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剪接因子SF2/ASF与人rDNA复制起点中的ARS同源物结合。

The splicing factor SF2/ASF binds to ARS homologs in a human rDNA replication origin.

作者信息

He Mai, Shah Dimal, Choung Hae Yoon Grace, Coffman Frederick D

机构信息

Department of Pathology and Laboratory Medicine, UMDNJ-New Jersey Medical School, Newark, NJ 07103, USA.

出版信息

Cell Cycle. 2009 Aug 15;8(16):2631-42. doi: 10.4161/cc.8.16.9365. Epub 2009 Aug 26.

Abstract

The function of the relatively well-studied DNA replication origins in the yeast Saccharomyces cerevisiae is dependent upon interactions between origin replication complex (ORC) proteins and several defined origin sequence elements, including the 11 bp ARS consensus sequence (ACS). Although the ORC proteins, as well as numerous other protein components required for DNA replication initiation, are largely conserved between yeast and mammals, DNA sequences within mammalian replication origins are highly variable and sequences homologous to the yeast ACS elements are generally not present. We have previously identified several replication initiation sites within the nontranscribed spacer region of the human ribosomal RNA gene, and found that two highly utilized sites each contain a homologue of the yeast ACS embedded within a DNA unwinding element and a matrix attachment region. Here we examine protein binding within these initiation sites, and demonstrate that these ACS homologues specifically bind the alternate splicing factor SF2/ASF as well as GAPDH in vitro, and present evidence that the SF2/ASF interaction also occurs within the nuclei of intact cells. As the moderate upregulation of SF2/ASF has been linked to oncogenesis through the promotion of alternatively spliced forms of several regulatory proteins, our results suggest an additional mechanism by which SF2/ASF may influence the transformed cell phenotype.

摘要

在酿酒酵母中,研究相对充分的DNA复制起点的功能取决于起点复制复合物(ORC)蛋白与几个特定的起点序列元件之间的相互作用,包括11bp的自主复制序列共有序列(ACS)。尽管ORC蛋白以及DNA复制起始所需的许多其他蛋白质成分在酵母和哺乳动物之间基本保守,但哺乳动物复制起点内的DNA序列高度可变,通常不存在与酵母ACS元件同源的序列。我们之前在人类核糖体RNA基因的非转录间隔区鉴定了几个复制起始位点,并发现两个高利用率的位点各自包含一个嵌入在DNA解旋元件和基质附着区域内的酵母ACS同源物。在这里,我们研究了这些起始位点内的蛋白质结合情况,并证明这些ACS同源物在体外特异性结合可变剪接因子SF2/ASF以及甘油醛-3-磷酸脱氢酶(GAPDH),并提供证据表明SF2/ASF的相互作用也发生在完整细胞的细胞核内。由于SF2/ASF的适度上调已通过促进几种调节蛋白的可变剪接形式与肿瘤发生相关联,我们的结果提示了一种SF2/ASF可能影响转化细胞表型的额外机制。

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