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人子宫内膜的核仁通道系统与内质网和R环有关。

The nucleolar channel system of human endometrium is related to endoplasmic reticulum and R-rings.

作者信息

Kittur Nupur, Zapantis Gregory, Aubuchon Mira, Santoro Nanette, Bazett-Jones David P, Meier U Thomas

机构信息

Department of Anatomy and Structural Biology, Albert Einstein College of Medicine, Bronx, NY 10461, USA.

出版信息

Mol Biol Cell. 2007 Jun;18(6):2296-304. doi: 10.1091/mbc.e07-02-0154. Epub 2007 Apr 11.

Abstract

The nucleolar channel system (NCS) is a well-established ultrastructural hallmark of the postovulation endometrium. Its transient presence has been associated with human fertility. Nevertheless, the biogenesis, composition, and function of these intranuclear membrane cisternae are unknown. Membrane systems with a striking ultrastructural resemblance to the NCS, termed R-rings, are induced in nuclei of tissue culture cells by overexpression of the central repeat domain of the nucleolar protein Nopp140. Here we provide a first molecular characterization of the NCS and compare the biogenesis of these two enigmatic organelles. Like the R-rings, the NCS consists of endoplasmic reticulum harboring the marker glucose-6-phosphatase. R-ring formation initiates at the nuclear envelope, apparently by a calcium-mediated Nopp140-membrane interaction, as supported by the calcium-binding ability of Nopp140, the inhibition of R-ring formation by calcium chelators, and the concentration of Nopp140 and complexed calcium in R-rings. Although biogenesis of the NCS may initiate similarly, the reduced presence of complexed calcium and Nopp140 suggests the involvement of additional factors.

摘要

核仁通道系统(NCS)是排卵后子宫内膜一种已被充分证实的超微结构特征。它的短暂存在与人类生育能力有关。然而,这些核内膜池的生物发生、组成和功能尚不清楚。通过过表达核仁蛋白Nopp140的中央重复结构域,在组织培养细胞核中可诱导出与NCS在超微结构上极为相似的膜系统,称为R环。在此,我们首次对NCS进行分子特征描述,并比较这两种神秘细胞器的生物发生过程。与R环一样,NCS由含有标记物葡萄糖-6-磷酸酶的内质网组成。R环形成始于核膜,显然是由钙介导的Nopp140与膜的相互作用引发的,Nopp140的钙结合能力、钙螯合剂对R环形成的抑制作用以及R环中Nopp140和复合钙的浓度都支持了这一点。尽管NCS的生物发生可能以类似方式启动,但复合钙和Nopp140含量的减少表明还有其他因素参与其中。

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