7mbn
From Proteopedia
Cryo-EM structure of MLL1-NCP (H3K4M) complex, mode02
Structural highlights
FunctionRBBP5_HUMAN In embryonic stem (ES) cells, plays a crucial role in the differentiation potential, particularly along the neural lineage, regulating gene induction and H3 'Lys-4' methylation at key developmental loci, including that mediated by retinoic acid (By similarity). As part of the MLL1/MLL complex, involved in mono-, di- and trimethylation at 'Lys-4' of histone H3. Histone H3 'Lys-4' methylation represents a specific tag for epigenetic transcriptional activation.[1] Publication Abstract from PubMedCryo-EM structures of the KMT2A/MLL1 core complex bound on nucleosome core particles (NCPs) suggest unusual rotational dynamics of the MLL1 complex approaching its physiological substrate. However, the functional implication of such dynamics remains unclear. Here, we show that the MLL1 core complex also shows high rotational dynamics bound on the NCP carrying the catalytically inert histone H3 lysine 4 to methionine (K4M) mutation. There are two major binding modes of the MLL1 complex on the NCP(K4M). Importantly, disruption of only one of the binding modes compromised the overall MLL1 activity in an NCP-specific manner. We propose that the MLL1 core complex probably exists in an equilibrium of poised and active binding modes. The high rotational dynamics of the MLL1 complex on the NCP is a feature that can be exploited for loci-specific regulation of H3K4 methylation in higher eukaryotes. Regulation of MLL1 Methyltransferase Activity in Two Distinct Nucleosome Binding Modes.,Ayoub A, Park SH, Lee YT, Cho US, Dou Y Biochemistry. 2022 Jan 4;61(1):1-9. doi: 10.1021/acs.biochem.1c00603. Epub 2021 , Dec 20. PMID:34928138[2] From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine. Loading citation details.. Citations No citations found See Also
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Categories: Homo sapiens | Large Structures | Synthetic construct | Xenopus laevis | Ayoub A | Cho U | Dou Y | Lee YT | Park SH