Patterning of the antero-ventral mammalian brain: Lessons from holoprosencephaly comparative biology in man and mouse.

IF 4.6 3区 医学 Q2 MEDICINE, RESEARCH & EXPERIMENTAL
WIREs Mechanisms of Disease Pub Date : 2022-07-01 Epub Date: 2022-02-08 DOI:10.1002/wsbm.1552
Kristen S Barratt, Kyle A Drover, Zoe M Thomas, Ruth M Arkell
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引用次数: 3

Abstract

Adult form and function are dependent upon the activity of specialized signaling centers that act early in development at the embryonic midline. These centers instruct the surrounding cells to adopt a positional fate and to form the patterned structures of the phylotypic embryo. Abnormalities in these processes have devastating consequences for the individual, as exemplified by holoprosencephaly in which anterior midline development fails, leading to structural defects of the brain and/or face. In the 25 years since the first association between human holoprosencephaly and the sonic hedgehog gene, a combination of human and animal genetic studies have enhanced our understanding of the genetic and embryonic causation of this congenital defect. Comparative biology has extended the holoprosencephaly network via the inclusion of gene mutations from multiple signaling pathways known to be required for anterior midline formation. It has also clarified aspects of holoprosencephaly causation, showing that it arises when a deleterious variant is present within a permissive genome, and that environmental factors, as well as embryonic stochasticity, influence the phenotypic outcome of the variant. More than two decades of research can now be distilled into a framework of embryonic and genetic causation. This framework means we are poised to move beyond our current understanding of variants in signaling pathway molecules. The challenges now at the forefront of holoprosencephaly research include deciphering how the mutation of genes involved in basic cell processes can also cause holoprosencephaly, determining the important constituents of the holoprosencephaly permissive genome, and identifying environmental compounds that promote holoprosencephaly. This article is categorized under: Congenital Diseases > Stem Cells and Development Congenital Diseases > Genetics/Genomics/Epigenetics Congenital Diseases > Molecular and Cellular Physiology Congenital Diseases > Environmental Factors.

哺乳动物前-腹侧脑的模式:来自人和小鼠前脑畸形比较生物学的教训。
成体的形态和功能依赖于在胚胎中线发育早期起作用的特殊信号中心的活动。这些中心指示周围的细胞采用位置命运,形成系统型胚胎的模式结构。这些过程的异常会对个体造成毁灭性的后果,如前脑前脑畸形,前脑中线发育失败,导致大脑和/或面部的结构缺陷。自人类前脑畸形与超音刺猬基因首次关联以来的25年里,人类和动物遗传学研究的结合增强了我们对这种先天性缺陷的遗传和胚胎病因的理解。比较生物学通过将前脑中线形成所需的多种信号通路中的基因突变纳入其中,扩展了前脑无裂畸形网络。该研究还澄清了前脑畸形成因的各个方面,表明当有害变异存在于允许的基因组中时,环境因素以及胚胎随机性会影响变异的表型结果。二十多年来的研究现在可以提炼成一个胚胎和遗传因果关系的框架。这个框架意味着我们准备超越我们目前对信号通路分子变异的理解。目前,前脑畸形研究的前沿挑战包括:破译参与基本细胞过程的基因突变如何导致前脑畸形,确定前脑畸形允许基因组的重要成分,以及识别促进前脑畸形的环境化合物。本文分类如下:先天性疾病>干细胞与发育先天性疾病>遗传学/基因组学/表观遗传学先天性疾病>分子与细胞生理学先天性疾病>环境因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
WIREs Mechanisms of Disease
WIREs Mechanisms of Disease MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
11.40
自引率
0.00%
发文量
45
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