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A Protein Tyrosine Phosphatase Inhibitor, Sodium Orthovanadate, Causes Parthenogenetic Activation of Pig Oocytes via an Increase in Protein Tyrosine Kinase Activity1
Author(s) -
Jae-Hwan Kim,
HyunJin Do,
WeiHua Wang,
Zoltán Macháty,
YongMahn Han,
Billy N. Day,
Randall S. Prather
Publication year - 1999
Publication title -
biology of reproduction
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.366
H-Index - 180
eISSN - 1529-7268
pISSN - 0006-3363
DOI - 10.1095/biolreprod61.4.900
Subject(s) - sodium orthovanadate , protein tyrosine phosphatase , bapta , biology , protein kinase a , tyrosine kinase , tyrosine , tyrosine kinase inhibitor , protein kinase c , protein kinase inhibitor , tyrosine phosphorylation , microbiology and biotechnology , biochemistry , endocrinology , kinase , medicine , signal transduction , intracellular , genetics , cancer
This study was conducted to determine whether a protein tyrosine kinase (PTK) activity is involved in the initiation of the events that occur at fertilization in pig oocytes. After maturation for 47 h, a 7-h treatment of oocytes with 1 mM sodium orthovanadate, which is an inhibitor of protein tyrosine phosphatase, caused more than 90% pronuclear formation, cortical granule exocytosis, and a decrease in mitogen-activated protein kinase activity. Immunoblotting with an antibody specific for phosphotyrosine showed at least three proteins whose phosphotyrosine contents were significantly increased upon treatment of oocytes with 1 mM sodium orthovanadate. Preincubation of pig oocytes with 50 microM tyrphostin 47, a specific PTK inhibitor, completely blocked the ability of sodium orthovanadate to trigger activation events. In addition, when oocytes were pretreated with the calcium-chelating agent BAPTA-AM, sodium orthovanadate-stimulated pronuclear formation was significantly (P < 0.01) reduced (94.0% vs. 43.1%). These results suggest that PTK may be involved in pig oocyte activation in a calcium-dependent manner and that the stimulation of tyrosine kinase is able to signal a series of intracellular changes that lead to the activation events associated with fertilization.

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