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利什曼鞭毛新的 BAR 域膜蛋白 LdFlabarin。

LdFlabarin, a new BAR domain membrane protein of Leishmania flagellum.

机构信息

CNRS UMR 5290, Montpellier, France ; Université Montpellier 1, Montpellier, France ; Centre Hospitalier Universitaire La Colombière, Montpellier, France ; IRD 224, Montpellier, France.

出版信息

PLoS One. 2013 Sep 27;8(9):e76380. doi: 10.1371/journal.pone.0076380. eCollection 2013.

Abstract

During the Leishmania life cycle, the flagellum undergoes successive assembly and disassembly of hundreds of proteins. Understanding these processes necessitates the study of individual components. Here, we investigated LdFlabarin, an uncharacterized L. donovani flagellar protein. The gene is conserved within the Leishmania genus and orthologous genes only exist in the Trypanosoma genus. LdFlabarin associates with the flagellar plasma membrane, extending from the base to the tip of the flagellum as a helicoidal structure. Site-directed mutagenesis, deletions and chimera constructs showed that LdFlabarin flagellar addressing necessitates three determinants: an N-terminal potential acylation site and a central BAR domain for membrane targeting and the C-terminal domain for flagellar specificity. In vitro, the protein spontaneously associates with liposomes, triggering tubule formation, which suggests a structural/morphogenetic function. LdFlabarin is the first characterized Leishmania BAR domain protein, and the first flagellum-specific BAR domain protein.

摘要

在利什曼原虫的生命周期中,鞭毛经历了数百种蛋白质的连续组装和拆卸。要理解这些过程,就需要研究单个成分。在这里,我们研究了一种未被描述的利什曼原虫鞭毛蛋白 LdFlabarin。该基因在利什曼原虫属内保守,并且只有在锥虫属中才存在同源基因。LdFlabarin 与鞭毛浆膜结合,从鞭毛的基部延伸到顶端,呈螺旋状结构。定点突变、缺失和嵌合体构建表明,LdFlabarin 鞭毛的靶向需要三个决定因素:一个 N 端潜在酰化位点和一个中央 BAR 结构域用于膜靶向,以及 C 端结构域用于鞭毛特异性。在体外,该蛋白自发与脂质体结合,引发小管形成,这表明它具有结构/形态发生功能。LdFlabarin 是第一个被描述的利什曼原虫 BAR 结构域蛋白,也是第一个鞭毛特异性 BAR 结构域蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0965/3785460/8cc98779ffdc/pone.0076380.g001.jpg

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