Brasher S V, Smith B O, Fogh R H, Nietlispach D, Thiru A, Nielsen P R, Broadhurst R W, Ball L J, Murzina N V, Laue E D
Cambridge Centre for Molecular Recognition, Department of Biochemistry, University of Cambridge, 80 Tennis Court Road, Cambridge CB2 1GA, UK.
EMBO J. 2000 Apr 3;19(7):1587-97. doi: 10.1093/emboj/19.7.1587.
The heterochromatin protein 1 (HP1) family of proteins is involved in gene silencing via the formation of heterochromatic structures. They are composed of two related domains: an N-terminal chromo domain and a C-terminal shadow chromo domain. Present results suggest that chromo domains may function as protein interaction motifs, bringing together different proteins in multi-protein complexes and locating them in heterochromatin. We have previously determined the structure of the chromo domain from the mouse HP1beta protein, MOD1. We show here that, in contrast to the chromo domain, the shadow chromo domain is a homodimer. The intact HP1beta protein is also dimeric, where the interaction is mediated by the shadow chromo domain, with the chromo domains moving independently of each other at the end of flexible linkers. Mapping studies, with fragments of the CAF1 and TIF1beta proteins, show that an intact, dimeric, shadow chromo domain structure is required for complex formation.
异染色质蛋白1(HP1)家族的蛋白质通过形成异染色质结构参与基因沉默。它们由两个相关结构域组成:一个N端染色质结构域和一个C端影子染色质结构域。目前的结果表明,染色质结构域可能作为蛋白质相互作用基序,将不同的蛋白质聚集在多蛋白复合物中并将它们定位在异染色质中。我们之前已经确定了来自小鼠HP1β蛋白MOD1的染色质结构域的结构。我们在此表明,与染色质结构域不同,影子染色质结构域是一个同型二聚体。完整的HP1β蛋白也是二聚体,其中相互作用由影子染色质结构域介导,染色质结构域在柔性接头末端彼此独立移动。用CAF1和TIF1β蛋白的片段进行的定位研究表明,形成复合物需要完整的二聚体影子染色质结构域结构。