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Dive into the research topics where Alexander Varvak is active.

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Featured researches published by Alexander Varvak.


Journal of Biological Chemistry | 2008

Engineering Hyperthermostability into a GH11 Xylanase Is Mediated by Subtle Changes to Protein Structure

Claire Dumon; Alexander Varvak; Mark A. Wall; James E. Flint; Richard J. Lewis; Jeremy H. Lakey; Carl Morland; Peter Luginbühl; Shaun Healey; Thomas Todaro; Grace DeSantis; May Sun; Lilian Parra-Gessert; Xuqiu Tan; David P. Weiner; Harry J. Gilbert

Understanding the structural basis for protein thermostability is of considerable biological and biotechnological importance as exemplified by the industrial use of xylanases at elevated temperatures in the paper pulp and animal feed sectors. Here we have used directed protein evolution to generate hyperthermostable variants of a thermophilic GH11 xylanase, EvXyn11. The Gene Site Saturation Mutagenesis™ (GSSM) methodology employed assesses the influence on thermostability of all possible amino acid substitutions at each position in the primary structure of the target protein. The 15 most thermostable mutants, which generally clustered in the N-terminal region of the enzyme, had melting temperatures (Tm) 1–8°C higher than the parent protein. Screening of a combinatorial library of the single mutants identified a hyperthermostable variant, EvXyn11TS, containing seven mutations. EvXyn11TS had a Tm ∼ 25 °C higher than the parent enzyme while displaying catalytic properties that were similar to EvXyn11. The crystal structures of EvXyn11 and EvXyn11TS revealed an absence of substantial changes to identifiable intramolecular interactions. The only explicable mutations are T13F, which increases hydrophobic interactions, and S9P that apparently locks the conformation of a surface loop. This report shows that the molecular basis for the increased thermostability is extraordinarily subtle and points to the requirement for new tools to interrogate protein folding at non-ambient temperatures.


Proceedings of the National Academy of Sciences of the United States of America | 2004

Development of an efficient, scalable, aldolase-catalyzed process for enantioselective synthesis of statin intermediates

William A. Greenberg; Alexander Varvak; Sarah R. Hanson; Kelvin Wong; Hongjun Huang; Pei Chen; Mark J. Burk


Archive | 2003

Chemoenzymatic methods for the synthesis of statins and statin intermediates

William Greenberg; Mark J. Burk; Alexander Varvak; Kelvin Wong


Enzyme and Microbial Technology | 2008

Prebleaching of softwood and hardwood pulps by a high performance xylanase belonging to a novel clade of glycosyl hydrolase family 11

Ali R. Esteghlalian; Martin Kazaoka; Brad A. Lowery; Alexander Varvak; Bill Hancock; Thomas Woodward; Jack O. Turner; David Blum; David P. Weiner; Geoffrey P. Hazlewood


Archive | 2012

Variant cbh i polypeptides with reduced product inhibition

Justin T. Stege; Alexander Varvak; John Poland; Chris S. Lyon; Shaun Healey; Peter Luginbuhl


Archive | 2012

Lyaseenzymes, Nucleic Acids Encoding Them and Methods For Making and Using Them

David Weiner; Alexander Varvak; Toby Richardson; Mircea Podar; Ellen Burke; Shaun Healey


Archive | 2011

Variant cbh i polypeptides

Justin T. Stege; Alexander Varvak; John Poland; Chris S. Lyon; Shaun Healey; Peter Luginbuhl


Archive | 2011

Polypeptides variables de la cbh i dont l'inhibition des produits est réduite

Justin T. Stege; Alexander Varvak; John Poland; Chris S. Lyon; Shaun Healey; Peter Luginbuhl


Archive | 2007

Xylanases, acides nucléiques codant pour elles et leurs procédés de préparation et d'utilisation

David Weiner; David Blum; Alexander Varvak; Shaun Healey; Kristine Chang; Geoff Hazlewood; Thomas Todaro; Grace Desantis; Hwai Chang; Connie Jo Hansen; Scott W. Beaver; Thomas Woodward; Charles Hancock


Archive | 2007

Xylanases, acides nucleiques les codant et leurs procedes de fabrication et d'utilisation

David Weiner; Connie Jo Hansen; Charles Hancock; Thomas Woodward; Scott W. Beaver; David Blum; Shaun Healey; Alexander Varvak; Thomas Todaro; Geoff Hazlewood; Kristine Chang; Hwai Chang; Grace Desantis

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David Weiner

Scripps Research Institute

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Kelvin Wong

Michigan State University

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Mircea Podar

Oak Ridge National Laboratory

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