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FEBS Letters|February 27, 1989
Primary structure of human proacrosin deduced from its cDNA sequenceT Baba, K Watanabe, S Kashiwabara, et al.Journal of Biochemistry|June 1, 1991
Structure and organization of the mouse acrosin geneK Watanabe, T Baba, S Kashiwabara, et al.Journal of Biochemistry|November 1, 1990
Primary structure of mouse proacrosin deduced from the cDNA sequence and its gene expression during spermatogenesisS Kashiwabara, T Baba, M Takada, et al.Biochemical and Biophysical Research Communications|May 15, 1989
Proacrosin activation in the presence of a 32-kDa protein from boar spermatozoaT Baba, Y Michikawa, S Kashiwabara, et al.Biochemical and Biophysical Research Communications|November 30, 1990
Acrosin biosynthesis in meiotic and postmeiotic spermatogenic cellsS Kashiwabara, Y Arai, K Kodaira, et al.Carbohydrate Research|June 15, 1988
Isolation and characterization of the 36-kDa D-mannose 6-phosphate receptor from porcine testisT Baba, K Watanabe, Y AraiThe Journal of Biological Chemistry|July 15, 1989
Activation and maturation mechanisms of boar acrosin zymogen based on the deduced primary structureT Baba, S Kashiwabara, K Watanabe, et al.Carbohydrate Research|June 15, 1988
Preparation and application of a pentamannosyl monophosphate-bovine serum albumin conjugateT Baba, K Watanabe, N Yonezawa, et al.FEBS Letters|May 10, 1993
Exon/intron organization of the gene encoding the mouse epithelin/granulin precursor (acrogranin)T Baba, H Nemoto, K Watanabe, et al.The Journal of Biological Chemistry|April 1, 1994
An acrosomal protein, sp32, in mammalian sperm is a binding protein specific for two proacrosins and an acrosin intermediateT Baba, Y Niida, Y Michikawa, et al.Pageof 598