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A forebrain undivided: Unleashing model organisms to solve the mysteries of holoprosencephaly

机译:前脑未分开:释放模型生物来解决全神经理的奥秘

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Abstract Evolutionary conservation and experimental tractability have made animal model systems invaluable tools in our quest to understand human embryogenesis, both normal and abnormal. Standard genetic approaches, particularly useful in understanding monogenic diseases, are no longer sufficient as research attention shifts toward multifactorial outcomes. Here, we examine this progression through the lens of holoprosencephaly (HPE), a common human malformation involving incomplete forebrain division, and a classic example of an etiologically complex outcome. We relate the basic underpinning of HPE pathogenesis to critical cell‐cell interactions and signaling molecules discovered through embryological and genetic approaches in multiple model organisms, and discuss the role of the mouse model in functional examination of HPE‐linked genes. We then outline the most critical remaining gaps to understanding human HPE, including the conundrum of incomplete penetrance/expressivity and the role of gene‐environment interactions. To tackle these challenges, we outline a strategy that leverages new and emerging technologies in multiple model systems to solve the puzzle of HPE.
机译:摘要进化节约和实验途径使动物模型系统在寻求了解人胚胎发生中,既正常和异常则为宝贵的工具。随着研究的关注转向朝向多因素成果的研究,标准遗传方法,特别适用于了解单一疾病。在这里,我们通过全华术(HPE)的镜片来检查这一进展,涉及不完全前脑分裂的常见人类畸形,以及病因复杂结果的经典例。我们将HPE发病机制的基本支点与临界细胞 - 细胞相互作用和通过多种模型生物中的胚胎学和遗传方法发现的信号分子相关,并讨论小鼠模型在HPE关联基因的功能检查中的作用。然后,我们概述了解人类HPE最关键的剩余差距,包括不完全渗透/富集的难题和基因环境相互作用的作用。为了解决这些挑战,我们概述了一种利用多种模型系统中的新兴技术来解决HPE难题的策略。

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