Investigating the role of G-quadruplexes at Saccharomyces cerevisiae telomeres

被引:2
作者
Stinus, Sonia [1 ]
Bringas, Fernando R. Rosas [1 ]
Wanders, Lisa [1 ]
Chang, Michael [1 ]
机构
[1] Univ Groningen, Univ Med Ctr Groningen, European Res Inst Biol Ageing, Groningen, Netherlands
来源
MICROBIAL CELL | 2022年 / 9卷 / 06期
关键词
telomere; G-quadruplex; budding yeast; tlc1-tm; Cdc13; Pif1; Saccharomycotina; DNA-BINDING PROTEIN; MUTANT TELOMERASE; YEAST TELOMERASE; EXPRESSION; TEMPLATE; PROMOTES; SUBUNIT; COMPLEX; RAP1;
D O I
10.15698/mic2022.06.778
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The G-quadruplex consensus motif G(>= 3)N(x)G(>= 3)N(x)G(>= 3)N(x)G(>= 3) is found at telomeres of many species, ranging from yeast to plants to humans, but the biological significance of this fact remains largely unknown. In this study, we examine the in vivo relevance of telomeric G-quadruplexes in the budding yeast Saccharomyces cerevisiae by expressing a mutant telomerase RNA subunit (tlc1-tm) that introduces mutant [(TG)(0-4)TGG](x)ATTTGG telomeric repeats instead of wild-type (TG)(0-6)TGGGTGTG(G)(0-1) repeats to the distal ends of telomeres. The tlc1-tm telomere sequences lack the GGG motif present in every wild-type repeat and, therefore, are expected to be impaired in the formation of G-quadruplexes. Circular dichroism analysis of oligonucleotides consisting of tlc1-tm telomeric sequence is consistent with this hypothesis. We have previously shown that tlc1-tm cells grow similarly to wild-type cells, suggesting that the ability to form telomeric G-quadruplexes is not essential for telomere capping in S. cerevisiae cells.
引用
收藏
页码:126 / 132
页数:7
相关论文
共 45 条
  • [1] Azad GK, 2016, FRONT BIOSCI-LANDMRK, V21, P918
  • [2] Targeting G-quadruplexes in gene promoters: a novel anticancer strategy?
    Balasubramanian, Shankar
    Hurley, Laurence H.
    Neidle, Stephen
    [J]. NATURE REVIEWS DRUG DISCOVERY, 2011, 10 (04) : 261 - 275
  • [3] G4Hunter web application: a web server for G-quadruplex prediction
    Brazda, Vaclav
    Kolomaznik, Jan
    Lysek, Jiri
    Bartas, Martin
    Fojta, Miroslav
    St'astny, Jiri
    Mergny, Jean-Louis
    [J]. BIOINFORMATICS, 2019, 35 (18) : 3493 - 3495
  • [4] Bringas FRR, 2022, ELIFE, V11, DOI [10.7554/eLife.74090, 10.7554/eLife.74090.sa0, 10.7554/eLife.74090.sa1, 10.7554/eLife.74090.sa2]
  • [5] Human telomeres contain two distinct Myb-related proteins, TRF1 and TRF2
    Broccoli, D
    Smogorzewska, A
    Chong, L
    deLange, T
    [J]. NATURE GENETICS, 1997, 17 (02) : 231 - 235
  • [6] G-Quadruplexes at Telomeres: Friend or Foe?
    Bryan, Tracy M.
    [J]. MOLECULES, 2020, 25 (16):
  • [7] Step-by-Step Evolution of Telomeres: Lessons from Yeasts
    Cervenak, Filip
    Sepsiova, Regina
    Nosek, Jozef
    Tomaska, Lubomir
    [J]. GENOME BIOLOGY AND EVOLUTION, 2021, 13 (02):
  • [8] Identification of telomerase RNAs in species of the Yarrowia Clade provides insights into the co-evolution of telomerase, telomeric repeats and telomere-binding proteins
    Cervenak, Filip
    Jurikova, Katarina
    Devillers, Hugo
    Kaffe, Binyamin
    Khatib, Areej
    Bonnell, Erin
    Sopkovicova, Martina
    Wellinger, Raymund J.
    Nosek, Jozef
    Tzfati, Yehuda
    Neuveglise, Cecile
    Tomaska, Lubomir
    [J]. SCIENTIFIC REPORTS, 2019, 9 (1)
  • [9] Telomerase repeat addition processivity is increased at critically short telomeres in a Tel1-dependent manner in Saccharomyces cerevisiae
    Chang, Michael
    Arneric, Milica
    Lingner, Joachim
    [J]. GENES & DEVELOPMENT, 2007, 21 (19) : 2485 - 2494
  • [10] Telomeric sequence diversity within the genus Saccharomyces
    Cohn, M
    McEachern, MJ
    Blackburn, EH
    [J]. CURRENT GENETICS, 1998, 33 (02) : 83 - 91