Journal ArticleDOI
A novel method for phosphorylation of nucleosides to 5'-nucleotides
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This article is published in Tetrahedron Letters.The article was published on 1967-01-01. It has received 448 citations till now.read more
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Journal ArticleDOI
Real-Time DNA Sequencing from Single Polymerase Molecules
John Eid,Adrian Fehr,Jeremy Gray,Khai Luong,John Lyle,Geoff Otto,Paul Peluso,David R. Rank,Primo Baybayan,Brad Bettman,Arkadiusz Bibillo,Keith Bjornson,Bidhan Chaudhuri,Fred Christians,Ronald L. Cicero,Sonya Clark,Ravindra V. Dalal,Alex DeWinter,John Dixon,Mathieu Foquet,Alfred Gaertner,Paul Hardenbol,Cheryl Heiner,Kevin Hester,David P. Holden,Gregory J. Kearns,Xiangxu Kong,Ronald Kuse,Yves Lacroix,Steven Lin,Paul Lundquist,Congcong Ma,Patrick Marks,Mark Maxham,Devon Murphy,Insil Park,Thang Pham,Michael Phillips,Joy Roy,Robert Sebra,Gene Shen,Jon M. Sorenson,Austin B. Tomaney,Kevin Travers,Mark Trulson,John Vieceli,Jeffrey Wegener,Dawn Wu,Alicia Yang,Denis Zaccarin,Peter Zhao,Frank Zhong,Jonas Korlach,Stephen Turner +53 more
TL;DR: Single-molecule, real-time sequencing data obtained from a DNA polymerase performing uninterrupted template-directed synthesis using four distinguishable fluorescently labeled deoxyribonucleoside triphosphates (dNTPs) are presented.
Journal ArticleDOI
Chemistry of biologically important synthetic organoselenium compounds.
Book ChapterDOI
Real-time DNA sequencing from single polymerase molecules.
Jonas Korlach,Keith Bjornson,Bidhan Chaudhuri,Ronald L. Cicero,Benjamin Flusberg,Jeremy Gray,David P. Holden,Ravi Saxena,Jeffrey Wegener,Stephen Turner +9 more
TL;DR: This chapter will first outline the principle of this single-molecule, real-time (SMRT) DNA sequencing method, followed by descriptions of its underlying components and typical sequencing run conditions.
Journal ArticleDOI
Mechanism of interaction of thymidylate synthetase with 5-fluorodeoxyuridylate.
Journal ArticleDOI
Mechanism of Action of 1-β-D-Ribofuranosyl-1,2,4-Triazole-3-Carboxamide (Virazole), A New Broad-Spectrum Antiviral Agent
David G. Streeter,Joseph T. Witkowski,Gyaneshwar P. Khare,Robert W. Sidwell,Randy J. Bauer,Roland K. Robins,Lionel N. Simon +6 more
TL;DR: Results suggest that the antiviral activity of Virazole might be due to the inhibition of GMP biosynthesis in the infected cell at the step involving the conversion of IMP to xanthosine 5'-phosphate, which would result in inhibition of the synthesis of vital viral nucleic acid.
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