1 - 2 |
G-quadruplexes: tools, roles, and goals Masai H, Tan Z |
3 - 17 |
Topologies of G-quadruplex: Biological functions and regulation by ligands Ma Y, Iida K, Nagasawa K |
18 - 24 |
Recent advances in fluorescent probes for G-quadruplex nucleic acids Yuan JH, Shao W, Chen SB, Huang ZS, Tan JH |
25 - 38 |
G-quadruplex DNA and RNA: Their roles in regulation of DNA replication and other biological functions Masai H, Tanaka T |
39 - 44 |
Modulation of histone modifications and G-quadruplex structures by G-quadruplex-binding proteins Oyoshi T, Masuzawa T |
45 - 50 |
G-quadruplex in cancer biology and drug discovery Nakanishi C, Seimiya H |
51 - 55 |
Pharmacological prospects of G-quadruplexes for neurological diseases using porphyrins Asamitsu S, Yabuki Y, Ikenoshita S, Wada T, Shioda N |
56 - 61 |
Recognition of expanded GGGGCC hexanucleotide repeat by synthetic ligand through interhelical binding Lu YH, Dohno C, Nakatani K |
62 - 66 |
Stapling a G-quadruplex specific peptide Yaneva MY, Cheong VV, Cheng JK, Lim KW, Phan AT |
67 - 74 |
Identification and immunohistochemical characterization of G-quadruplexes in mouse brain Asamitsu S, Imai Y, Yabuki Y, Ikenoshita S, Takeuchi M, Kashiwagi H, Tanoue Y, Fukuda T, Shioda N |
75 - 83 |
Detection of cellular G-quadruplex by using a loop structure as a structural determinant Masai H, Kanoh Y, Kakusho N, Fukatsu R |
84 - 87 |
Kinetics, conformation, stability, and targeting of G-quadruplexes from a physiological perspective Tan Z, Hao YH, Zheng KW |