Folding and misfolding pathways of G-quadruplex DNA

被引:130
|
作者
Marchand, Adrien [1 ]
Gabelica, Valerie [1 ]
机构
[1] Univ Bordeaux, CNRS, INSERM,U1212, Acides Nucle Regulat Nat & Artificelle UMR5320,IE, 2 Rue Robert Escarpit, F-33607 Pessac, France
关键词
TELOMERIC G-QUADRUPLEX; ELECTROSPRAY MASS-SPECTROMETRY; INTRAMOLECULAR G-QUADRUPLEXES; ION MOBILITY SPECTROMETRY; K+ SOLUTION; PROMOTER REGION; SMALL-MOLECULE; SEQUENCE; KINETICS; BINDING;
D O I
10.1093/nar/gkw970
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
G-quadruplexes adopt various folding topologies, but information on their folding pathways remains scarce. Here, we used electrospray mass spectrometry to detect and quantify the specifically bound potassium ions, and circular dichroism to characterize the stacking topology of each ensemble. For human telomeric (hTel) sequences containing the d((GGGTTA)(3)GGG) core, K+ binding affinity and co-operativity strongly depends on the chosen construct. The shortest sequences bind only one K+ at low KCl concentration, and this 2-quartet G-quadruplex is antiparallel. Flanking bases increase the K+ binding cooperativity. To decipher the folding pathways, we investigated the kinetics of K+ binding to telomeric (hybrid) and c-myc (parallel) G-quadruplexes. G-quadruplexes fold via branched pathways with multiple parallel reactions. Up to six states (one ensemble without K+, two ensembles with 1-K+ and three ensembles with 2-K+) are separated based on their formation rates and ion mobility spectrometry. All G-quadruplexes first form long-lived misfolded structures (off-pathway compared to the most stable structures) containing one K+ and two quartets in an antiparallel stacking arrangement. The results highlight the particular ruggedness of G-quadruplex nucleic acid folding landscapes. Mis-folded structures can play important roles for designing artificial G-quadruplex based structures, and for conformational selection by ligands or proteins in a biological context.
引用
收藏
页码:10999 / 11012
页数:14
相关论文
共 50 条
  • [41] Loop Lengths of G-Quadruplex Structures Affect the G-Quadruplex DNA Binding Selectivity of the RGG Motif in Ewing's Sarcoma
    Takahama, Kentaro
    Sugimoto, Chieri
    Arai, Shigeki
    Kurokawa, Riki
    Oyoshi, Takanori
    BIOCHEMISTRY, 2011, 50 (23) : 5369 - 5378
  • [42] The Importance of Phosphates for DNA G-Quadruplex Formation: Evaluation of Zwitterionic G-Rich Oligodeoxynucleotides
    Su, Yongdong
    Edwards, Patrick J. B.
    Stetsenko, Dmitry A.
    Filichev, Vyacheslav V.
    CHEMBIOCHEM, 2020, 21 (17) : 2455 - 2466
  • [43] Quencher-Free Fluorescence Monitoring of G-Quadruplex Folding
    Parada, Zachary
    Hoog, Tanner G.
    Adamala, Katarzyna P.
    Engelhart, Aaron E.
    ACS OMEGA, 2025, 10 (03): : 3176 - 3181
  • [44] Replication Control of Human Telomere G-Quadruplex DNA by G-Quadruplex Ligands Dependent on Solution Environment
    Takahashi, Shuntaro
    Bhowmik, Sudipta
    Sato, Shinobu
    Takenaka, Shigeori
    Sugimoto, Naoki
    LIFE-BASEL, 2022, 12 (04):
  • [45] Monomorphic RNA G-Quadruplex and Polymorphic DNA G-Quadruplex Structures Responding to Cellular Environmental Factors
    Zhang, Dong-Hao
    Fujimoto, Takeshi
    Saxena, Sarika
    Yu, Hai-Qing
    Miyoshi, Daisuke
    Sugimoto, Naoki
    BIOCHEMISTRY, 2010, 49 (21) : 4554 - 4563
  • [46] Interaction of metallacrown complexes with G-quadruplex DNA
    Rajczak, Ewa
    Gluszynska, Agata
    Juskowiak, Bernard
    JOURNAL OF INORGANIC BIOCHEMISTRY, 2016, 155 : 105 - 114
  • [47] Detection of G-quadruplex DNA in mammalian cells
    Henderson, Alexander
    Wu, Yuliang
    Huang, Yu Chuan
    Chavez, Elizabeth A.
    Platt, Jesse
    Johnson, F. Brad
    Brosh, Robert M., Jr.
    Sen, Dipankar
    Lansdorp, Peter M.
    NUCLEIC ACIDS RESEARCH, 2014, 42 (02) : 860 - 869
  • [48] Phenanthroline polyazamacrocycles as G-quadruplex DNA binders
    Carvalho, Josue
    Quintela, Telma
    Gueddouda, Nassima M.
    Bourdoncle, Anne
    Mergny, Jean-Louis
    Salgado, Gilmar F.
    Queiroz, Joao A.
    Cruz, Carla
    ORGANIC & BIOMOLECULAR CHEMISTRY, 2018, 16 (15) : 2776 - 2786
  • [49] G-quadruplex DNA aptamers for zeatin recognizing
    Qi, Cui
    Bing, Tao
    Mei, Hongcheng
    Yang, Xiaojuan
    Liu, Xiangjun
    Shangguan, Dihua
    BIOSENSORS & BIOELECTRONICS, 2013, 41 : 157 - 162
  • [50] Folding Pathways of Human Telomeric Type-1 and Type-2 G-Quadruplex Structures
    Mashimo, Tomoko
    Yagi, Hirotaka
    Sannohe, Yuta
    Rajendran, Arivazhagan
    Sugiyama, Hiroshi
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2010, 132 (42) : 14910 - 14918