首页> 外文期刊>Molecular and Cellular Biology >Analysis of protein-DNA and protein-protein interactions of centromere protein B (CENP-B) and properties of the DNA-CENP-B complex in the cell cycle.
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Analysis of protein-DNA and protein-protein interactions of centromere protein B (CENP-B) and properties of the DNA-CENP-B complex in the cell cycle.

机译:着丝粒蛋白B(CENP-B)的蛋白质-DNA和蛋白质-蛋白质相互作用以及细胞周期中DNA-CENP-B复合物的特性分析。

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We previously reported that centromere protein B (CENP-B) forms a stable complex (designated complex A) containing two alphoid DNAs in vitro. Domains in the CENP-B polypeptide involved in the formation of complex A were determined in the present study with truncated derivatives expressed in Escherichia coli and in rabbit reticulocyte lysates. It was revealed by gel mobility shift analyses that polypeptides containing the NH2-terminal DNA-binding domain bind a DNA molecule as a monomer, while dimerizing at a novel hydrophobic domain in the COOH-terminal region of 59 amino acid residues. This polypeptide dimerization activity at the COOH-terminal region was also confirmed with the two-hybrid system in Saccharomyces cerevisiae cells. The results thus proved that CENP-B polypeptides form a homodimer at the COOH-terminal hydrophobic domain, each binding a DNA strand at their NH2-terminal domains. The dimerization and DNA-binding domains fall into two of the three completely conserved sequences found in human and mouse CENP-B, and complex A-forming activity was also detected in nuclear extracts of mouse cells. Metaphase-specific phosphorylation of CENP-B was also detected, but this had no effect on its complex A-forming activity. On the basis of the present results, we propose that CENP-B plays an important role in the assembly of specific centromere structures by forming unique DNA-protein complexes at the sites of CENP-B boxes on the centromeric repetitive DNA both in interphase nuclei and on mitotic chromosomes.
机译:我们以前曾报道过着丝粒蛋白B(CENP-B)形成了一个稳定的复合物(指定为复合物A),其中包含两个体外的脂质体DNA。在本研究中,用在大肠杆菌和兔网织红细胞裂解物中表达的截短的衍生物确定了CENP-B多肽中与复合物A形成有关的结构域。通过凝胶迁移率移动分析揭示,含有NH 2-末端DNA结合结构域的多肽结合DNA分子作为单体,同时在59个氨基酸残基的COOH-末端区域中的新型疏水结构域处二聚。还通过酿酒酵母细胞中的双杂交系统证实了在COOH-末端区域的这种多肽二聚活性。因此,结果证明CENP-B多肽在COOH-末端疏水域上形成同型二聚体,每个均在其NH2-末端域上结合DNA链。二聚化和DNA结合结构域属于人类和小鼠CENP-B中发现的三个完全保守的序列中的两个,并且还在小鼠细胞的核提取物中检测到复杂的A形成活性。还检测到CENP-B的中期特异性磷酸化,但这对其复杂的A形成活性没有影响。根据目前的结果,我们建议CENP-B在特定着丝粒结构的组装中起重要作用,通过在相间核和中间相中着丝粒重复DNA的CENP-B盒的位点形成独特的DNA-蛋白质复合物。在有丝分裂染色体上。

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