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Vitaly Kuryavyi

Researcher at Memorial Sloan Kettering Cancer Center

Publications -  22
Citations -  4768

Vitaly Kuryavyi is an academic researcher from Memorial Sloan Kettering Cancer Center. The author has contributed to research in topics: G-quadruplex & DNA. The author has an hindex of 19, co-authored 22 publications receiving 4323 citations.

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Human telomere, oncogenic promoter and 5′-UTR G-quadruplexes: diverse higher order DNA and RNA targets for cancer therapeutics

TL;DR: The review highlights recent solution NMR-based G-quadruplex structures formed by the four-repeat human telomere in K+ solution and the guanine-rich strands of c-myc, c-kit and variant bcl-2 oncogenic promoters, as well as a bimolecular G- quadruplex that targets HIV-1 integrase.
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Structure of the Human Telomere in K+ Solution: An Intramolecular (3 + 1) G-Quadruplex Scaffold

TL;DR: The topological characteristics of this (3 + 1) G-quadruplex scaffold should provide a unique platform for structure-based anticancer drug design targeted to human telomeric DNA.
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Structure of two intramolecular G-quadruplexes formed by natural human telomere sequences in K+ solution

TL;DR: The results provide the structural details at the two ends of the G-tetrad core in the context of natural sequences and information on different loop conformations that might be important for the understanding of telomere G-quadruplex structures and for anticancer drug design targeted to such scaffolds.
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Small-molecule interaction with a five-guanine-tract G-quadruplex structure from the human MYC promoter

TL;DR: Structural information, combined with details of small-molecule interaction, provides a platform for the design of anticancer drugs targeting multi-guanine-tract sequences that are found in the MYC and other oncogenic promoters, as well as in telomeres.
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Structure of an unprecedented G-quadruplex scaffold in the human c-kit promoter.

TL;DR: The structure of an unprecedented intramolecular G-quadruplex formed by a G-rich sequence in the c-kit promoter in K+ solution is reported, which represents a new folding topology with several unique features and an isolated guanine is involved in G-tetrad core formation, despite the presence of four three-guanine tracts.