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Binder of SPerm 5(BSP5)的 N 端部分在牛种中促进精子获能,它本质上是无规则卷曲的。

The N-terminal part of Binder of SPerm 5 (BSP5), which promotes sperm capacitation in bovine species is intrinsically disordered.

机构信息

Maisonneuve-Rosemont Hospital Research Center, 5415 L'Assomption Boulevard, Montreal, Quebec, Canada H1T 2M4.

出版信息

Biochem Biophys Res Commun. 2010 Apr 16;394(4):1036-41. doi: 10.1016/j.bbrc.2010.03.118. Epub 2010 Mar 21.

Abstract

Bovine BSP5 belongs to the Binder of SPerm (BSP) family. BSP5 plays a role in the bovine sperm capacitation by promoting cholesterol and phospholipid efflux. The variable N-terminal part in the BSP proteins is the uncharacterized region with no known function. Full-length, N-terminal part, and individual fibronectin type II domains of bovine BSP5 were cloned, expressed and purified from Escherichia coli. His-S tagged N-terminal part showed large variation in migration on SDS-PAGE in comparison to other constructs. Using mass spectrometry it was demonstrated that the His-S-N-terminal part has the expected molecular mass (13 kDa). The recombinant N-terminal part was sensitive to E. coli endogenous proteases during purification. Denaturing purification involving boiling lysis of cells was carried out, as the protein was thermostable. The His-S-N-terminal part lacked structure as determined by CD analysis. Bioinformatics analyses confirmed that the N-terminal part of bovine BSP5 is intrinsically disordered. In addition, bioinformatics analysis indicated that rabbit BSP and multiple forms of BSP proteins of bovine and equine species possess partially or completely disordered N-terminus. The conservation of disorder at the N-terminus in BSP members belonging to different species suggests a role in biological process such as sperm capacitation and/or sperm-egg interactions.

摘要

牛 BSP5 属于精子结合素(BSP)家族。BSP5 通过促进胆固醇和磷脂外排在牛精子获能中发挥作用。BSP 蛋白中的可变 N 端部分是未鉴定的区域,没有已知的功能。从大肠杆菌中克隆、表达和纯化了全长、N 端部分和牛 BSP5 的单个纤维连接蛋白 II 结构域。与其他构建体相比,His-S 标记的 N 端部分在 SDS-PAGE 上的迁移率有很大差异。使用质谱法证明 His-S-N 端部分具有预期的分子量(13 kDa)。重组 N 端部分在纯化过程中对大肠杆菌内源性蛋白酶敏感。进行了变性纯化,包括细胞煮沸裂解,因为该蛋白是热稳定的。CD 分析表明 His-S-N 端部分没有结构。生物信息学分析证实牛 BSP5 的 N 端部分是固有无序的。此外,生物信息学分析表明兔 BSP 和牛和马种的多种 BSP 蛋白形式具有部分或完全无序的 N 端。属于不同物种的 BSP 成员在 N 端的无序性保守表明其在精子获能和/或精子-卵相互作用等生物学过程中发挥作用。

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