Methylation of histone H3 lysine 4 is required for maintenance of beta cell function in adult mice

被引:7
|
作者
Vanderkruk, Ben [1 ,2 ]
Maeshima, Nina [2 ]
Pasula, Daniel J. [1 ,2 ]
An, Meilin [1 ]
McDonald, Cassandra L. [1 ]
Suresh, Priya [1 ]
Luciani, Dan S. [1 ,2 ]
Lynn, Francis C. [1 ,2 ]
Hoffman, Brad G. [1 ,2 ]
机构
[1] British Columbia Childrens Hosp, Diabet Res Grp, Res Inst, Vancouver, BC, Canada
[2] Univ British Columbia, Dept Surg, Vancouver, BC, Canada
基金
加拿大自然科学与工程研究理事会; 加拿大健康研究院;
关键词
Beta cell; Chromatin; COMPASS; DPY30; Insulin; Transcription; Type; 2; diabetes; CHROMATIN ARCHITECTURE; GENE-EXPRESSION; TRANSCRIPTION; TRIMETHYLATION; IDENTITY; DISTINCT; PROMOTERS; ENHANCERS; PROTEINS; COMPASS;
D O I
10.1007/s00125-023-05896-6
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Aims/hypothesis Beta cells control glucose homeostasis via regulated production and secretion of insulin. This function arises from a highly specialised gene expression programme that is established during development and then sustained, with limited flexibility, in terminally differentiated cells. Dysregulation of this programme is seen in type 2 diabetes but mechanisms that preserve gene expression or underlie its dysregulation in mature cells are not well resolved. This study investigated whether methylation of histone H3 lysine 4 (H3K4), a marker of gene promoters with unresolved functional importance, is necessary for the maintenance of mature beta cell function.Methods Beta cell function, gene expression and chromatin modifications were analysed in conditional Dpy30 knockout mice, in which H3K4 methyltransferase activity is impaired, and in a mouse model of diabetes.Results H3K4 methylation maintains expression of genes that are important for insulin biosynthesis and glucose responsiveness. Deficient methylation of H3K4 leads to a less active and more repressed epigenome profile that locally correlates with gene expression deficits but does not globally reduce gene expression. Instead, developmentally regulated genes and genes in weakly active or suppressed states particularly rely on H3K4 methylation. We further show that H3K4 trimethylation (H3K4me3) is reorganised in islets from the Lepr(db/db) mouse model of diabetes in favour of weakly active and disallowed genes at the expense of terminal beta cell markers with broad H3K4me3 peaks.Conclusions/interpretation Sustained methylation of H3K4 is critical for the maintenance of beta cell function. Redistribution of H3K4me3 is linked to gene expression changes that are implicated in diabetes pathology.
引用
收藏
页码:1097 / 1115
页数:19
相关论文
共 50 条
  • [21] Destabilization of chromosome structure by histone H3 lysine 27 methylation
    Moeller, Mareike
    Schotanus, Klaas
    Soyer, Jessica L.
    Haueisen, Janine
    Happ, Kathrin
    Stralucke, Maja
    Happel, Petra
    Smith, Kristina M.
    Connolly, Lanelle R.
    Freitag, Michael
    Stukenbrock, Eva H.
    PLOS GENETICS, 2019, 15 (04):
  • [22] Writing and Reading Histone H3 Lysine 9 Methylation in Arabidopsis
    Xu, Linhao
    Jiang, Hua
    FRONTIERS IN PLANT SCIENCE, 2020, 11
  • [23] Ash1 counteracts Polycomb repression independent of histone H3 lysine 36 methylation
    Dorafshan, Eshagh
    Kahn, Tatyana G.
    Glotov, Alexander
    Savitsky, Mikhail
    Walther, Matthias
    Reuter, Gunter
    Schwartz, Yuri B.
    EMBO REPORTS, 2019, 20 (04)
  • [24] Probe the function of histone lysine 36 methylation using histone H3 lysine 36 to methionine mutant transgene in mammalian cells
    Fang, Dong
    Gan, Haiyun
    Wang, Heping
    Zhou, Hui
    Zhang, Zhiguo
    CELL CYCLE, 2017, 16 (19) : 1781 - 1789
  • [25] Dynamic acetylation of lysine-4-trimethylated histone H3 and H3 variant biology in a simple multicellular eukaryote
    Hsu, Duen-Wei
    Chubb, Jonathan R.
    Muramoto, Tetsuya
    Pears, Catherine J.
    Mahadevan, Louis C.
    NUCLEIC ACIDS RESEARCH, 2012, 40 (15) : 7247 - 7256
  • [26] Histone H3 Lysine 14 Acetylation Is Required for Activation of a DNA Damage Checkpoint in Fission Yeast
    Wang, Yu
    Kallgren, Scott P.
    Reddy, Bharat D.
    Kuntz, Karen
    Lopez-Maury, Luis
    Thompson, James
    Watt, Stephen
    Ma, Chun
    Hou, Haitong
    Shi, Yang
    Yates, John R., III
    Baehler, Juerg
    O'Connell, Matthew J.
    Jia, Songtao
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (06) : 4386 - 4393
  • [27] Characterization of Histone H3 Lysine 4 and 36 Tri-methylation in Brassica rapa L.
    Mehraj, Hasan
    Takahashi, Satoshi
    Miyaji, Naomi
    Akter, Ayasha
    Suzuki, Yutaka
    Seki, Motoaki
    Dennis, Elizabeth S.
    Fujimoto, Ryo
    FRONTIERS IN PLANT SCIENCE, 2021, 12
  • [28] Broad domains of histone H3 lysine 4 trimethylation in transcriptional regulation and disease
    Park, Shinae
    Kim, Go Woon
    Kwon, So Hee
    Lee, Jung-Shin
    FEBS JOURNAL, 2020, 287 (14) : 2891 - 2902
  • [29] Histone H3 Lysine 27 demethylases Jmjd3 and Utx are required for T-cell differentiation
    Manna, Sugata
    Kim, Jong Kyong
    Bauge, Catherine
    Cam, Margaret
    Zhao, Yongmei
    Shetty, Jyoti
    Vacchio, Melanie S.
    Castro, Ehydel
    Tran, Bao
    Tessarollo, Lino
    Bosselut, Remy
    NATURE COMMUNICATIONS, 2015, 6
  • [30] Histone H3 lysine 4 di-methylation A novel mark for transcriptional fidelity?
    Pinskaya, Marina
    Morillon, Antonin
    EPIGENETICS, 2009, 4 (05) : 302 - 306