Arginine Methylation Regulates Telomere Length and Stability

被引:59
作者
Mitchell, Taylor R. H. [1 ]
Glenfield, Kimberly [1 ]
Jeyanthan, Kajaparan [1 ]
Zhu, Xu-Dong [1 ]
机构
[1] McMaster Univ, Dept Biol, Hamilton, ON L8S 4K1, Canada
基金
加拿大健康研究院;
关键词
PROTECTS HUMAN TELOMERES; N-METHYLTRANSFERASE; SUBSTRATE-SPECIFICITY; DNA-DAMAGE; TRANSCRIPTIONAL ACTIVATION; SUBCELLULAR-LOCALIZATION; BINDING PROTEIN; TRF2; CELLS; PRMT1;
D O I
10.1128/MCB.00009-09
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
TRF2, a component of the shelterin complex, functions to protect telomeres. TRF2 contains an N-terminal basic domain rich in glycines and arginines, similar to the GAR motif that is methylated by protein arginine methyltransferases. However, whether arginine methylation regulates TRF2 function has not been determined. Here we report that amino acid substitutions of arginines with lysines in the basic domain of TRF2 induce telomere dysfunction-induced focus formation, leading to induction of cellular senescence. We have demonstrated that cells overexpressing TRF2 lysine mutants accumulate telomere doublets, indicative of telomere instability. We uncovered that TRF2 interacts with PRMT1, and its arginines in the basic domain undergo PRMT1-mediated methylation both in vitro and in vivo. We have shown that loss of PRMT1 induces growth arrest in normal human cells but has no effect on cell proliferation in cancer cells, suggesting that PRMT1 may control cell proliferation in a cell type-specific manner. We found that depletion of PRMT1 in normal human cells results in accumulation of telomere doublets, indistinguishable from overexpression of TRF2 lysine mutants. PRMT1 knockdown in cancer cells upregulates TRF2 association with telomeres, promoting telomere shortening. Taken together, these results suggest that PRMT1 may control telomere length and stability in part through TRF2 methylation.
引用
收藏
页码:4918 / 4934
页数:17
相关论文
共 66 条
  • [21] hSnm1B is a novel telomere-associated protein
    Freibaum, Brian D.
    Counter, Christopher M.
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2006, 281 (22) : 15033 - 15036
  • [22] Gros L, 2003, CANCER RES, V63, P164
  • [23] The many interfaces of Mre11
    Haber, JE
    [J]. CELL, 1998, 95 (05) : 583 - 586
  • [24] G-strand overhangs on telomeres in telomerase-deficient mouse cells
    Hemann, MT
    Greider, CW
    [J]. NUCLEIC ACIDS RESEARCH, 1999, 27 (20) : 3964 - 3969
  • [25] Arginine methylation of scaffold attachment factor A by heterogeneous nuclear ribonucleoprotein particle-associated PRMT1
    Herrmann, F
    Bossert, M
    Schwander, A
    Akgün, E
    Fackelmayer, FO
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (47) : 48774 - 48779
  • [26] p53- and ATM-dependent apoptosis induced by telomeres lacking TRF2
    Karlseder, J
    Broccoli, D
    Dai, YM
    Hardy, S
    de Lange, T
    [J]. SCIENCE, 1999, 283 (5406) : 1321 - 1325
  • [27] Senescence induced by altered telomere state, not telomere loss
    Karlseder, J
    Smogorzewska, A
    de Lange, T
    [J]. SCIENCE, 2002, 295 (5564) : 2446 - 2449
  • [28] TIN2, a new regulator of telomere length in human cells
    Kim, SH
    Kaminker, P
    Campisi, J
    [J]. NATURE GENETICS, 1999, 23 (04) : 405 - 412
  • [29] Heterogeneity in telomere length of human chromosomes
    Lansdorp, PM
    Verwoerd, NP
    vandeRijke, FM
    Dragowska, V
    Little, MT
    Dirks, RW
    Raap, AL
    Tanke, HJ
    [J]. HUMAN MOLECULAR GENETICS, 1996, 5 (05) : 685 - 691
  • [30] PRMT8, a new membrane-bound tissue-specific member of the protein arginine methyltransferase family
    Lee, J
    Sayegh, J
    Daniel, J
    Clarke, S
    Bedford, MT
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (38) : 32890 - 32896