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2. Organisation und Dynamik der Phospholipide in der Zell- und Akrosommembran von Eberspermien während der Kapazitation und Akrosomreaktion

5. Evolution of the spermadhesin gene family

8. Molecular characterization of the equine testis-specific protein 1 ( TPX1 ) and acidic epididymal glycoprotein 2 ( AEG2 ) genes encoding members of the cysteine-rich secretory protein (CRISP) family

9. Molecular characterization of the equine AEG1 locus

10. Crystallization and preliminary X-ray diffraction analysis of boar seminal plasma spermadhesin PSP-I/PSP-II, a heterodimer of two CUB domains

11. Amino acid sequence of HSP-1, a major protein of stallion seminal plasma: Effect of glycosylation on its heparin- and gelatin-binding capabilities

12. Boar spermadhesin PSP-II: Location of posttranslational modifications, heterodimer formation with PSP-I glycoforms and effect of dimerization on the ligand-binding capabilities of the subunits

13. Characterization of AWN-1 glycosylated isoforms helps define the zona pellucida and serine proteinase inhibitor-binding region on boar spermadhesins

17. Monoclonal Antibodies against Boar Sperm Zona Pellucida-Binding Protein AWN-1. Characterization of a Continuous Antigenic Determinant and Immunolocalization Of AWN Epitopes in Inseminated Sows1

33. Analysis of the structural organization and thermal stability of two spermadhesins.

34. Boar spermadhesin AWN-1.

35. Characterization of two glycosylated boar spermadhesins.

36. The complete primary structure of the boar spermadhesin AQN-1, a carbohydrate-binding protein involved in fertilization.

38. Chromatin-unstable boar spermatozoa have little chance of reaching oocytes in vivo.

39. Analysis of N-linked glycans of porcine zona pellucida glycoprotein ZPA by MALDI-TOF MS: a contribution to understanding zona pellucida structure

40. Organisation und Dynamik der Phospholipide in der Zell- und Akrosommembran von Eberspermien während der Kapazitation und Akrosomreaktion

41. Specific order in the appearance of protein tyrosine phosphorylation patterns is functionally coordinated with dog sperm hyperactivation and capacitation.

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