Literature DB >> 2104813

Precocious loss of cortical granules during mouse oocyte meiotic maturation and correlation with an egg-induced modification of the zona pellucida.

T Ducibella1, S Kurasawa, S Rangarajan, G S Kopf, R M Schultz.   

Abstract

Fertilization results in cortical granule exocytosis, which is thought to be involved in modifications of the zona pellucida that constitute the zona pellucida block to polyspermy. A previous report demonstrated that a decrease in the number of Lens culinaris agglutinin-staining granules, which are likely to be cortical granules, occurred during in vivo mouse oocyte maturation with arrest at metaphase II, as well as the formation of a cortical granule-free domain in the area of the metaphase II spindle (T. Ducibella, E. Anderson, D.F. Albertini, J. Aalberg, and S. Rangarajan, 1988, Dev. Biol. 130, 184-197). We extend these observations by reporting here that germinal vesicle-intact oocytes matured in vitro to metaphase II in either the absence or the presence of serum develop a cortical granule-free domain and have reduced numbers of cortical granules when compared to germinal vesicle-intact oocytes; these changes are similar to those of oocytes matured in vivo. The reduction in the number of cortical granules requires germinal vesicle breakdown, since it is prevented by dibutyryl cAMP, which inhibits germinal vesicle breakdown in vitro. The ability of oocytes to respond to the calcium ionophore A23187 with a reduction in the number of cortical granules is also associated with meiotic maturation and develops between 7 and 12 hr after initiation of maturation. The maturation-associated reduction in the number of cortical granules is likely to represent cortical granule exocytosis, since this reduction is accompanied by the formation of a cortical granule-free domain and a conversion of ZP2 to ZP2f when the oocytes are matured in vitro in serum-free medium; this zona pellucida modification occurs following fertilization and is thought to be due to cortical granule exocytosis. In contrast, the loss of cortical granules and development of the cortical granule-free domain of oocytes matured in vitro in the presence of serum is not accompanied by the modification of ZP2. The inhibitory effect of serum on the ZP2 modification may afford in vivo a physiological mechanism to prevent a precocious modification of the zona pellucida that could result in a premature block to polyspermy and hence inhibit fertilization.

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Year:  1990        PMID: 2104813     DOI: 10.1016/0012-1606(90)90006-5

Source DB:  PubMed          Journal:  Dev Biol        ISSN: 0012-1606            Impact factor:   3.582


  21 in total

Review 1.  Control of the fertilization process by the egg coat: how does it work in humans.

Authors:  J Tesarik
Journal:  J Assist Reprod Genet       Date:  1992-08       Impact factor: 3.412

2.  Nanoscale characterization of the biomechanical hardening of bovine zona pellucida.

Authors:  Antonio Boccaccio; Maria Cristina Frassanito; Luciano Lamberti; Roberto Brunelli; Giuseppe Maulucci; Maurizio Monaci; Massimiliano Papi; Carmine Pappalettere; Tiziana Parasassi; Lakamy Sylla; Fulvio Ursini; Marco De Spirito
Journal:  J R Soc Interface       Date:  2012-06-06       Impact factor: 4.118

3.  Use of serum and timing of insemination for in vitro fertilization (IVF)

Authors:  T Ducibella; G S Kopf; R M Schultz
Journal:  J In Vitro Fert Embryo Transf       Date:  1990-04

4.  Intracellular activation of ovastacin mediates pre-fertilization hardening of the zona pellucida.

Authors:  Hagen Körschgen; Michael Kuske; Konstantin Karmilin; Irene Yiallouros; Melanie Balbach; Julia Floehr; Dagmar Wachten; Willi Jahnen-Dechent; Walter Stöcker
Journal:  Mol Hum Reprod       Date:  2017-09-01       Impact factor: 4.025

Review 5.  Microfluidic analysis of oocyte and embryo biomechanical properties to improve outcomes in assisted reproductive technologies.

Authors:  Livia Z Yanez; David B Camarillo
Journal:  Mol Hum Reprod       Date:  2017-04-01       Impact factor: 4.025

6.  Anillin localization suggests distinct mechanisms of division plane specification in mouse oogenic meiosis I and II.

Authors:  Bedra Sharif; Tanner Fadero; Amy Shaub Maddox
Journal:  Gene Expr Patterns       Date:  2015-03-26       Impact factor: 1.224

7.  Post-fertilization changes in the zona pellucida glycoproteins of rat eggs.

Authors:  T Raz; E Skutelsky; R Shalgi
Journal:  Histochem Cell Biol       Date:  1996-10       Impact factor: 4.304

8.  Effects of In Vitro Maturation on Histone Acetylation in Metaphase II Oocytes and Early Cleavage Embryos.

Authors:  Ning Wang; Fang Le; Qi-Tao Zhan; Li Li; Min-Yue Dong; Guo-Lian Ding; Chen-Ming Xu; Shi-Wen Jiang; He-Feng Huang; Fan Jin
Journal:  Obstet Gynecol Int       Date:  2010-06-20

9.  Enzymatic characterization of zona pellucida hardening in human eggs and embryos.

Authors:  M C Schiewe; E Araujo; R H Asch; J P Balmaceda
Journal:  J Assist Reprod Genet       Date:  1995-01       Impact factor: 3.412

10.  Oviduct-specific glycoprotein and heparin modulate sperm-zona pellucida interaction during fertilization and contribute to the control of polyspermy.

Authors:  Pilar Coy; Sebastián Cánovas; Irene Mondéjar; Maria Dolores Saavedra; Raquel Romar; Luis Grullón; Carmen Matás; Manuel Avilés
Journal:  Proc Natl Acad Sci U S A       Date:  2008-10-06       Impact factor: 11.205

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