The decline of porcine sperm motility by geldanamycin, a specific inhibitor of heat-shock protein 90 (HSP90)

被引:45
作者
Huang, SY
Kuo, YH
Tsou, HL
Lee, YP
King, YT
Huang, HC
Yang, PC
Lee, WC
机构
[1] Pig Res Inst Taiwan, Dept Comparat Med, Chunan 35099, Miaoli, Taiwan
[2] Natl Chung Hsing Univ, Dept Anim Sci, Taichung 402, Taiwan
关键词
sperm motility; geldanamycin; HSP90; pig; caffeine;
D O I
10.1016/S0093-691X(00)00262-4
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Sperm motility is an important parameter for fertility. The molecular mechanisms of mammalian sperm motility are still largely undefined. Our previous observations suggested that heat shock protein 90 (HSP90) may be associated with porcine sperm motility. The aim of the present study was to further characterize the plausible novel function of HSP90 on sperm motility. Semen from normal, sexually mature boars with sperm motility higher than 80% was used. An HSP90-specific inhibitor, geldanamycin (GA), was added to diluted semen at 0.5, 1.0, 2.5 or 5.0 mu g/mL, and the semen was then incubated at 37 degrees C for 15, 30, 45 or 60 min. Sperm motility was determined by using computer-assisted semen analyzer at the end of incubation. The results indicated that GA significantly reduced sperm motility in a dose and time dependent manner. Moreover, incubation of semen with 5.0 mu g/mL GA for 15 min completely stopped sperm motility. To test the reversibility of the GA effect on sperm motility, GA was removed after 30 min incubation and was replaced with fresh extender alone or with extender plus 5 mM caffeine, then incubated for another 15, 30, 45 or 60 min. The results showed that simply removing GA did not reverse the inhibitory effect on sperm motility, while adding caffeine partially reversed this inhibitory effect. However, the effect of 2.5 or 5.0 mu g/mL GA was not reversed by caffeine. Considering the specificity of GA targeting to HSP90, the above observations suggested that HSP90 may play a crucial role in regulating porcine sperm motility. (C) 2000 by Elsevier Science.
引用
收藏
页码:1177 / 1184
页数:8
相关论文
共 35 条
[1]   Seminal plasma affects membrane integrity and motility of equine spermatozoa after cryopreservation [J].
Aurich, JE ;
Kuhne, A ;
Hoppe, H ;
Aurich, C .
THERIOGENOLOGY, 1996, 46 (05) :791-797
[2]   Inhibition of mineralocorticoid and glucocorticoid receptor function by the heat shock protein 90-binding agent geldanamycin [J].
Bamberger, CM ;
Wald, M ;
Bamberger, AM ;
Schulte, HM .
MOLECULAR AND CELLULAR ENDOCRINOLOGY, 1997, 131 (02) :233-240
[3]   Neuronal nitric-oxide synthase is regulated by the hsp90-based chaperone system in vivo [J].
Bender, AT ;
Silverstein, AM ;
Demady, DR ;
Kanelakis, KC ;
Noguchi, S ;
Pratt, WB ;
Osawa, Y .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (03) :1472-1478
[4]   HSP82 IS AN ESSENTIAL PROTEIN THAT IS REQUIRED IN HIGHER CONCENTRATIONS FOR GROWTH OF CELLS AT HIGHER TEMPERATURES [J].
BORKOVICH, KA ;
FARRELLY, FW ;
FINKELSTEIN, DB ;
TAULIEN, J ;
LINDQUIST, S .
MOLECULAR AND CELLULAR BIOLOGY, 1989, 9 (09) :3919-3930
[5]   The 90-kDa molecular chaperone family:: Structure, function, and clinical applications.: A comprehensive review [J].
Csermely, P ;
Schnaider, T ;
Soti, C ;
Prohászka, Z ;
Nardai, G .
PHARMACOLOGY & THERAPEUTICS, 1998, 79 (02) :129-168
[6]   Geldanamycin, a heat shock protein 90-binding steroid-dependent translocation of the glucocorticoid receptor from the cytoplasm to the nucleus [J].
Czar, MJ ;
Galigniana, MD ;
Silverstein, AM ;
Pratt, WB .
BIOCHEMISTRY, 1997, 36 (25) :7776-7785
[7]   The human cytosolic molecular chaperones hsp90, Hsp70 (hsc70) and hdj-1 have distinct roles in recognition of a non-native protein and protein refolding [J].
Freeman, BC ;
Morimoto, RI .
EMBO JOURNAL, 1996, 15 (12) :2969-2979
[8]   Regulation of sperm motility at the axonemal level [J].
Gagnon, C .
REPRODUCTION FERTILITY AND DEVELOPMENT, 1995, 7 (04) :847-855
[9]   STIMULATION AND MAINTENANCE OF EJACULATED BOVINE SPERMATOZOAN RESPIRATION AND MOTILITY BY CAFFEINE [J].
GARBERS, DL ;
FIRST, NL ;
SULLIVAN, JJ ;
LARDY, HA .
BIOLOGY OF REPRODUCTION, 1971, 5 (03) :336-&
[10]  
GARBERS DL, 1971, BIOCHEMISTRY-US, V10, P1825