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F型凝集素:一个高度多样化的岩藻糖结合蛋白家族,具有独特的序列基序和结构折叠,参与自我/非自我识别。

F-Type Lectins: A Highly Diversified Family of Fucose-Binding Proteins with a Unique Sequence Motif and Structural Fold, Involved in Self/Non-Self-Recognition.

作者信息

Vasta Gerardo R, Amzel L Mario, Bianchet Mario A, Cammarata Matteo, Feng Chiguang, Saito Keiko

机构信息

Department of Microbiology and Immunology, Institute of Marine and Environmental Technology, University of Maryland School of Medicine, University of Maryland, Baltimore, Baltimore, MD, United States.

Department of Biophysics and Biophysical Chemistry, School of Medicine, Johns Hopkins University, Baltimore, MD, United States.

出版信息

Front Immunol. 2017 Nov 29;8:1648. doi: 10.3389/fimmu.2017.01648. eCollection 2017.

Abstract

The F-type lectin (FTL) family is one of the most recent to be identified and structurally characterized. Members of the FTL family are characterized by a fucose recognition domain [F-type lectin domain (FTLD)] that displays a novel jellyroll fold ("F-type" fold) and unique carbohydrate- and calcium-binding sequence motifs. This novel lectin family comprises widely distributed proteins exhibiting single, double, or greater multiples of the FTLD, either tandemly arrayed or combined with other structurally and functionally distinct domains, yielding lectin subunits of pleiotropic properties even within a single species. Furthermore, the extraordinary variability of FTL sequences (isoforms) that are expressed in a single individual has revealed genetic mechanisms of diversification in ligand recognition that are unique to FTLs. Functions of FTLs in self/non-self-recognition include innate immunity, fertilization, microbial adhesion, and pathogenesis, among others. In addition, although the F-type fold is distinctive for FTLs, a structure-based search revealed apparently unrelated proteins with minor sequence similarity to FTLs that displayed the FTLD fold. In general, the phylogenetic analysis of FTLD sequences from viruses to mammals reveals clades that are consistent with the currently accepted taxonomy of extant species. However, the surprisingly discontinuous distribution of FTLDs within each taxonomic category suggests not only an extensive structural/functional diversification of the FTLs along evolutionary lineages but also that this intriguing lectin family has been subject to frequent gene duplication, secondary loss, lateral transfer, and functional co-option.

摘要

F型凝集素(FTL)家族是最近才被鉴定和进行结构表征的家族之一。FTL家族成员的特征是具有一个岩藻糖识别结构域[F型凝集素结构域(FTLD)],该结构域呈现出一种新颖的果冻卷折叠(“F型”折叠)以及独特的碳水化合物和钙结合序列基序。这个新颖的凝集素家族包含广泛分布的蛋白质,这些蛋白质具有单个、两个或更多个FTLD,它们或者串联排列,或者与其他结构和功能不同的结构域组合,即使在单个物种内也能产生具有多效性的凝集素亚基。此外,在单个个体中表达的FTL序列(异构体)的异常变异性揭示了FTL特有的配体识别多样化的遗传机制。FTL在自我/非自我识别中的功能包括先天免疫、受精、微生物黏附以及发病机制等。此外,尽管F型折叠是FTL所特有的,但基于结构的搜索发现了一些与FTL序列相似性较小但具有FTLD折叠的明显不相关的蛋白质。一般来说,对从病毒到哺乳动物的FTLD序列进行系统发育分析,揭示出的进化枝与目前公认的现存物种分类法一致。然而,FTLD在每个分类类别中令人惊讶的不连续分布不仅表明FTL沿着进化谱系发生了广泛的结构/功能多样化,还表明这个有趣的凝集素家族经历了频繁的基因复制、二次丢失、横向转移和功能借用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2b6/5712786/6e98f06c067d/fimmu-08-01648-g002.jpg

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