scholarly journals Disruption of Mouse CD46 Causes an Accelerated Spontaneous Acrosome Reaction in Sperm

2003 ◽  
Vol 23 (7) ◽  
pp. 2614-2622 ◽  
Author(s):  
Naokazu Inoue ◽  
Masahito Ikawa ◽  
Tomoko Nakanishi ◽  
Misako Matsumoto ◽  
Midori Nomura ◽  
...  

ABSTRACT Human membrane cofactor protein (MCP, CD46) is a ubiquitously expressed protein known to protect cells from complement attack. Interestingly, when we examined the expression of mouse CD46, which we recently cloned, the message was found only in testis and the protein was found on the inner acrosomal membrane of sperm. In order to elucidate the function of CD46, we produced mice carrying a null mutation in the CD46 gene by using homologous recombination. Despite the absence of CD46, the mice were healthy and both sexes were fertile. However, to our surprise, the fertilizing ability of males appeared to be facilitated by disruption of the CD46 gene, as the average number of pups born from CD46−/− males was significantly greater than that of wild-type males. It was also revealed that the incidence of the spontaneous acrosome reaction doubled in CD46−/− sperm compared to that in wild-type sperm. It was assumed that this increase caused the heightened fertilizing ability found in CD46−/− sperm. These data suggest that CD46 may have some role in regulating sperm acrosome reaction.

1994 ◽  
Vol 41 (6) ◽  
pp. 1307-1313 ◽  
Author(s):  
M. Yoshizawa ◽  
T. Nagai ◽  
N. Yonezawa ◽  
M. Nakano

1989 ◽  
Vol 259 (2) ◽  
pp. 397-406 ◽  
Author(s):  
E R S Roldan ◽  
R A P Harrison

An investigation was made of the modifications in phospholipids that occur during the exocytotic event known as the ‘sperm acrosome reaction’. Phospholipids were prelabelled with 32P, and exocytosis was induced with Ca2+ and the ionophore A23187. When incubated with [32P]Pi in various media suitable for supporting sperm survival or fertilization in vitro, spermatozoa from all five species examined (ram, boar, guinea pig, mouse and human) incorporated 32P rapidly into the components of the phosphoinositide cycle. There were differences both between species and between media with respect to the actual rate of incorporation of label, and also between species with respect to other phospholipids labelled. Treatment of spermatozoa with Ca2+ and A23187 to induce the acrosome reaction resulted in a rapid breakdown of phosphatidylinositol 4, 5-bisphosphate and phosphatidylinositol 4-phosphate, which was complete within 3 min; there was also a great increase in labelling of phosphatidate. Occurrence of acrosome reactions in the sperm population was only observed after 5-10 min and reached a maximum response of greater than 90% after more than 30 min. The phosphoinositide breakdown was related to subsequent exocytosis: after EGTA/ionophore treatment, neither inositide breakdown nor exocytosis took place; however, later addition of Ca2+ resulted in immediate inositide breakdown, and exocytosis followed, with a delay relative to Ca2+ addition exactly similar to that following standard Ca2+/ionophore treatment. Neomycin inhibited both inositide breakdown and subsequent exocytosis provided it was added together with Ca2+ and ionophore; however, if the drug was added 3 min after Ca2+ and ionophore (by which time inositide breakdown was already complete), exocytosis was not inhibited. Ca2+ seemed to have several consecutive roles in the acrosome reaction. Low (micromolar) levels of free Ca2+ were needed both for phosphoinositide breakdown and for an event downstream of this breakdown; no other bivalent cation could substitute for Ca2+ in either event, and inositide breakdown was actually inhibited by Mg2+. In addition, millimolar levels of Ca2+ were needed for later stages of exocytosis, although this requirement could be satisfied by Sr2+. We conclude that breakdown of polyphosphoinositides is an essential early process after Ca2+ entry in the chain of events that lead to exocytosis in the mammalian sperm acrosome reaction.


Reproduction ◽  
1984 ◽  
Vol 70 (1) ◽  
pp. 83-94 ◽  
Author(s):  
R. V. Hyne ◽  
R. E. Higginson ◽  
D. Kohlman ◽  
A. Lopata

1996 ◽  
Vol 71 ◽  
pp. 257
Author(s):  
Akira Nozawa. ◽  
Koji Ogasawara. ◽  
Satoru Kaneko. ◽  
Koichi Takeuchi ◽  
Takao Hashimoto

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