Tanaka Y, Nureki O, Kurumizaka H, Fukai S, Kawaguchi S, Ikuta M, Iwahara J, Okazaki T, Yokoyama S
RIKEN Genomic Sciences Center, 1-7-22 Suehiro-cho, Tsurumi, Yokohama 230-0045, Japan.
EMBO J. 2001 Dec 3;20(23):6612-8. doi: 10.1093/emboj/20.23.6612.
The human centromere protein B (CENP-B), one of the centromere components, specifically binds a 17 bp sequence (the CENP-B box), which appears in every other alpha-satellite repeat. In the present study, the crystal structure of the complex of the DNA-binding region (129 residues) of CENP-B and the CENP-B box DNA has been determined at 2.5 A resolution. The DNA-binding region forms two helix-turn-helix domains, which are bound to adjacent major grooves of the DNA. The DNA is kinked at the two recognition helix contact sites, and the DNA region between the kinks is straight. Among the major groove protein-bound DNAs, this 'kink-straight-kink' bend contrasts with ordinary 'round bends' (gradual bending between two protein contact sites). The larger kink (43 degrees ) is induced by a novel mechanism, 'phosphate bridging by an arginine-rich helix': the recognition helix with an arginine cluster is inserted perpendicularly into the major groove and bridges the groove through direct interactions with the phosphate groups. The overall bending angle is 59 degrees, which may be important for the centromere-specific chromatin structure.
人类着丝粒蛋白B(CENP - B)是着丝粒的组成成分之一,它特异性地结合一个17碱基对序列(CENP - B框),该序列每隔一个α - 卫星重复序列就会出现一次。在本研究中,已确定CENP - B的DNA结合区域(129个残基)与CENP - B框DNA复合物的晶体结构,分辨率为2.5埃。DNA结合区域形成两个螺旋 - 转角 - 螺旋结构域,它们与DNA相邻的大沟结合。DNA在两个识别螺旋接触位点处发生扭结,扭结之间的DNA区域是直的。在与蛋白质结合于大沟的DNA中,这种“扭结 - 直 - 扭结”弯曲与普通的“圆形弯曲”(两个蛋白质接触位点之间的逐渐弯曲)形成对比。较大的扭结(43度)是由一种新机制“富含精氨酸的螺旋进行磷酸桥连”诱导产生的:带有精氨酸簇的识别螺旋垂直插入大沟,并通过与磷酸基团的直接相互作用桥连大沟。总的弯曲角度为59度,这可能对着丝粒特异性染色质结构很重要。