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Vmp1与细菌DedA蛋白之间存在进化关系的证据。

Evidence for an evolutionary relationship between Vmp1 and bacterial DedA proteins.

作者信息

Tábara Luis-Carlos, Vincent Olivier, Escalante Ricardo

机构信息

Instituto de Investigaciones Biomédicas Alberto Sols, CSIC, Universidad Autónoma de Madrid, Madrid, Spain.

出版信息

Int J Dev Biol. 2019;63(1-2):67-71. doi: 10.1387/ijdb.180312re.

Abstract

VMP1 and DedA proteins are conserved families of transmembrane proteins in eukaryotes and prokaryotes respectively. Despite numerous reports involving these proteins in multiple cellular processes, their molecular function is still unknown. They share the domain of unknown function PF09335, suggesting a possible functional relationship between these protein families. Here we show that VMP1 from different species contain two short motifs conserved in the bacterial DedA proteins and the yeast protein Tvp38. The hallmark of one of these motifs is a glycine residue previously shown to be strictly conserved in all the DedA proteins. Substitution of this residue to leucine, glutamate or arginine in Dictyostelium Vmp1 inactivates the protein, as shown by the inability of the mutants to rescue the phenotypes associated with the lack of Vmp1 including development and lipid homeostasis. This is the first experimental approach that supports an evolutionary relationship between Vmp1 and DedA proteins and highlights the importance of the conserved glycine residue in the PF09335 domain.

摘要

VMP1蛋白和DedA蛋白分别是真核生物和原核生物中保守的跨膜蛋白家族。尽管有大量报道表明这些蛋白参与多种细胞过程,但其分子功能仍然未知。它们共享功能未知的PF09335结构域,这表明这些蛋白家族之间可能存在功能关系。在此我们表明,来自不同物种的VMP1包含两个在细菌DedA蛋白和酵母蛋白Tvp38中保守的短基序。其中一个基序的标志是一个甘氨酸残基,先前已证明在所有DedA蛋白中该残基都严格保守。在盘基网柄菌Vmp1中,将该残基替换为亮氨酸、谷氨酸或精氨酸会使蛋白失活,这可通过突变体无法挽救与缺乏Vmp1相关的表型(包括发育和脂质稳态)来证明。这是支持Vmp1和DedA蛋白之间进化关系的首个实验方法,并突出了PF09335结构域中保守甘氨酸残基的重要性。

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