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果蝇中 GYR- 和 YLP 样基序的分布表明其在表皮组装和其他蛋白质-蛋白质相互作用中具有普遍作用。

The distribution of GYR- and YLP-like motifs in Drosophila suggests a general role in cuticle assembly and other protein-protein interactions.

机构信息

Department of Cellular Biology, University of Georgia, Athens, Georgia, United States of America.

出版信息

PLoS One. 2010 Sep 2;5(9):e12536. doi: 10.1371/journal.pone.0012536.

Abstract

BACKGROUND

Arthropod cuticle is composed predominantly of a self-assembling matrix of chitin and protein. Genes encoding structural cuticular proteins are remarkably abundant in arthropod genomes, yet there has been no systematic survey of conserved motifs across cuticular protein families.

METHODOLOGY/PRINCIPAL FINDINGS: Two short sequence motifs with conserved tyrosines were identified in Drosophila cuticular proteins that were similar to the GYR and YLP Interpro domains. These motifs were found in members of the CPR, Tweedle, CPF/CPFL, and (in Anopheles gambiae) CPLCG cuticular protein families, and the Dusky/Miniature family of cuticle-associated proteins. Tweedle proteins have a characteristic motif architecture that is shared with the Drosophila protein GCR1 and its orthologs in other species, suggesting that GCR1 is also cuticular. A resilin repeat, which has been shown to confer elasticity, matched one of the motifs; a number of other Drosophila proteins of unknown function exhibit a motif architecture similar to that of resilin. The motifs were also present in some proteins of the peritrophic matrix and the eggshell, suggesting molecular convergence among distinct extracellular matrices. More surprisingly, gene regulation, development, and proteolysis were statistically over-represented ontology terms for all non-cuticular matches in Drosophila. Searches against other arthropod genomes indicate that the motifs are taxonomically widespread.

CONCLUSIONS

This survey suggests a more general definition for GYR and YLP motifs and reveals their contribution to several types of extracellular matrix. They may define sites of protein interaction with DNA or other proteins, based on ontology analysis. These results can help guide experimental studies on the biochemistry of cuticle assembly.

摘要

背景

节肢动物的外骨骼主要由几丁质和蛋白质组成的自组装基质构成。编码结构外骨骼蛋白的基因在节肢动物基因组中非常丰富,但尚未对跨外骨骼蛋白家族的保守基序进行系统调查。

方法/主要发现:在果蝇外骨骼蛋白中发现了两个具有保守酪氨酸的短序列基序,类似于 GYR 和 YLP Interpro 结构域。这些基序存在于 CPR、Tweedle、CPF/CPFL 和(在冈比亚按蚊中)CPLCG 外骨骼蛋白家族以及与表皮相关的 Dusky/Miniature 蛋白家族成员中。Tweedle 蛋白具有与果蝇蛋白 GCR1 及其在其他物种中的同源物共享的特征基序结构,表明 GCR1 也是外骨骼蛋白。已显示赋予弹性的弹性蛋白重复与其中一个基序匹配;许多其他具有未知功能的果蝇蛋白表现出与弹性蛋白相似的基序结构。这些基序也存在于几丁质层和卵壳的一些蛋白质中,表明不同细胞外基质之间存在分子趋同。更令人惊讶的是,在果蝇中,所有非外骨骼匹配的基因调控、发育和蛋白水解的本体论术语都存在统计学上的过度表达。针对其他节肢动物基因组的搜索表明,这些基序在分类上广泛存在。

结论

这项调查为 GYR 和 YLP 基序提供了更广泛的定义,并揭示了它们对几种类型细胞外基质的贡献。基于本体分析,它们可能定义了与 DNA 或其他蛋白质相互作用的蛋白质结合位点。这些结果可以帮助指导外骨骼组装生物化学的实验研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4ae/2932725/79c9036680f6/pone.0012536.g001.jpg

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