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首页> 外文期刊>Development >The egg membrane microdomain-associated uroplakin III-Src system becomes functional during oocyte maturation and is required for bidirectional gamete signaling at fertilization in Xenopus laevis
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The egg membrane microdomain-associated uroplakin III-Src system becomes functional during oocyte maturation and is required for bidirectional gamete signaling at fertilization in Xenopus laevis

机译:卵膜微区相关的uroplakin III-Src系统在卵母细胞成熟过程中起作用,并且是非洲爪蟾受精时双向配子信号传递所必需的

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摘要

In Xenopus laevis, sperm-egg interaction promotes partial proteolysis and/or tyrosine phosphorylation of uroplakin III (UPIII) and the tyrosine kinase Src, which both localize to the cholesterol-enriched egg membrane microdomains (MDs). Here we show that sperm promote proteolysis and/or tyrosine phosphorylation of UPIII and Src in MDs isolated from ovulated and unfertilized eggs (UF-MDs). An antibody against the extracellular domain of UPIII interferes with these events. Inhibition of fertilization by anti-UPIII antibody is rescued by co-incubation with UF-MDs. This suggests that, like MDs in intact eggs, the isolated UF-MDs are capable of interacting with sperm, an interaction that does not interfere with normal fertilization but rather augments the ability of sperm to fertilize eggs pretreated with anti-UPIII antibody. This unexpected effect of UF-MDs on sperm requires UPIII function in UF-MDs and protein kinase activity in sperm. MDs isolated from progesterone-treated mature oocytes, but not ovarian immature oocytes, are similarly functionalasUF-MDs. The anti-UPIII extracellular domain antibody binds more effectively to the surface of mature than immatureovarianoocytes.Weproposethatthestructuralandfunctional competency of the UPIII-Src signaling system in MDs is strictly regulated during oocyte maturation and subsequently in sperm-mediated egg activation and fertilization. The fertilization-related signaling properties seen in UF-MDs can be partially reconstituted in MD sofhumanembryonickidney 293 cells(293-MDs)expressingUPIII, Src and uroplakin Ib. However, 293-MDs expressing a proteolysis-resistant mutant of UPIII are less functional, suggesting that the availability of UPIII to protease action is important for MD function.
机译:在非洲爪蟾中,精子与蛋的相互作用促进了尿蛋白3(UPIII)和酪氨酸激酶Src的部分蛋白水解和/或酪氨酸磷酸化,这两个蛋白均定位于富含胆固醇的卵膜微区(MDs)。在这里,我们显示了从排卵和未受精卵(UF-MDs)分离出的MD中,精子促进UPIII和Src的蛋白水解和/或酪氨酸磷酸化。针对UPIII胞外域的抗体会干扰这些事件。通过与UF-MD共同孵育,可以挽救抗-UPIII抗体对受精的抑制作用。这表明,与完整卵中的MDs一样,分离出的UF-MDs能够与精子相互作用,这种相互作用不会干扰正常的受精,而是会增强精子使经抗-UPIII抗体预处理的卵受精的能力。 UF-MD对精子的这种意想不到的作用需要UF-MD中的UPIII功能和精子中的蛋白激酶活性。从孕激素处理过的成熟卵母细胞中分离出的MDs,而不是从卵巢未成熟卵母细胞中分离出来的MDs,其功能与UF-MDs类似。抗UPIII细胞外结构域抗体比未成熟卵巢细胞更有效地结合至成熟表面。我们提出,在卵母细胞成熟过程中以及随后在精子介导的卵子活化和受精过程中,严格地调节UPIII-Src信号系统在MD中的结构功能能力。在UF-MDs中观察到的与受精相关的信号传导特性可以在表达UPIII,Src和uroplakin Ib的MD人类人胚肾293细胞(293-MDs)中部分重构。但是,表达UPIII的耐蛋白水解突变体的293-MD功能较弱,这表明UPIII对蛋白酶作用的可用性对MD功能很重要。

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