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牛精浆中的主要蛋白质与鸡蛋蛋黄的低密度脂蛋白部分结合。

Major proteins of bovine seminal plasma bind to the low-density lipoprotein fraction of hen's egg yolk.

作者信息

Manjunath Puttaswamy, Nauc Veronica, Bergeron Annick, Ménard Martin

机构信息

Department of Medicine, University of Montreal and Guy-Bernier Research Center, Maisonneuve-Rosemont Hospital, Quebec, Canada H1T 2M4.

出版信息

Biol Reprod. 2002 Oct;67(4):1250-8. doi: 10.1095/biolreprod67.4.1250.

Abstract

Over the past 60 years, egg yolk (EY) has been routinely used in both liquid semen extenders and those used to cryopreserve sperm. However, the mechanism by which EY protects sperm during liquid storage or from freezing damage is unknown. Bovine seminal plasma contains a family of proteins designated BSP-A1/-A2, BSP-A3, and BSP-30-kDa (collectively called BSP proteins). These proteins are secretory products of seminal vesicles that are acquired by sperm at ejaculation, modifying the sperm membrane by inducing cholesterol efflux. Because cholesterol efflux is time and concentration dependent, continuous exposure to seminal plasma (SP) that contains BSP proteins may be detrimental to the sperm membrane, which may adversely affect the ability of sperm to be preserved. In this article, we show that the BSP proteins bind to the low-density fraction (LDF), a lipoprotein component of the EY extender. The binding is rapid, specific, saturable, and stable even after freeze-thawing of semen. Furthermore, LDF has a very high capacity for BSP protein binding. The binding of BSP proteins to LDF may prevent their detrimental effect on sperm membrane, and this may be crucial for sperm storage. Thus, we propose that the sequestration of BSP proteins of SP by LDF may represent the major mechanism of sperm protection by EY.

摘要

在过去60年里,蛋黄(EY)一直被常规用于液态精液稀释剂以及用于冷冻保存精子的制剂中。然而,蛋黄在液态储存期间或防止精子冷冻损伤时保护精子的机制尚不清楚。牛精浆含有一族名为BSP-A1/-A2、BSP-A3和BSP-30-kDa的蛋白质(统称为BSP蛋白)。这些蛋白质是精囊的分泌产物,在射精时被精子获取,通过诱导胆固醇外流来修饰精子膜。由于胆固醇外流具有时间和浓度依赖性,持续暴露于含有BSP蛋白的精浆(SP)中可能对精子膜有害,这可能会对精子的保存能力产生不利影响。在本文中,我们表明BSP蛋白与低密度组分(LDF)结合,LDF是蛋黄稀释剂中的一种脂蛋白成分。这种结合迅速、特异、可饱和,甚至在精液冻融后仍稳定。此外,LDF对BSP蛋白的结合能力非常高。BSP蛋白与LDF的结合可能会阻止它们对精子膜产生有害影响,这可能对精子储存至关重要。因此,我们提出LDF对精浆中BSP蛋白的隔离可能是蛋黄保护精子的主要机制。

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