pH and protease control of acrosomal content stasis and release during the guinea pig sperm acrosome reaction. 1985

T T Huang, and D Hardy, and H Yanagimachi, and C Teuscher, and K Tung, and G Wild, and R Yanagimachi

The purpose of this study was to examine how trypsin inhibitors affect the guinea pig sperm acrosome reaction in vitro. Using spermatozoa pretreated with lysophosphatidyl choline, we found that both naturally occurring high molecular weight and the smaller synthetic trypsin inhibitor p-aminobenzamidine (PAB) delayed the onset of the acrosome reaction as monitored by light microscopy. Examination with electron microscopy revealed that acrosomal matrix dispersal rather than membrane fusion was affected. Despite the morphologic delay in acrosomal content release, PAB unexpectedly permitted 96% of soluble acrosomal antigen to be released into the supernatant. In addition, total acrosin release in the presence of PAB was 74% of control, with the vast majority as latent rather than active enzyme. A morphologically intact but membrane-free target of acrosomal matrix (AM), which is sensitive to trypsin inhibitor, was partially purified using Triton-x-100 at pH 5.2. AM remained morphologically stable at pH 5.2; however, shift up to pH 7 resulted in rapid dissolution within several minutes as monitored by light and electron microscopy and light scattering. Trypsin inhibitor prevented dispersion of AM at pH 7. The results suggest that, during the acrosome reaction, one distinct region of the acrosomal contents disperses after membrane vesiculation in a pH and trypsin inhibitor-insensitive fashion while a pH sensitive trypsin-like activity (acrosin?) disperses another discrete region of acrosomal matrix.

UI MeSH Term Description Entries
D008297 Male Males
D008854 Microscopy, Electron Microscopy using an electron beam, instead of light, to visualize the sample, thereby allowing much greater magnification. The interactions of ELECTRONS with specimens are used to provide information about the fine structure of that specimen. In TRANSMISSION ELECTRON MICROSCOPY the reactions of the electrons that are transmitted through the specimen are imaged. In SCANNING ELECTRON MICROSCOPY an electron beam falls at a non-normal angle on the specimen and the image is derived from the reactions occurring above the plane of the specimen. Electron Microscopy
D010447 Peptide Hydrolases Hydrolases that specifically cleave the peptide bonds found in PROTEINS and PEPTIDES. Examples of sub-subclasses for this group include EXOPEPTIDASES and ENDOPEPTIDASES. Peptidase,Peptidases,Peptide Hydrolase,Protease,Proteases,Proteinase,Proteinases,Proteolytic Enzyme,Proteolytic Enzymes,Esteroproteases,Enzyme, Proteolytic,Hydrolase, Peptide
D006168 Guinea Pigs A common name used for the genus Cavia. The most common species is Cavia porcellus which is the domesticated guinea pig used for pets and biomedical research. Cavia,Cavia porcellus,Guinea Pig,Pig, Guinea,Pigs, Guinea
D006863 Hydrogen-Ion Concentration The normality of a solution with respect to HYDROGEN ions; H+. It is related to acidity measurements in most cases by pH pH,Concentration, Hydrogen-Ion,Concentrations, Hydrogen-Ion,Hydrogen Ion Concentration,Hydrogen-Ion Concentrations
D000176 Acrosin A trypsin-like enzyme of spermatozoa which is not inhibited by alpha 1 antitrypsin. Acrosomal proteinase,Akrosin,M beta-Acrosin,M beta Acrosin,beta-Acrosin, M,proteinase, Acrosomal
D000177 Acrosome The cap-like structure covering the anterior portion of SPERM HEAD. Acrosome, derived from LYSOSOMES, is a membrane-bound organelle that contains the required hydrolytic and proteolytic enzymes necessary for sperm penetration of the egg in FERTILIZATION. Acrosomes
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D000941 Antigens Substances that are recognized by the immune system and induce an immune reaction. Antigen
D013094 Spermatozoa Mature male germ cells derived from SPERMATIDS. As spermatids move toward the lumen of the SEMINIFEROUS TUBULES, they undergo extensive structural changes including the loss of cytoplasm, condensation of CHROMATIN into the SPERM HEAD, formation of the ACROSOME cap, the SPERM MIDPIECE and the SPERM TAIL that provides motility. Sperm,Spermatozoon,X-Bearing Sperm,X-Chromosome-Bearing Sperm,Y-Bearing Sperm,Y-Chromosome-Bearing Sperm,Sperm, X-Bearing,Sperm, X-Chromosome-Bearing,Sperm, Y-Bearing,Sperm, Y-Chromosome-Bearing,Sperms, X-Bearing,Sperms, X-Chromosome-Bearing,Sperms, Y-Bearing,Sperms, Y-Chromosome-Bearing,X Bearing Sperm,X Chromosome Bearing Sperm,X-Bearing Sperms,X-Chromosome-Bearing Sperms,Y Bearing Sperm,Y Chromosome Bearing Sperm,Y-Bearing Sperms,Y-Chromosome-Bearing Sperms

Related Publications

T T Huang, and D Hardy, and H Yanagimachi, and C Teuscher, and K Tung, and G Wild, and R Yanagimachi
January 2001, Biology of reproduction,
T T Huang, and D Hardy, and H Yanagimachi, and C Teuscher, and K Tung, and G Wild, and R Yanagimachi
January 1990, Molecular reproduction and development,
T T Huang, and D Hardy, and H Yanagimachi, and C Teuscher, and K Tung, and G Wild, and R Yanagimachi
April 1998, The Journal of biological chemistry,
T T Huang, and D Hardy, and H Yanagimachi, and C Teuscher, and K Tung, and G Wild, and R Yanagimachi
April 1982, Journal of cell science,
T T Huang, and D Hardy, and H Yanagimachi, and C Teuscher, and K Tung, and G Wild, and R Yanagimachi
April 1980, Biology of reproduction,
T T Huang, and D Hardy, and H Yanagimachi, and C Teuscher, and K Tung, and G Wild, and R Yanagimachi
January 1984, Journal of reproduction and fertility,
T T Huang, and D Hardy, and H Yanagimachi, and C Teuscher, and K Tung, and G Wild, and R Yanagimachi
July 1986, Journal of reproduction and fertility,
T T Huang, and D Hardy, and H Yanagimachi, and C Teuscher, and K Tung, and G Wild, and R Yanagimachi
January 1997, Andrologia,
T T Huang, and D Hardy, and H Yanagimachi, and C Teuscher, and K Tung, and G Wild, and R Yanagimachi
August 1978, Journal of cell science,
T T Huang, and D Hardy, and H Yanagimachi, and C Teuscher, and K Tung, and G Wild, and R Yanagimachi
June 1997, Sheng li xue bao : [Acta physiologica Sinica],
Copied contents to your clipboard!