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CAP 超家族蛋白在哺乳动物生育和疾病中的功能。

The functions of CAP superfamily proteins in mammalian fertility and disease.

机构信息

School of Biological Sciences, Monash University, Clayton, Victoria, 3800, Australia.

出版信息

Hum Reprod Update. 2020 Sep 1;26(5):689-723. doi: 10.1093/humupd/dmaa016.

Abstract

BACKGROUND

Members of the cysteine-rich secretory proteins (CRISPS), antigen 5 (Ag5) and pathogenesis-related 1 (Pr-1) (CAP) superfamily of proteins are found across the bacterial, fungal, plant and animal kingdoms. Although many CAP superfamily proteins remain poorly characterized, over the past decade evidence has accumulated, which provides insights into the functional roles of these proteins in various processes, including fertilization, immune defence and subversion, pathogen virulence, venom toxicology and cancer biology.

OBJECTIVE AND RATIONALE

The aim of this article is to summarize the current state of knowledge on CAP superfamily proteins in mammalian fertility, organismal homeostasis and disease pathogenesis.

SEARCH METHODS

The scientific literature search was undertaken via PubMed database on all articles published prior to November 2019. Search terms were based on following keywords: 'CAP superfamily', 'CRISP', 'Cysteine-rich secretory proteins', 'Antigen 5', 'Pathogenesis-related 1', 'male fertility', 'CAP and CTL domain containing', 'CRISPLD1', 'CRISPLD2', 'bacterial SCP', 'ion channel regulator', 'CatSper', 'PI15', 'PI16', 'CLEC', 'PRY proteins', 'ASP proteins', 'spermatogenesis', 'epididymal maturation', 'capacitation' and 'snake CRISP'. In addition to that, reference lists of primary and review article were reviewed for additional relevant publications.

OUTCOMES

In this review, we discuss the breadth of knowledge on CAP superfamily proteins with regards to their protein structure, biological functions and emerging significance in reproduction, health and disease. We discuss the evolution of CAP superfamily proteins from their otherwise unembellished prokaryotic predecessors into the multi-domain and neofunctionalized members found in eukaryotic organisms today. At least in part because of the rapid evolution of these proteins, many inconsistencies in nomenclature exist within the literature. As such, and in part through the use of a maximum likelihood phylogenetic analysis of the vertebrate CRISP subfamily, we have attempted to clarify this confusion, thus allowing for a comparison of orthologous protein function between species. This framework also allows the prediction of functional relevance between species based on sequence and structural conservation.

WIDER IMPLICATIONS

This review generates a picture of critical roles for CAP proteins in ion channel regulation, sterol and lipid binding and protease inhibition, and as ligands involved in the induction of multiple cellular processes.

摘要

背景

富含半胱氨酸的分泌蛋白(CRISPS)、抗原 5(Ag5)和与发病机制相关的 1(Pr-1)(CAP)蛋白超家族成员存在于细菌、真菌、植物和动物王国。尽管许多 CAP 蛋白超家族成员的特征仍然很差,但在过去的十年中,已经积累了证据,这些证据提供了对这些蛋白质在各种过程中的功能作用的深入了解,包括受精、免疫防御和颠覆、病原体毒力、毒液毒理学和癌症生物学。

目的和理由

本文的目的是总结哺乳动物生育、机体稳态和疾病发病机制中 CAP 蛋白超家族的现有知识状态。

搜索方法

通过 PubMed 数据库对截至 2019 年 11 月之前发表的所有文章进行了科学文献检索。搜索术语基于以下关键词:“CAP 超家族”、“CRISP”、“富含半胱氨酸的分泌蛋白”、“抗原 5”、“与发病机制相关的 1”、“男性生育能力”、“包含 CAP 和 CTL 结构域”、“CRISPLD1”、“CRISPLD2”、“细菌 SCP”、“离子通道调节剂”、“CatSper”、“PI15”、“PI16”、“CLEC”、“PRY 蛋白”、“ASP 蛋白”、“精子发生”、“附睾成熟”、“获能”和“蛇 CRISP”。此外,还审查了主要和综述文章的参考文献列表,以获取其他相关出版物。

结果

在这篇综述中,我们讨论了 CAP 蛋白超家族的广泛知识,包括它们的蛋白质结构、生物学功能以及在生殖、健康和疾病中的新出现的意义。我们讨论了 CAP 蛋白超家族从其原始的无修饰的原核前体进化为今天在真核生物中发现的多结构域和新功能化成员的过程。至少部分由于这些蛋白质的快速进化,文献中存在许多命名不一致的情况。因此,我们通过对脊椎动物 CRISP 亚家族的最大似然系统发育分析,试图澄清这种混乱,从而允许在物种之间比较同源蛋白的功能。这个框架还允许根据序列和结构保守性来预测物种之间的功能相关性。

更广泛的影响

本综述描绘了 CAP 蛋白在离子通道调节、固醇和脂质结合以及蛋白酶抑制中的关键作用,以及作为参与多种细胞过程诱导的配体的作用。

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