KMT2 Family of H3K4 Methyltransferases: Enzymatic Activity-dependent and -independent Functions

被引:8
作者
Van, Hieu T. [1 ]
Xie, Guojia [1 ]
Dong, Peng [2 ]
Liu, Zhe [2 ]
Ge, Kai [1 ]
机构
[1] NIDDKD, Adipocyte Biol & Gene Regulat Sect, NIH, Bldg 50,Room 4149,50 South Dr, Bethesda, MD 20892 USA
[2] Howard Hughes Med Inst, Janelia Res Campus,19700 Helix Dr, Ashburn, VA 20147 USA
基金
美国国家卫生研究院;
关键词
KMT2; MLL; gene regulation; organism development; STEM-CELL DIFFERENTIATION; OF-FUNCTION VARIANTS; HISTONE METHYLTRANSFERASE; BINDING PROTEIN; MLL FAMILY; LYSINE; STRUCTURAL BASIS; GENE; COMPLEX; SETD1A;
D O I
10.1016/j.jmb.2024.168453
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Histone-lysine N-methyltransferase 2 (KMT2) methyltransferases are critical for gene regulation, cell differentiation, animal development, and human diseases. KMT2 biological roles are often attributed to their methyltransferase activities on lysine 4 of histone H3 (H3K4). However, recent data indicate that KMT2 proteins also possess non-enzymatic functions. In this review, we discuss the current understanding of KMT2 family, with a focus on their enzymatic activity-dependent and -independent functions. Six mammalian KMT2 proteins of three subgroups, KMT2A/B (MLL1/2), KMT2C/D (MLL3/4), and KMT2F/G (SETD1A/B or SET1A/B), have shared and distinct protein domains, catalytic substrates, genomic localizations, and associated complex subunits. Recent studies have revealed the importance of KMT2C/D in enhancer regulation, differentiation, development, tumor suppression and highlighted KMT2C/D enzymatic activity-dependent and -independent roles in mouse embryonic development and cell differentiation. Catalytic dependent and independent functions for KMT2A/B and KMT2F/G in gene regulation, differentiation, and development are less understood. Finally, we provide our perspectives and lay out future research directions that may help advance the investigation on enzymatic activitydependent and -independent biological roles and working mechanisms of KMT2 methyltransferases. Published by Elsevier Ltd.
引用
收藏
页数:17
相关论文
共 50 条
  • [21] Set1 regulates telomere function via H3K4 methylation-dependent and-independent pathways and calibrates the abundance of telomere maintenance factors
    Jezek, Meagan
    Sun, Winny
    Negesse, Maraki Y.
    Smith, Zachary M.
    Orosz, Alexander
    Green, Erin M.
    MOLECULAR BIOLOGY OF THE CELL, 2023, 34 (01)
  • [22] Pax6 associates with H3K4-specific histone methyltransferases Mll1, Mll2, and Set1a and regulates H3K4 methylation at promoters and enhancers
    Sun, Jian
    Zhao, Yilin
    McGreal, Rebecca
    Cohen-Tayar, Yamit
    Rockowitz, Shira
    Wilczek, Carola
    Ashery-Padan, Ruth
    Shechter, David
    Zheng, Deyou
    Cvekl, Ales
    EPIGENETICS & CHROMATIN, 2016, 9
  • [23] Maintenance of gene silencing by the coordinate action of the H3K9 methyltransferase G9a/KMT1C and the H3K4 demethylase Jarid1a/KDM5A
    Chaturvedi, Chandra-Prakash
    Somasundaram, Brinda
    Singh, Kulwant
    Carpenedo, Richard L.
    Stanford, William L.
    Dilworth, F. Jeffrey
    Brand, Marjorie
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2012, 109 (46) : 18845 - 18850
  • [24] Proper Activity of Histone H3 Lysine 4 (H3K4) Methyltransferase Is Required for Morphogenesis during Zebrafish Cardiogenesis
    Kim, Jun-Dae
    Kim, Eunmi
    Koun, Soonil
    Ham, Hyung-Jin
    Rhee, Myungchull
    Kim, Myoung-Jin
    Huh, Tae-Lin
    MOLECULES AND CELLS, 2015, 38 (06) : 580 - 586
  • [25] Hierarchical assembly of the MLL1 core complex regulates H3K4 methylation and is dependent on temperature and component concentration
    Namitz, Kevin E. W.
    Tan, Song
    Cosgrove, Michael S.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2023, 299 (02)
  • [26] New twists of a TAIL: novel insights into the histone binding properties of a highly conserved PHD finger cluster within the MLR family of H3K4 mono-methyltransferases
    Zraly, Claudia B.
    Schultz, Richard
    Diaz, Manuel O.
    Dingwall, Andrew K.
    NUCLEIC ACIDS RESEARCH, 2023, 51 (18) : 9672 - 9689
  • [27] Mitotically heritable, RNA polymerase II-independent H3K4 dimethylation stimulates INO1 transcriptional memory
    Sump, Bethany
    Brickner, Donna G.
    D'Urso, Agustina
    Kim, Seo Hyun
    Brickner, Jason H.
    ELIFE, 2022, 11
  • [28] Global Analysis of H3K4 Methylation Defines MLL Family Member Targets and Points to a Role for MLL1-Mediated H3K4 Methylation in the Regulation of Transcriptional Initiation by RNA Polymerase II
    Wang, Pengfei
    Lin, Chengqi
    Smith, Edwin R.
    Guo, Hong
    Sanderson, Brian W.
    Wu, Min
    Gogol, Madelaine
    Alexander, Tara
    Seidel, Christopher
    Wiedemann, Leanne M.
    Ge, Kai
    Krumlauf, Robb
    Shilatifard, Ali
    MOLECULAR AND CELLULAR BIOLOGY, 2009, 29 (22) : 6074 - 6085
  • [29] Histone H2B C-Terminal Helix Mediates trans-Histone H3K4 Methylation Independent of H2B Ubiquitination
    Chandrasekharan, Mahesh B.
    Huang, Fu
    Chen, Yi-Chun
    Sun, Zu-Wen
    MOLECULAR AND CELLULAR BIOLOGY, 2010, 30 (13) : 3216 - 3232
  • [30] Histone H3K4 and K36 Methylation, Chd1 and Rpd3S Oppose the Functions of Saccharomyces cerevisiae Spt4-Spt5 in Transcription
    Quan, Tiffani Kiyoko
    Hartzog, Grant Ashley
    GENETICS, 2010, 184 (02) : 321 - U29