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精子结合蛋白(BSPs)系统发育和基因背景分析的新见解

New Insights into the Phylogeny and Gene Context Analysis of Binder of Sperm Proteins (BSPs).

作者信息

Serrano Edith, Martínez Ana B, Arruga Diana, Pérez-Pé Rosaura, Sánchez-Ferrer Álvaro, Muiño-Blanco Teresa, Cebrián-Pérez José A

机构信息

Departamento de Bioquímica y Biología Molecular y Celular-Instituto Universitario de Investigación en Ciencias Ambientales de Aragón (IUCA), Facultad de Veterinaria, Universidad de Zaragoza, 50013, Zaragoza, Spain.

Department of Biochemistry and Molecular Biology-A, Faculty of Biology, Regional Campus of International Excellence "Campus Mare Nostrum", University of Murcia, Campus Espinardo, E-30100, Murcia, Spain; Murcia Biomedical Research Institute (IMIB-Arrixaca), 30120, Murcia, Spain.

出版信息

PLoS One. 2015 Sep 2;10(9):e0137008. doi: 10.1371/journal.pone.0137008. eCollection 2015.

Abstract

Seminal plasma (SP) proteins support the survival of spermatozoa acting not only at the plasma membrane but also by inhibition of capacitation, resulting in higher fertilizing ability. Among SP proteins, BSP (binder of sperm) proteins are the most studied, since they may be useful for the improvement of semen diluents, storage and subsequent fertilization results. However, an updated and detailed phylogenetic analysis of the BSP protein superfamily has not been carried out with all the sequences described in the main databases. The update view shows for the first time an equally distributed number of sequences between the three families: BSP, and their homologs 1 (BSPH1) and 2 (BSPH2). The BSP family is divided in four subfamilies, BSP1 subfamily being the predominant, followed by subfamilies BSP3, BSP5 and BSP2. BSPH proteins were found among placental mammals (Eutheria) belonging to the orders Proboscidea, Primates, Lagomorpha, Rodentia, Chiroptera, Perissodactyla and Cetartiodactyla. However, BSPH2 proteins were also found in the Scandentia order and Metatheria clade. This phylogenetic analysis, when combined with a gene context analysis, showed a completely new evolutionary scenario for the BSP superfamily of proteins with three defined different gene patterns, one for BSPs, one for BSPH1/BSPH2/ELSPBP1 and another one for BSPH1/BSPH2 without ELSPBP1. In addition, the study has permitted to define concise conserved blocks for each family (BSP, BSPH1 and BSPH2), which could be used for a more reliable assignment for the incoming sequences, for data curation of current databases, and for cloning new BSPs, as the one described in this paper, ram seminal vesicle 20 kDa protein (RSVP20, Ovis aries BSP5b).

摘要

精浆(SP)蛋白不仅通过作用于质膜,还通过抑制精子获能来支持精子的存活,从而提高受精能力。在SP蛋白中,BSP(精子结合蛋白)蛋白是研究最多的,因为它们可能有助于改进精液稀释剂、储存及后续的受精结果。然而,尚未利用主要数据库中描述的所有序列对BSP蛋白超家族进行更新且详细的系统发育分析。更新后的观点首次显示,在三个家族(BSP及其同源物1(BSPH1)和2(BSPH2))之间序列数量分布均匀。BSP家族分为四个亚家族,其中BSP1亚家族占主导地位,其次是BSP3、BSP5和BSP2亚家族。在长鼻目、灵长目、兔形目、啮齿目、翼手目、奇蹄目和鲸偶蹄目等胎盘哺乳动物(真兽亚纲)中发现了BSPH蛋白。然而,在树鼩目和后兽亚纲中也发现了BSPH2蛋白。这种系统发育分析与基因背景分析相结合,揭示了BSP蛋白超家族全新的进化情况,具有三种不同的基因模式,一种是BSP的,一种是BSPH1/BSPH2/ELSPBP1的,另一种是不含ELSPBP1的BSPH1/BSPH2的。此外,该研究还为每个家族(BSP、BSPH1和BSPH2)定义了简洁的保守区域,可用于更可靠地对新序列进行分类、当前数据库的数据整理以及克隆新的BSP,如本文所述的公羊精囊20 kDa蛋白(RSVP20,绵羊BSP5b)。

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