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乳黏附素是猪精子上一种潜在的输卵管Lewis X三糖受体。

Lactadherin is a candidate oviduct Lewis X trisaccharide receptor on porcine spermatozoa.

作者信息

Silva E, Frost D, Li L, Bovin N, Miller D J

机构信息

Department of Animal Sciences, University of Illinois, Urbana, IL, USA.

School of Pharmacy, University of Wisconsin-Madison, Madison, WI, USA.

出版信息

Andrology. 2017 May;5(3):589-597. doi: 10.1111/andr.12340. Epub 2017 Mar 15.

Abstract

A recent study has demonstrated that porcine spermatozoa recognize with high affinity carbohydrate structures containing Lewis X motifs. Sperm adhesion to Lewis X is proposed to mediate sperm binding to the oviduct epithelium to form a reservoir. The objective of this study was to identify Lewis X-binding proteins from porcine spermatozoa as candidate receptors for oviduct glycans. To identify low-abundance proteins typically masked by proteins originating from seminal fluid, Lewis X candidate receptors were enriched from cauda epididymal boar spermatozoa. Plasma membrane preparations from cauda epididymal spermatozoa were subjected to RP-HPLC and glycan blotting assays to isolate and detect proteins that bind Lewis X. Following bottom-up LC-MS/MS analysis, among the two bands that bound sulfated Lewis X, ADAM5, which spermatozoa, was confidently identified. ADAM family members have been established as contributors to sperm entry into the oviduct. A second sulfated Lewis X-binding protein identified was the peripheral membrane protein lactadherin (also known as P47, SED1 and MFG-E8 in different species). The interaction between Lewis X and lactadherin was functionally important because competitive inhibition by soluble recombinant lactadherin reduced sperm binding to the oviduct epithelium. Furthermore, far-western blotting demonstrated that purified lactadherin could bind oviduct cells. In summary, these findings reveal that, in addition to the previously reported glycan affinity of accessory gland proteins that adhere to spermatozoa, multiple proteins intrinsic to spermatozoa have affinity for a specific oviduct glycan. Further, in addition to binding to the zona pellucida, lactadherin is now implicated in binding to oviduct glycans to promote formation of the sperm reservoir.

摘要

最近的一项研究表明,猪精子能以高亲和力识别含有Lewis X基序的碳水化合物结构。精子与Lewis X的黏附被认为介导了精子与输卵管上皮的结合,从而形成一个储存库。本研究的目的是从猪精子中鉴定出与Lewis X结合的蛋白,作为输卵管聚糖的候选受体。为了鉴定通常被来自精液的蛋白质所掩盖的低丰度蛋白质,从附睾尾部的公猪精子中富集了Lewis X候选受体。对附睾尾部精子的质膜制剂进行反相高效液相色谱(RP-HPLC)和聚糖印迹分析,以分离和检测与Lewis X结合的蛋白质。经过自下而上的液相色谱-串联质谱(LC-MS/MS)分析,在与硫酸化Lewis X结合的两条条带中,可靠地鉴定出了精子中的解聚素和金属蛋白酶5(ADAM5)。ADAM家族成员已被确定为精子进入输卵管的促成因素。鉴定出的第二种与硫酸化Lewis X结合的蛋白质是外周膜蛋白乳粘连蛋白(在不同物种中也称为P47、SED1和MFG-E8)。Lewis X与乳粘连蛋白之间的相互作用在功能上很重要,因为可溶性重组乳粘连蛋白的竞争性抑制降低了精子与输卵管上皮的结合。此外,Far-Western印迹法表明纯化的乳粘连蛋白可以结合输卵管细胞。总之,这些发现揭示,除了先前报道的附着在精子上的附属腺蛋白的聚糖亲和力外,精子本身的多种蛋白质对特定的输卵管聚糖也具有亲和力。此外,除了与透明带结合外,乳粘连蛋白现在还被认为参与了与输卵管聚糖的结合,以促进精子储存库的形成。

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