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非洲爪蟾卵膜中含有uroplakin Ib/III复合物的微区的特征:其分子相互作用在亚细胞定位和信号转导中的作用

Characterization of Xenopus egg membrane microdomains containing uroplakin Ib/III complex: roles of their molecular interactions for subcellular localization and signal transduction.

作者信息

Mahbub Hasan A K M, Ou Zhize, Sakakibara Keiichi, Hirahara Shino, Iwasaki Tetsushi, Sato Ken-ichi, Fukami Yasuo

机构信息

Graduate School of Science and Technology, Kobe University, Kobe 657-8501, Japan.

出版信息

Genes Cells. 2007 Feb;12(2):251-67. doi: 10.1111/j.1365-2443.2007.01048.x.

Abstract

A single-transmembrane protein uroplakin III (UPIII) and its tetraspanin binding-partner uroplakin Ib (UPIb) are members of the UP proteins that were originally identified in mammalian urothelium. In Xenopus laevis eggs, these proteins: xUPIII and xUPIb, are components of the cholesterol-enriched membrane microdomains or "rafts" and involved in the sperm-egg membrane interaction and subsequent egg activation signaling via Src tyrosine kinase at fertilization. Here, we investigate whether the xUPIII-xUPIb complex is in close proximity to CD9, a tetraspanin that has been implicated in the sperm-egg fusion in the mouse and GM1, a ganglioside typically enriched in egg rafts. Preparation of the egg membrane microdomains using different non-ionic detergents (Brij 98 and Triton X-100), chemical cross-linking, co-immunoprecipitation, in vitro kinase assay and in vitro fertilization experiments demonstrated that GM1, but not CD9, is in association with the xUPIII-xUPIb complex and contributes to the sperm-dependent egg activation. Transfection experiments using HEK293 cells demonstrated that xUPIII and xUPIb localized efficiently to the cholesterol-dependent membrane microdomains when they were co-expressed, whereas co-expression of xUPIII and CD9, instead of xUPIb, did not show this effect. Furthermore, xUPIII and xUPIb were shown to suppress kinase activity of the wild type, but not a constitutively active form of, Xenopus Src protein co-expressed in HEK293 cells. These results provide novel insight into the molecular architecture of the egg membrane microdomains containing xUPIII, xUPIb and Src, which may contribute to the understanding of sperm-egg interaction and signaling during Xenopus fertilization.

摘要

单跨膜蛋白uroplakin III(UPIII)及其四跨膜蛋白结合伴侣uroplakin Ib(UPIb)是最初在哺乳动物尿路上皮中发现的UP蛋白成员。在非洲爪蟾卵中,这些蛋白:xUPIII和xUPIb,是富含胆固醇的膜微区或“脂筏”的组成成分,并在受精时通过Src酪氨酸激酶参与精卵膜相互作用及随后的卵激活信号传导。在此,我们研究xUPIII - xUPIb复合物是否与CD9(一种与小鼠精卵融合有关的四跨膜蛋白)以及GM1(一种通常富集于卵脂筏中的神经节苷脂)紧密相邻。使用不同的非离子去污剂(Brij 98和Triton X - 100)制备卵膜微区、化学交联、免疫共沉淀、体外激酶测定和体外受精实验表明,GM1而非CD9与xUPIII - xUPIb复合物相关联,并有助于精子依赖的卵激活。使用HEK293细胞进行的转染实验表明,当xUPIII和xUPIb共表达时,它们能有效地定位于胆固醇依赖性膜微区,而xUPIII和CD9(而非xUPIb)共表达则未显示出这种效应。此外,xUPIII和xUPIb被证明能抑制在HEK293细胞中共表达的非洲爪蟾Src蛋白的野生型(而非组成型活性形式)的激酶活性。这些结果为包含xUPIII、xUPIb和Src的卵膜微区的分子结构提供了新的见解,这可能有助于理解非洲爪蟾受精过程中的精卵相互作用和信号传导。

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