Phosphorylation within Intrinsic Disordered Region Discriminates Histone Variant macroH2A1 Splicing Isoforms-macroH2A1.1 and macroH2A1.2

被引:10
|
作者
Giallongo, Sebastiano [1 ,2 ]
Lo Re, Oriana [1 ,3 ]
Lochmanova, Gabriela [4 ,5 ]
Parca, Luca [6 ]
Petrizzelli, Francesco [6 ,7 ]
Zdrahal, Zbynek [4 ,5 ]
Mazza, Tommaso [6 ]
Vinciguerra, Manlio [1 ,3 ]
机构
[1] St Anne Univ Hosp, Int Clin Res Ctr, Pekarska 53, Brno 65691, Czech Republic
[2] Masaryk Univ, Fac Med, Dept Biol, Kamenice 753-5, Brno 62500, Czech Republic
[3] Med Univ Varna, Dept Translat Stem Cell Biol, Varna 9002, Bulgaria
[4] Masaryk Univ, Mendel Ctr Plant Genom & Prote, Cent European Inst Technol, Kamenice 753-5, Brno 62500, Czech Republic
[5] Masaryk Univ, Fac Sci, Natl Ctr Biomol Res, Lab Funct Genom & Prote, Kamenice 753-5, Brno 62500, Czech Republic
[6] IRCCS, Casa Sollievo Sofferenza, Bioinformat Unit, Viale Cappuccini 1, I-71013 San Giovanni Rotondo, Italy
[7] Sapienza Univ Rome, Dept Mol Med, Viale Regina Elena 291, I-00161 Rome, Italy
来源
BIOLOGY-BASEL | 2021年 / 10卷 / 07期
基金
欧盟地平线“2020”;
关键词
mass spectrometry; post-translational modifications; CHROMATIN; BINDING; ISOFORMS; LINKER; DNA;
D O I
10.3390/biology10070659
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Simple Summary MacroH2A1, a histone H2A variant, is present as two alternative splicing isoforms, macroH2A1.1 and macroH2A1.2, which are finely regulated through several mechanisms, including post-translational modifications (PTM). In this article, the authors provide the PTM pattern of macroH2A1.1 and macroH2A1.2 in the same experimental setting through mass spec analysis. They report a different phosphorylation level in their intrinsically disordered linker region, which can be responsible for their different biological role, as computational analysis shows. Background: Gene expression in eukaryotic cells can be governed by histone variants, which replace replication-coupled histones, conferring unique chromatin properties. MacroH2A1 is a histone H2A variant containing a domain highly similar to H2A and a large non-histone (macro) domain. MacroH2A1, in turn, is present in two alternatively exon-spliced isoforms: macroH2A1.1 and macroH2A1.2, which regulate cell plasticity and proliferation in a remarkably distinct manner. The N-terminal and the C-terminal tails of H2A histones stem from the nucleosome core structure and can be target sites for several post-translational modifications (PTMs). MacroH2A1.1 and macroH2A1.2 isoforms differ only in a few amino acids and their ability to bind NAD-derived metabolites, a property allegedly conferring their different functions in vivo. Some of the modifications on the macroH2A1 variant have been identified, such as phosphorylation (T129, S138) and methylation (K18, K123, K239). However, no study to our knowledge has analyzed extensively, and in parallel, the PTM pattern of macroH2A1.1 and macroH2A1.2 in the same experimental setting, which could facilitate the understanding of their distinct biological functions in health and disease. Methods: We used a mass spectrometry-based approach to identify the sites for phosphorylation, acetylation, and methylation in green fluorescent protein (GFP)-tagged macroH2A1.1 and macroH2A1.2 expressed in human hepatoma cells. The impact of selected PTMs on macroH2A1.1 and macroH2A1.2 structure and function are demonstrated using computational analyses. Results: We identified K7 as a new acetylation site in both macroH2A1 isoforms. Quantitative comparison of histone marks between the two isoforms revealed significant differences in the levels of phosphorylated T129 and S170. Our computational analysis provided evidence that the phosphorylation status in the intrinsically disordered linker region in macroH2A1 isoforms might represent a key regulatory element contributing to their distinct biological responses. Conclusions: Taken together, our results report different PTMs on the two macroH2A1 splicing isoforms as responsible for their distinct features and distribution in the cell.
引用
收藏
页数:13
相关论文
共 50 条
  • [11] FACT mediates the depletion of macroH2A1.2 to expedite gene transcription
    Ji, Dengyu
    Xiao, Xue
    Luo, Anfeng
    Fan, Xiongxiong
    Ma, Jingzhe
    Wang, Dayi
    Xia, Miaoran
    Ma, Lu
    Wang, Peng-Ye
    Li, Wei
    Chen, Ping
    MOLECULAR CELL, 2024, 84 (16)
  • [12] Histone variant macroH2A1 deletion in mice causes female-specific steatosis
    Boulard, Mathieu
    Storck, Sebastien
    Cong, Rong
    Pinto, Rodrigo
    Delage, Helene
    Bouvet, Philippe
    EPIGENETICS & CHROMATIN, 2010, 3
  • [13] Histone variant MacroH2A1 is downregulated in prostate cancer and influences malignant cell phenotype
    Vieira-Silva, Tania Soraia
    Monteiro-Reis, Sara
    Barros-Silva, Daniela
    Ramalho-Carvalho, Joao
    Graca, Ines
    Carneiro, Isa
    Martins, Ana Teresa
    Oliveira, Jorge
    Antunes, Luis
    Hurtado-Bages, Sarah
    Buschbeck, Marcus
    Henrique, Rui
    Jeronimo, Carmen
    CANCER CELL INTERNATIONAL, 2019, 19 (1)
  • [14] The Histone Variant MacroH2A1 Regulates Target Gene Expression in Part by Recruiting the Transcriptional Coregulator PELP1
    Hussey, Kristine M.
    Chen, Hongshan
    Yang, Christine
    Park, Eugene
    Hah, Nasun
    Erdjument-Bromage, Hediye
    Tempst, Paul
    Gamble, Matthew J.
    Kraus, W. Lee
    MOLECULAR AND CELLULAR BIOLOGY, 2014, 34 (13) : 2437 - 2449
  • [15] Histone variant macroH2A1 regulates synchronous firing of replication origins in the inactive X chromosome
    Arroyo, Maria
    Casas-Delucchi, Corella S.
    Pabba, Maruthi K.
    Prorok, Paulina
    Pradhan, Sunil K.
    Rausch, Cathia
    Lehmkuhl, Anne
    Maiser, Andreas
    Buschbeck, Marcus
    Pasque, Vincent
    Bernstein, Emily
    Luck, Katja
    Cardoso, M. Cristina
    NUCLEIC ACIDS RESEARCH, 2024, 52 (19) : 11659 - 11688
  • [16] Histone MacroH2A1: A Chromatin Point of Intersection between Fasting, Senescence and Cellular Regeneration
    Lo Re, Oriana
    Vinciguerra, Manlio
    GENES, 2017, 8 (12)
  • [17] The histone variant macroH2A1 marks repressed autosomal chromatin, but protects a subset of its target genes from silencing
    Gamble, Matthew J.
    Frizzell, Kristine M.
    Yang, Christine
    Krishnakumar, Raga
    Kraus, W. Lee
    GENES & DEVELOPMENT, 2010, 24 (01) : 21 - 32
  • [18] Histone macroH2A1 is concentrated in the inactive X chromosome of female preimplantation mouse embryos
    Costanzi, C
    Stein, P
    Worrad, DM
    Schultz, RM
    Pehrson, JR
    DEVELOPMENT, 2000, 127 (11): : 2283 - 2289
  • [19] Deficiency of histone variant macroH2A1.1 is associated with sexually dimorphic obesity in mice
    Chiodi, Valentina
    Rappa, Francesca
    Lo Re, Oriana
    Chaldakov, George N.
    Lelouvier, Benjamin
    Micale, Vincenzo
    Domenici, Maria Rosaria
    Vinciguerra, Manlio
    SCIENTIFIC REPORTS, 2023, 13 (01)
  • [20] The histone variant macroH2A1.1 is recruited to DSBs through a mechanism involving PARP1
    Xu, Chang
    Xu, Ye
    Gursoy-Yuzugullu, Ozge
    Price, Brendan D.
    FEBS LETTERS, 2012, 586 (21) : 3920 - 3925