Structural relationship of sperm soluble hyaluronidase to the sperm membrane protein PH-20

被引:50
作者
Hunnicutt, GR [1 ]
Mahan, K [1 ]
Lathrop, WF [1 ]
Ramarao, CS [1 ]
Myles, DG [1 ]
Primakoff, P [1 ]
机构
[1] UNIV CONNECTICUT,CTR HLTH,DEPT PHYSIOL,FARMINGTON,CT 06030
关键词
D O I
10.1095/biolreprod54.6.1343
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
The sperm plasma membrane protein PH-20 has a hyaluronidase activity that enables acrosome-intact sperm to pass through the cumulus cell layer of the egg. In this study we analyzed the relationship of guinea pig PH-20 and the ''classical'' soluble hyaluronidase released at the time of the acrosome reaction of guinea pig sperm. PH-20 is a membrane protein, anchored in the plasma and inner acrosomal membranes by a glycosyl phosphatidyl inositol anchor. Several types of experiments indicate a structural relationship of PH-20 and the soluble hyaluronidase released during the acrosome reaction. First, an antiserum raised against purified PH-20 is positive in an immunoblot of the soluble protein fraction released during the acrosome reaction. In the released, soluble protein fraction, the anti-PH-20 antiserum recognizes a protein of similar to 64 kDa, i.e., identical in molecular mass to PH-20 (similar to 64 kDa). Second, the enzymatic activity of the released hyaluronidase is completely inhibited (100%) by the anti-PH-20 antiserum. Third, almost all (97%) of the soluble hyaluronidase is removed from the released protein fraction by a single pass through an affinity column made with an anti-PH-20 monoclonal antibody. These findings suggest that the released, soluble hyaluronidase is a soluble form of PH-20 (sPH-20). During the acrosome reaction, PH-20 undergoes endoproteolytic cleavage into two disulfide-linked fragments whereas the released sPH-20 is not cleaved, suggesting the possible activity of a membrane-bound endoprotease on PH-20. We searched for a cDNA encoding sPH-20 but none was found. This result suggests that sPH-20 may arise from the enzymatic release of PH-20 from its membrane anchor, possibly at the time of acrosome reaction.
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页码:1343 / 1349
页数:7
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