Mandal Papita, Eswara Karthik, Yerkesh Zhadyra, Kharchenko Vladlena, Zandarashvili Levani, Szczepski Kacper, Bensaddek Dalila, Jaremko Łukasz, Black Ben E, Fischle Wolfgang
Bioscience Program, Biological and Environmental Science and Engineering Division, King Abdullah University of Science and Technology (KAUST), Thuwal 23955, Kingdom of Saudi Arabia.
Department of Biochemistry and Biophysics, Penn Center for Genome Integrity, Epigenetics Institute, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Sci Adv. 2022 Aug 26;8(34):eabl9461. doi: 10.1126/sciadv.abl9461. Epub 2022 Aug 24.
Chromatin marks are recognized by distinct binding modules, many of which are embedded in multidomain proteins. How the different functionalities of such complex chromatin modulators are regulated is often unclear. Here, we delineated the interplay of the H3 amino terminus- and K9me-binding activities of the multidomain hUHRF1 protein. We show that the phosphoinositide PI5P interacts simultaneously with two distant flexible linker regions connecting distinct domains of hUHRF1. The binding is dependent on both, the polar head group, and the acyl part of the phospholipid and induces a conformational rearrangement juxtaposing the H3 amino terminus and K9me3 recognition modules of the protein. In consequence, the two features of the H3 tail are bound in a multivalent, synergistic manner. Our work highlights a previously unidentified molecular function for PI5P outside of the context of lipid mono- or bilayers and establishes a molecular paradigm for the allosteric regulation of complex, multidomain chromatin modulators by small cellular molecules.
染色质标记由不同的结合模块识别,其中许多嵌入在多结构域蛋白中。这类复杂的染色质调节剂的不同功能是如何被调控的,通常还不清楚。在这里,我们描述了多结构域hUHRF1蛋白的H3氨基末端和K9me结合活性之间的相互作用。我们发现磷酸肌醇PI5P同时与连接hUHRF1不同结构域的两个远距离柔性连接区域相互作用。这种结合依赖于磷脂的极性头部基团和酰基部分,并诱导蛋白质的H3氨基末端和K9me3识别模块并列的构象重排。因此,H3尾巴的两个特征以多价协同的方式被结合。我们的工作突出了PI5P在脂质单层或双层环境之外以前未被识别的分子功能,并建立了一个小分子对复杂的多结构域染色质调节剂进行变构调节的分子范例。