United Kingdom.

出版信息

PLoS One. 2012;7(1):e29681. doi: 10.1371/journal.pone.0029681. Epub 2012 Jan 20.

Abstract

Haploinsufficiency of part of human chromosome 21 results in a rare condition known as Monosomy 21. This disease displays a variety of clinical phenotypes, including intellectual disability, craniofacial dysmorphology, skeletal and cardiac abnormalities, and respiratory complications. To search for dosage-sensitive genes involved in this disorder, we used chromosome engineering to generate a mouse model carrying a deletion of the Lipi-Usp25 interval, syntenic with 21q11.2-q21.1 in humans. Haploinsufficiency for the 6 genes in this interval resulted in no gross morphological defects and behavioral analysis performed using an open field test, a test of anxiety, and tests for social interaction were normal in monosomic mice. Monosomic mice did, however, display impaired memory retention compared to control animals. Moreover, when fed a high-fat diet (HFD) monosomic mice exhibited a significant increase in fat mass/fat percentage estimate compared with controls, severe fatty changes in their livers, and thickened subcutaneous fat. Thus, genes within the Lipi-Usp25 interval may participate in memory retention and in the regulation of fat deposition.

摘要

21 号染色体部分单倍体不足导致一种罕见疾病,称为单体 21 号染色体。这种疾病表现出多种临床表型,包括智力残疾、颅面畸形、骨骼和心脏异常以及呼吸并发症。为了寻找与这种疾病相关的剂量敏感基因,我们使用染色体工程技术,生成了一种携带 Lipi-Usp25 间隔缺失的小鼠模型,该缺失与人类 21q11.2-q21.1 同源。这个区间内的 6 个基因的单倍体不足没有导致明显的形态缺陷,并且通过旷场试验、焦虑试验和社交互动试验进行的行为分析,单体小鼠是正常的。然而,与对照动物相比,单体小鼠的记忆保留能力受损。此外,当给予高脂肪饮食(HFD)时,与对照组相比,单体小鼠的脂肪量/脂肪百分比估计显著增加,肝脏有严重的脂肪变性,皮下脂肪变厚。因此,Lipi-Usp25 区间内的基因可能参与记忆保留和脂肪沉积的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c895/3262805/d31571d0f1c3/pone.0029681.g001.jpg

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