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多小脑回畸形的遗传图谱

The Genetic Landscape of Polymicrogyria.

作者信息

James Jesmy, Iype Mary, Surendran Mithran Omana, Anitha Ayyappan, Thomas Sanjeev V

机构信息

Department of Neurogenetics, Institute for Communicative and Cognitive Neurosciences (ICCONS), Shoranur, Palakkad, Kerala, India.

Department of Neurology, Institute for Communicative and Cognitive Neurosciences (ICCONS), Shoranur, Palakkad, Kerala, India.

出版信息

Ann Indian Acad Neurol. 2022 Jul-Aug;25(4):616-626. doi: 10.4103/aian.aian_97_22. Epub 2022 May 5.

Abstract

Polymicrogyria (PMG) is a relatively common complex malformation with cortical development, characterized by an exorbitant number of abnormally tiny gyri separated by shallow sulci. It is a neuronal migration disorder. Familial cases of PMG and the manifestation of PMG in patients with chromosomal aberrations and mutations indicate their important role of genetics in this disorder. The highly stereotyped and well-conserved nature of the cortical folding pattern in humans is suggestive of the genetic regulation of the process. The chromosomal abnormalities observed in PMG include deletions, duplications, chromosomal rearrangements, and aneuploidies. Two of the most common deletions in PMG are 22q11.2 deletion and 1p36 deletion. Further, mutations in several genes such as , and are known to be associated with PMG. Intriguingly, these genes are responsible only for a small number of cases of PMG. The protein products of these genes are implicated in diverse molecular and cellular functions. Taken together, PMG could be the result of the disruption of several biological pathways. Different modes of Mendelian inheritance and non-Mendelian inheritance are seen in PMG. We have suggested a gene panel that can be used for the detection of malformations of cortical development.

摘要

多小脑回畸形(PMG)是一种相对常见的皮质发育复杂畸形,其特征是存在大量由浅沟分隔的异常微小脑回。它是一种神经元迁移障碍。PMG的家族性病例以及PMG在染色体畸变和突变患者中的表现表明遗传学在这种疾病中起着重要作用。人类皮质折叠模式高度定型且保守的性质提示了该过程的遗传调控。在PMG中观察到的染色体异常包括缺失、重复、染色体重排和非整倍体。PMG中最常见的两种缺失是22q11.2缺失和1p36缺失。此外,已知几个基因如 、 和 的突变与PMG相关。有趣的是,这些基因仅导致少数PMG病例。这些基因的蛋白质产物涉及多种分子和细胞功能。综上所述,PMG可能是多种生物学途径破坏的结果。在PMG中可见孟德尔遗传和非孟德尔遗传的不同模式。我们提出了一个可用于检测皮质发育畸形的基因panel。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f7c/9540929/d13f1806e2bc/AIAN-25-616-g001.jpg

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