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人类细胞中大分子生物发生的 RNA 代谢组网络。

RNAmetasome network for macromolecule biogenesis in human cells.

机构信息

Department of Cell Biology, Harvard Medical School, 240 Longwood Avenue, Boston, MA, 20115, USA.

出版信息

Commun Biol. 2021 Dec 15;4(1):1399. doi: 10.1038/s42003-021-02928-y.

Abstract

RNA plays a central role in macromolecule biogenesis for various pathways, such as gene expression, ribosome biogenesis, and chromatin remodeling. However, RNA must be converted from its nascent to functional forms for that role. Here, we describe a large RNA metabolic network (RNAmetasome network) for macromolecule biogenesis in human cells. In HEK293T, the network consists of proteins responsible for gene expression, splicing, ribosome biogenesis, chromatin remodeling, and cell cycle. Reciprocal immunoprecipitations show that MKI67, GNL2, MDN1, and ELMSAN1 are core proteins of the network, and knockdown of either MKI67 or GNL2 affects the state of the other protein, MDN1, and some other network members. Furthermore, GNL2 knockdown retards cell proliferation. Several proteins of the RNAmetasome network are diminished in Hela.cl1, and this diminishment is associated with low expression of MDN1 and elevated MKI67 degradation. These results together suggest that the RNAmetasome network is present in human cells and associated with proliferation, and that MKI67, GNL2, and MDN1 play an important role in organizing the RNAmetasome network.

摘要

RNA 在各种途径的大分子生物发生中发挥核心作用,例如基因表达、核糖体生物发生和染色质重塑。然而,RNA 必须从其新生形式转换为功能形式才能发挥作用。在这里,我们描述了人类细胞中大分子生物发生的大型 RNA 代谢网络(RNAmetasome 网络)。在 HEK293T 中,该网络由负责基因表达、剪接、核糖体生物发生、染色质重塑和细胞周期的蛋白质组成。相互免疫沉淀表明,MKI67、GNL2、MDN1 和 ELMSAN1 是该网络的核心蛋白,并且敲低 MKI67 或 GNL2 会影响另一种蛋白质 MDN1 和其他一些网络成员的状态。此外,GNL2 敲低会减缓细胞增殖。Hela.cl1 中的几种 RNAmetasome 网络蛋白减少,这与 MDN1 表达降低和 MKI67 降解升高有关。这些结果共同表明 RNAmetasome 网络存在于人类细胞中,并与增殖有关,并且 MKI67、GNL2 和 MDN1 在组织 RNAmetasome 网络方面发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9c9/8674265/03e62707c325/42003_2021_2928_Fig1_HTML.jpg

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