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遗传原发性小头畸形:当中心体功能障碍决定大脑和身体大小时。

Genetic Primary Microcephalies: When Centrosome Dysfunction Dictates Brain and Body Size.

机构信息

UMR144, Institut Curie, 75005 Paris, France.

Inserm UMR-S 1163, Institut Imagine, 75015 Paris, France.

出版信息

Cells. 2023 Jul 7;12(13):1807. doi: 10.3390/cells12131807.

Abstract

Primary microcephalies (PMs) are defects in brain growth that are detectable at or before birth and are responsible for neurodevelopmental disorders. Most are caused by biallelic or, more rarely, dominant mutations in one of the likely hundreds of genes encoding PM proteins, i.e., ubiquitous centrosome or microtubule-associated proteins required for the division of neural progenitor cells in the embryonic brain. Here, we provide an overview of the different types of PMs, i.e., isolated PMs with or without malformations of cortical development and PMs associated with short stature (microcephalic dwarfism) or sensorineural disorders. We present an overview of the genetic, developmental, neurological, and cognitive aspects characterizing the most representative PMs. The analysis of phenotypic similarities and differences among patients has led scientists to elucidate the roles of these PM proteins in humans. Phenotypic similarities indicate possible redundant functions of a few of these proteins, such as ASPM and WDR62, which play roles only in determining brain size and structure. However, the protein pericentrin (PCNT) is equally required for determining brain and body size. Other PM proteins perform both functions, albeit to different degrees. Finally, by comparing phenotypes, we considered the interrelationships among these proteins.

摘要

原发性小头畸形(PMs)是大脑生长的缺陷,在出生时或出生前即可检测到,并导致神经发育障碍。大多数是由于编码 PM 蛋白的数百个基因中的双等位基因或更罕见的显性突变引起的,这些基因编码普遍存在的中心体或微管相关蛋白,对于胚胎大脑中神经祖细胞的分裂是必需的。在这里,我们提供了不同类型的 PMs 的概述,即伴有或不伴有皮质发育畸形的孤立 PMs 和与身材矮小(小头侏儒症)或感觉神经性障碍相关的 PMs。我们概述了最具代表性的 PMs 的遗传、发育、神经和认知特征。对患者表型相似性和差异性的分析使科学家阐明了这些 PM 蛋白在人类中的作用。表型相似性表明这些蛋白中的少数具有可能的冗余功能,例如 ASPM 和 WDR62,它们仅在决定大脑大小和结构方面起作用。然而,中心体蛋白(PCNT)对于确定大脑和身体大小同样是必需的。其他 PM 蛋白也具有这两种功能,但程度不同。最后,通过比较表型,我们考虑了这些蛋白之间的相互关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/048e/10340463/933fc7d25acc/cells-12-01807-g001.jpg

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