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Homeodomain revisited: a lesson from disease-causing mutations.

机译:同源异域:从致病突变的教训。

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摘要

The homeodomain is a highly conserved DNA-binding motif that is found in numerous transcription factors throughout a large variety of species from yeast to humans. These gene-specific transcription factors play critical roles in development and adult homeostasis, and therefore, any germline mutations associated with these proteins can lead to a number of congenital abnormalities. Although much has been revealed concerning the molecular architecture and the mechanism of homeodomain-DNA interactions, the study of disease-causing mutations can further provide us with instructive information as to the role of particular residues in a conserved mode of action. In this paper, I have compiled the homeodomain missense mutations found in various human diseases and re-examined the functional role of the mutational "hot spot" residues in light of the structures obtained from crystallography. These findings should be useful in understanding the essential components of the homeodomain and in attempts to design agonist or antagonists to modulate their activity and to reverse the effects caused by the mutations.
机译:同源结构域是高度保守的DNA结合基序,存在于从酵母到人类的多种物种的众多转录因子中。这些基因特异性转录因子在发育和成人体内稳态中起着关键作用,因此,与这些蛋白质相关的任何种系突变都可能导致许多先天性异常。尽管已经揭示了许多有关同源结构域与DNA相互作用的分子结构和机理的研究,但致病突变的研究可以进一步为我们提供指导性信息,说明特定残基在保守作用方式中的作用。在本文中,我整理了在各种人类疾病中发现的同源域错义突变,并根据从晶体学获得的结构重新检查了突变“热点”残基的功能。这些发现应有助于理解同源域的基本组成部分,并有助于设计激动剂或拮抗剂来调节其活性并逆转由突变引起的作用。

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