Knechtel Justin W, Strickfaden Hilmar, Missiaen Kristal, Hadfield Joanne D, Hendzel Michael J, Underhill D Alan
Department of Oncology, Faculty of Medicine & Dentistry, University of Alberta, Edmonton, AB, Canada.
Department of Cell Biology, Faculty of Medicine & Dentistry, University of Alberta, Edmonton, AB, Canada.
EMBO Rep. 2025 Jan;26(1):153-174. doi: 10.1038/s44319-024-00320-5. Epub 2024 Nov 19.
A defining feature of constitutive heterochromatin compartments is the heterochromatin protein-1 (HP1) family, whose members display fast internal mobility and rapid exchange with the surrounding nucleoplasm. Here, we describe a paradoxical state for the lysine methyltransferase KMT5C characterized by rapid internal diffusion but minimal nucleoplasmic exchange. This retentive behavior is conferred by sparse sequence features that constitute two modules tethered by an intrinsically disordered linker. While both modules harbor variant HP1 interaction motifs, the first comprises adjacent sequences that increase affinity using avidity. The second motif increases HP1 effective concentration to further enhance affinity in a context-dependent manner, which is evident using distinct heterochromatin recruitment strategies and heterologous linkers with defined conformational ensembles. Despite the linker sequence being highly divergent, it is under evolutionary constraint for functional length, suggesting conformational buffering can support cooperativity between modules across distant orthologs. Overall, we show that KMT5C has evolved a robust tethering strategy that uses minimal sequence determinants to harness highly dynamic HP1 proteins for retention within heterochromatin compartments.
组成型异染色质区室的一个决定性特征是异染色质蛋白1(HP1)家族,其成员在内部具有快速移动性,并能与周围的核质快速交换。在此,我们描述了赖氨酸甲基转移酶KMT5C的一种矛盾状态,其特征是内部扩散迅速,但与核质的交换极少。这种滞留行为是由稀疏的序列特征赋予的,这些特征构成了由一个内在无序的连接子连接的两个模块。虽然两个模块都含有可变的HP1相互作用基序,但第一个模块包含通过亲和力增加亲和力的相邻序列。第二个基序增加了HP1的有效浓度,以进一步以依赖于上下文的方式增强亲和力,这在使用不同的异染色质募集策略和具有确定构象集合的异源连接子时很明显。尽管连接子序列高度不同,但它在功能长度上受到进化限制,这表明构象缓冲可以支持跨远距离直系同源物的模块之间的协同作用。总体而言,我们表明KMT5C已经进化出一种强大的拴系策略,该策略使用最少的序列决定因素来利用高度动态的HP1蛋白保留在异染色质区室内。