Shirakawa H, Landsman D, Postnikov Y V, Bustin M
Institute of Computational Biology Branch, National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Biol Chem. 2000 Mar 3;275(9):6368-74. doi: 10.1074/jbc.275.9.6368.
Here we characterize a novel murine nuclear protein, which we named NBP-45, that is related to the ubiquitous nuclear proteins HMG-14/-17, binds specifically to nucleosome core particles, and can function as a transcriptional activator. NBP-45 mRNA is expressed at low levels and in variable amounts in all mouse tissues tested but is especially abundant in RNA extracted from 7-day-old mouse embryos, suggesting that it functions in early embryonic development. NBP-45 is composed of 406 amino acids and is encoded by a single size transcript. The region spanning the N-terminal 85 amino acids contains three segments that are highly homologous to functionally important domains in the HMG-14/-17 protein family: the nuclear localization signal, the nucleosome binding domain, and the chromatin unfolding domain. The protein region spanning the C-terminal 321 amino acids has a 42% content of negatively charged residues. The first 23 amino acids contain a region necessary for nuclear entry of the protein, the region spanning residues 12-40 is the main nucleosomal binding domain of the protein, and the negatively charged, C-terminal domain is necessary for transcription activation. The functional domains of NBP-45 are indicative of a nuclear protein that binds to nucleosomes, thereby creating a chromatin region of high local negative charge. Our studies establish the nucleosomal binding domain as a protein motif that is present in other than just the ubiquitous HMG-14/-17 proteins. We suggest that the nucleosomal binding domain motif is a protein module that facilitates binding to nucleosomes in chromatin.
我们在此鉴定了一种新型小鼠核蛋白,我们将其命名为NBP - 45,它与普遍存在的核蛋白HMG - 14/-17相关,能特异性结合核小体核心颗粒,并可作为转录激活因子发挥作用。NBP - 45 mRNA在所有测试的小鼠组织中均以低水平且数量可变地表达,但在从7日龄小鼠胚胎中提取的RNA中尤其丰富,这表明它在早期胚胎发育中发挥作用。NBP - 45由406个氨基酸组成,由单一大小的转录本编码。跨越N端85个氨基酸的区域包含三个与HMG - 14/-17蛋白家族中功能重要结构域高度同源的片段:核定位信号、核小体结合结构域和染色质解折叠结构域。跨越C端321个氨基酸的蛋白质区域带负电荷的残基含量为42%。前23个氨基酸包含该蛋白进入细胞核所必需的区域,跨越第12 - 40位残基的区域是该蛋白主要的核小体结合结构域,带负电荷的C端结构域对于转录激活是必需的。NBP - 45的功能结构域表明它是一种与核小体结合的核蛋白,从而形成一个局部高负电荷的染色质区域。我们的研究确定核小体结合结构域是一种不仅存在于普遍存在的HMG - 14/-17蛋白中的蛋白质基序。我们认为核小体结合结构域基序是一种有助于与染色质中的核小体结合的蛋白质模块。