Literature DB >> 10830302

Nongenomic action of progesterone: activation of Xenopus oocyte phospholipase C through a plasma membrane-associated tyrosine kinase.

T Morrison1, L Waggoner, L Whitworth-Langley, B J Stith.   

Abstract

Using a plasma membrane-cortex preparation (wherein the nucleus and >90% of the total cell protein are removed), progesterone stimulated tyrosine kinase activity that stimulated phospholipase C. Although it has been known for over 20 yr that progesterone acts at the plasma membrane of Xenopus oocytes to induce oocyte maturation, this is the first report that progesterone stimulates this tyrosine kinase activity that is associated with the oocyte plasma membrane and cortex. A tyrosine kinase inhibitor (tyrphostin B46) inhibited steroid stimulation of tyrosine kinase and phospholipase C (PLC) activities, but did not block lipase C stimulation by G protein activators. A fusion protein that contains tandem N- and C-terminal SH2 domains of PLCgamma also blocked progesterone stimulation of PLC (a fusion protein with the SH2 domain from Shc was ineffective). Lowering the Ca2+ concentration in the medium inhibited progesterone, but not guanosine 5'-O-(3-thiotriphosphate), stimulation of PLC, and the effects of progesterone and a G protein agonist were additive. However, neither progesterone nor insulin increased phosphotyrosine on PLCgamma. To evaluate another tyrosine kinase path involving phosphatidylinositol 3-kinase, we added wortmannin to our membrane preparation, but wortmannin did not inhibit progesterone's ability to activate PLC.

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Year:  2000        PMID: 10830302     DOI: 10.1210/endo.141.6.7510

Source DB:  PubMed          Journal:  Endocrinology        ISSN: 0013-7227            Impact factor:   4.736


  8 in total

1.  Identification of XPR-1, a progesterone receptor required for Xenopus oocyte activation.

Authors:  J Tian; S Kim; E Heilig; J V Ruderman
Journal:  Proc Natl Acad Sci U S A       Date:  2000-12-19       Impact factor: 11.205

Review 2.  Effects of in vitro maturation of monkey oocytes on their developmental capacity.

Authors:  P Zheng
Journal:  Anim Reprod Sci       Date:  2006-11-01       Impact factor: 2.145

Review 3.  Phospholipase C and D regulation of Src, calcium release and membrane fusion during Xenopus laevis development.

Authors:  Bradley J Stith
Journal:  Dev Biol       Date:  2015-03-05       Impact factor: 3.582

4.  Use of medroxyprogesterone acetate in women with ovarian endometriosis undergoing controlled ovarian hyperstimulation for in vitro fertilization.

Authors:  Haiyan Guo; Yun Wang; Qiuju Chen; Weiran Chai; Lihua Sun; Ai Ai; Yonglun Fu; Qifeng Lyu; Yanping Kuang
Journal:  Sci Rep       Date:  2017-09-20       Impact factor: 4.379

5.  Optimal Ovulation Trigger-Oocyte Pickup Interval in Progestin-Primed Ovarian Stimulation Protocol: A Retrospective Study Using Propensity Score Matching.

Authors:  Xi Shen; Hui Long; Wenya Guo; Hongyuan Gao; Renfei Cai; Wei Jin; Zhiguang Yan; Shaozhen Zhang; Yun Wang; Qifeng Lyu; Li Wang; Yanping Kuang
Journal:  Front Endocrinol (Lausanne)       Date:  2019-10-15       Impact factor: 5.555

Review 6.  The effects of progesterone on oocyte maturation and embryo development.

Authors:  Mojdeh Salehnia; Saeed Zavareh
Journal:  Int J Fertil Steril       Date:  2013-07-31

7.  Controlled Ovarian Stimulation Using Medroxyprogesterone Acetate and hMG in Patients With Polycystic Ovary Syndrome Treated for IVF: A Double-Blind Randomized Crossover Clinical Trial.

Authors:  Yun Wang; Qiuju Chen; NingLing Wang; Hong Chen; Qifeng Lyu; Yanping Kuang
Journal:  Medicine (Baltimore)       Date:  2016-03       Impact factor: 1.889

8.  Non-genomic effects of progesterone on Rho kinase II in rat gastric smooth muscle cells.

Authors:  Othman Al-Shboul; Ayman Mustafa; Farah Al-hashimi
Journal:  J Smooth Muscle Res       Date:  2013
  8 in total

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