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特定的蛋白激酶C亚型在小鼠植入前发育过程中调节囊胚腔形成。

Specific PKC isoforms regulate blastocoel formation during mouse preimplantation development.

作者信息

Eckert Judith J, McCallum Amanda, Mears Andrew, Rumsby Martin G, Cameron Iain T, Fleming Tom P

机构信息

Division of Cell Sciences, School of Biological Sciences, University of Southampton, Southampton SO16 7PX, UK.

出版信息

Dev Biol. 2004 Oct 15;274(2):384-401. doi: 10.1016/j.ydbio.2004.07.027.

Abstract

During early mammalian development, blastocyst morphogenesis is achieved by epithelial differentiation of trophectoderm (TE) and its segregation from the inner cell mass (ICM). Two major interrelated features of TE differentiation required for blastocoel formation include intercellular junction biogenesis and a directed ion transport system, mediated by Na+/K+ ATPase. We have examined the relative contribution of intercellular signalling mediated by protein kinase C (PKC) and gap junctional communication in TE differentiation and blastocyst cavitation. The distribution pattern of four (delta, theta, iota/lambda, zeta) PKC isoforms and PKCmicro/PKD1 showed partial colocalisation with the tight junction marker ZO-1alpha+ in TE and all four PKCs (delta, theta, iota/lambda, zeta) showed distinct TE/ICM staining patterns (predominantly at the cell membrane within the TE and cytoplasmic within the ICM), indicating their potential contribution to TE differentiation and blastocyst morphogenesis. Specific inhibition of PKCdelta and zeta activity significantly delayed blastocyst formation. Although modulation of these PKC isoforms failed to influence the already established programme of epithelial junctional differentiation within the TE, Na+/K+ ATPase alpha1 subunit was internalised from membrane to cytoplasm. Inhibition of gap junctional communication, in contrast, had no influence on any of these processes. Our results demonstrate for the first time that distinct PKC isotypes contribute to the regulation of cavitation in preimplantation embryos via target proteins including Na+/K+ ATPase.

摘要

在哺乳动物早期发育过程中,囊胚形态发生是通过滋养外胚层(TE)的上皮分化及其与内细胞团(ICM)的分离来实现的。囊胚腔形成所需的TE分化的两个主要相互关联的特征包括细胞间连接的生物发生和由Na+/K+ ATP酶介导的定向离子转运系统。我们研究了蛋白激酶C(PKC)介导的细胞间信号传导和缝隙连接通讯在TE分化和囊胚空化中的相对作用。四种(δ、θ、ι/λ、ζ)PKC亚型和PKCμ/PKD1的分布模式与TE中的紧密连接标记物ZO-1α+部分共定位,并且所有四种PKC(δ、θ、ι/λ、ζ)都显示出不同的TE/ICM染色模式(主要在TE内的细胞膜上和ICM内的细胞质中),表明它们对TE分化和囊胚形态发生有潜在贡献。对PKCδ和ζ活性的特异性抑制显著延迟了囊胚形成。虽然对这些PKC亚型的调节未能影响TE内已经建立的上皮连接分化程序,但Na+/K+ ATP酶α1亚基从膜内化到细胞质中。相比之下,缝隙连接通讯的抑制对这些过程均无影响。我们的结果首次证明,不同的PKC亚型通过包括Na+/K+ ATP酶在内的靶蛋白,对植入前胚胎的空化调节有贡献。

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