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The Genetics of Primary Microcephaly.
Annual Review of Genomics and Human Genetics ( IF 7.7 ) Pub Date : 2018-08-31 00:00:00 , DOI: 10.1146/annurev-genom-083117-021441
Divya Jayaraman 1, 2, 3 , Byoung-Il Bae 4 , Christopher A Walsh 1, 5, 6
Affiliation  

Primary microcephaly (MCPH, for “microcephaly primary hereditary”) is a disorder of brain development that results in a head circumference more than 3 standard deviations below the mean for age and gender. It has a wide variety of causes, including toxic exposures, in utero infections, and metabolic conditions. While the genetic microcephaly syndromes are relatively rare, studying these syndromes can reveal molecular mechanisms that are critical in the regulation of neural progenitor cells, brain size, and human brain evolution. Many of the causative genes for MCPH encode centrosomal proteins involved in centriole biogenesis. However, other MCPH genes fall under different mechanistic categories, notably DNA replication and repair. Recent gene discoveries and functional studies have implicated novel cellular processes, such as cytokinesis, centromere and kinetochore function, transmembrane or intracellular transport, Wnt signaling, and autophagy, as well as the apical polarity complex. Thus, MCPH genes implicate a wide variety of molecular and cellular mechanisms in the regulation of cerebral cortical size during development.

中文翻译:


原发性小头畸形的遗传学。

原发性小头畸形(MCPH,指“小头原发性遗传”)是一种大脑发育障碍,导致头围低于年龄和性别平均值的3个标准差以上。它有多种原因,包括有毒暴露,子宫内感染和代谢状况。尽管遗传性小头畸形综合症相对罕见,但是研究这些综合症可以揭示在调节神经祖细胞,大脑大小和人脑进化中至关重要的分子机制。MCPH的许多致病基因编码参与中心粒生物发生的中心体蛋白。但是,其他MCPH基因属于不同的机制类别,尤其是DNA复制和修复。最近的基因发现和功能研究已暗示了新的细胞过程,例如胞质分裂,着丝粒和线粒体功能,跨膜或细胞内转运,Wnt信号传导和自噬以及顶极极性复合体。因此,MCPH基因在发育过程中对大脑皮层大小的调节中涉及多种分子和细胞机制。

更新日期:2018-08-31
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