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Membrane Microdomains as Platform to Study Membrane-Associated Events During Oogenesis, Meiotic Maturation, and Fertilization in Xenopus laevis. | LitMetric

Membrane Microdomains as Platform to Study Membrane-Associated Events During Oogenesis, Meiotic Maturation, and Fertilization in Xenopus laevis.

Methods Mol Biol

Faculty of Life Sciences, Laboratory of Cell Signaling and Development, Department of Molecular Biosciences, Kyoto Sangyo University, Kyoto, Japan.

Published: June 2019

AI Article Synopsis

  • The study focuses on the role of the Src kinase associated with the egg plasma membrane in gamete interaction and fusion in the African clawed frog, Xenopus laevis.
  • The authors provide a protocol for identifying the molecular and cellular mechanisms involved in various reproductive processes, including oogenesis, oocyte maturation, and fertilization.
  • The chapter explores specific questions about the oocyte/egg membrane microdomain's significance, methods for its manipulation, past achievements in research, and future directions in this field.

Article Abstract

Studies on the egg plasma membrane-associated tyrosine kinase Src have shed light on the identity of the molecular machinery that is responsible for gamete interaction and possibly fusion in African clawed frog Xenopus laevis. Here we describe our protocol for identifying and analyzing molecular and cellular machinery that contributes to a variety of biological processes in the course of oogenesis, oocyte maturation, egg fertilization, and early embryogenesis in Xenopus. Our current special interest is to evaluate the hypothesis that the oocyte/egg membrane microdomain (MD)-associated uroplakin III-Src system is responsible for mediating sperm-egg membrane interaction/fusion signal to the oocyte/egg cytoplasm to initiate embryonic and zygotic development in this species. Therefore, this chapter contains a brief introduction to biology of oocytes and eggs in Xenopus and addresses the following questions: (1) What is oocyte/egg MD? (2) Why do we study oocyte/egg MD? (3) How to manipulate oocyte/egg MD? (4) What has been achieved by oocyte/egg MD studies? (5) What are the next steps in oocyte/egg MD studies?

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Source
http://dx.doi.org/10.1007/978-1-4939-9009-2_5DOI Listing

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