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山羊附睾血浆中抗黏附因子-II的特性研究

Characterization of anti-sticking factor-II from goat epididymal plasma.

作者信息

Roy N, Majumder G C

机构信息

Indian Institute of Chemical Biology, Jadavpur, Calcutta.

出版信息

J Cell Biochem. 1990 Dec;44(4):265-74. doi: 10.1002/jcb.240440408.

Abstract

A previous study has characterized the major 47 kDa anti-sticking factor (ASF-I) from goat cauda-epididymal plasma (Roy, N., and Majumder, G.C., Biochim. Biophys. Acta, 991:114-122, 1989). This study reports the purification and characterization of ASF-II, another anti-sticking factor from the goat epididymal plasma. ASF-II was purified to apparent homogeneity by using concanavalin A-agarose affinity chromatography, DEAE-cellulose chromatography, alumina gel adsorption, and isoelectric focussing techniques. It showed a single protein band by both non-denaturing and SDS-polyacrylamide gel electrophoresis. ASF-II showed a molecular weight of 36,000 and a sedimentation constant of 2.4S. ASF-II is largely stable to heat treatment and it is a specific glycoprotein having high affinity and specificity for its anti-sticking action. At saturating concentration (1 nM) it inhibited adhesion of nearly 50% of spermatozoa to the glass surface of the haemocytometer counting chamber. Both the protein and sugar parts of the factor are essential for the anti-sticking activity since it lost its activity completely when treated with trypsin, L-fucosidase, or mannosidase. ASF-II does not coat the glass surface and it binds to spermatozoa. Data are consistent with the view that ASF-II has not been derived from the larger ASF-I molecule due to its enzymic modifications. Both ASF-I and -II had no effect on sperm forward motility as evidenced by spectrophotometric motility assays, indicating thereby the suitability of the factors to improve the existing sperm motility assays by eliminating the possibility of cell-sticking artifacts.

摘要

此前的一项研究已对源自山羊附睾尾血浆的主要47 kDa抗黏附因子(ASF-I)进行了特性描述(罗伊,N.,以及马宗德,G.C.,《生物化学与生物物理学报》,991:114 - 122,1989)。本研究报告了另一种源自山羊附睾血浆的抗黏附因子ASF-II的纯化及特性。通过使用伴刀豆球蛋白A - 琼脂糖亲和色谱、DEAE - 纤维素色谱、氧化铝凝胶吸附及等电聚焦技术,将ASF-II纯化至表观均一。通过非变性和SDS - 聚丙烯酰胺凝胶电泳,它均显示为单一蛋白条带。ASF-II的分子量为36,000,沉降常数为2.4S。ASF-II对热处理基本稳定,是一种对其抗黏附作用具有高亲和力和特异性的特异性糖蛋白。在饱和浓度(1 nM)时,它能抑制近50%的精子黏附到血细胞计数器计数室的玻璃表面。该因子的蛋白质和糖部分对于抗黏附活性均至关重要,因为用胰蛋白酶、L - 岩藻糖苷酶或甘露糖苷酶处理时,它会完全丧失活性。ASF-II不会覆盖玻璃表面,而是与精子结合。数据与以下观点一致,即ASF-II并非由于酶促修饰而源自较大的ASF-I分子。分光光度法运动性分析表明,ASF-I和ASF-II对精子向前运动均无影响,从而表明这些因子适用于通过消除细胞黏附假象来改进现有的精子运动性分析方法。

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