Zraly Claudia B, Schultz Richard, Diaz Manuel O, Dingwall Andrew K
Department of Cancer Biology, Stritch School of Medicine, Loyola University Chicago, Maywood, IL 60153, USA.
Department of Microbiology and Immunology, Stritch School of Medicine, Loyola University Chicago, Maywood, IL 60153, USA.
Nucleic Acids Res. 2023 Oct 13;51(18):9672-9689. doi: 10.1093/nar/gkad698.
Enhancer activation by the MLR family of H3K4 mono-methyltransferases requires proper recognition of histones for the deposition of the mono-methyl mark. MLR proteins contain two clusters of PHD zinc finger domains implicated in chromatin regulation. The second cluster is the most highly conserved, preserved as an ancient three finger functional unit throughout evolution. Studies of the isolated 3rd PHD finger within this cluster suggested specificity for the H4 [aa16-20] tail region. We determined the histone binding properties of the full three PHD finger cluster b module (PHDb) from the Drosophila Cmi protein which revealed unexpected recognition of an extended region of H3. Importantly, the zinc finger spacer separating the first two PHDb fingers from the third is critical for proper alignment and coordination among fingers for maximal histone engagement. Human homologs, MLL3 and MLL4, also show conservation of H3 binding, expanding current views of histone recognition for this class of proteins. We further implicate chromatin remodeling by the SWI/SNF complex as a possible mechanism for the accessibility of PHDb to globular regions of histone H3 beyond the tail region. Our results suggest a two-tail histone recognition mechanism by the conserved PHDb domain involving a flexible hinge to promote interdomain coordination.
H3K4单甲基转移酶的MLR家族激活增强子需要正确识别组蛋白以沉积单甲基标记。MLR蛋白包含两个与染色质调控有关的PHD锌指结构域簇。第二个簇是最保守的,在整个进化过程中作为一个古老的三指功能单元保留下来。对该簇中分离出的第三个PHD指的研究表明其对H4 [aa16 - 20]尾部区域具有特异性。我们确定了果蝇Cmi蛋白完整的三指簇b模块(PHDb)的组蛋白结合特性,结果揭示了其对H3延伸区域的意外识别。重要的是,将前两个PHDb指与第三个指隔开的锌指间隔区对于各指之间的正确排列和协调以实现最大程度的组蛋白结合至关重要。人类同源物MLL3和MLL4也显示出对H3结合的保守性,扩展了目前对这类蛋白质组蛋白识别的认识。我们进一步认为SWI/SNF复合物介导的染色质重塑是PHDb能够接触到组蛋白H3尾部区域以外的球状区域的一种可能机制。我们的结果表明,保守的PHDb结构域存在一种双尾部组蛋白识别机制,该机制涉及一个灵活的铰链以促进结构域间的协调。