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Dive into the research topics where James Lalonde is active.

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Featured researches published by James Lalonde.


Proceedings of the National Academy of Sciences of the United States of America | 2014

Directed evolution of an ultrastable carbonic anhydrase for highly efficient carbon capture from flue gas.

Oscar Alvizo; Luan J. Nguyen; Christopher Savile; Jamie A. Bresson; Satish L. Lakhapatri; Earl O. P. Solis; Richard J. Fox; James M. Broering; Michael R. Benoit; Sabrina A. Zimmerman; Scott Novick; Jack Liang; James Lalonde

Significance It is clear that to address climate change, the amount of CO2 released into the atmosphere by industrial processes has to be reduced. Carbonic anhydrase regulates CO2 in nearly every single living organism and is one of the most efficient enzymes in nature. To leverage that efficiency, a β-class carbonic anhydrase was engineered using directed evolution to withstand some of the harshest conditions associated with an industrial carbon capture process. The approach laid out can be generally applied in the development of natural enzymes for their use in industrial applications. Carbonic anhydrase (CA) is one of nature’s fastest enzymes and can dramatically improve the economics of carbon capture under demanding environments such as coal-fired power plants. The use of CA to accelerate carbon capture is limited by the enzyme’s sensitivity to the harsh process conditions. Using directed evolution, the properties of a β-class CA from Desulfovibrio vulgaris were dramatically enhanced. Iterative rounds of library design, library generation, and high-throughput screening identified highly stable CA variants that tolerate temperatures of up to 107 °C in the presence of 4.2 M alkaline amine solvent at pH >10.0. This increase in thermostability and alkali tolerance translates to a 4,000,000-fold improvement over the natural enzyme. At pilot scale, the evolved catalyst enhanced the rate of CO2 absorption 25-fold compared with the noncatalyzed reaction.


Journal of the American Chemical Society | 1988

Lipase-catalyzed irreversible transesterifications using enol esters as acylating reagents: preparative enantio- and regioselective syntheses of alcohols, glycerol derivatives, sugars and organometallics

Yi Fong Wang; James Lalonde; Milagros. Momongan; David E. Bergbreiter; Chi-Huey Wong


Journal of the American Chemical Society | 2012

Efficient, Chemoenzymatic Process for Manufacture of the Boceprevir Bicyclic [3.1.0]Proline Intermediate Based on Amine Oxidase-Catalyzed Desymmetrization

Tao Li; Jack Liang; Alexandre Ambrogelly; Tim Brennan; Guy Gloor; Gjalt Huisman; James Lalonde; Azzeddine Lekhal; Ben Mijts; Sheela Muley; Lisa M. Newman; Matt Tobin; George S. K. Wong; Aleksey Zaks; Xiyun Zhang


Journal of Organic Chemistry | 1987

Michael additions of nitroalkanes to .alpha.,.beta.-unsaturated carbonyl compounds using potassium fluoride/basic alumina

David E. Bergbreiter; James Lalonde


Journal of Organic Chemistry | 1988

Enzymatic kinetic resolution of α-nitro α-methyl carboxylic acids

James Lalonde; David E. Bergbreiter; Chi-Huey Wong


Journal of Organic Chemistry | 1988

Enzymic kinetic resolution of .alpha.-nitro .alpha.-methyl carboxylic acids

James Lalonde; David E. Bergbreiter; Chi-Huey Wong


Journal of Organic Chemistry | 1986

Dynamic structures of zinc, magnesium, and aluminum azaallylmetal reagents

James Lalonde; David E. Bergbreiter; Martin Newcomb


Archive | 2009

Biokatalytische Verfahren zur Herstellung substantiell stereomer reinkondensierter, bicyclischer Prolinverbindungen

Benjamin Mijts; Jeffrey Colbeck; John D. Munger; Jagadeesh Mavinahalli; Roger Sheldon; Sheela Muley; Jack Liang; Lisa M. Newman; Xiyun Zhang; James Lalonde; Michael D. Clay; Jun Zhu; John M. Gruber


Archive | 2009

Procédés biocatalytiques pour la préparation de composés de proline bicycliques condensés sensiblement purs sur le plan stéréo-isomérique

Benjamin Mijts; Sheela Muley; Jack Liang; Lisa M. Newman; Xiyun Zhang; James Lalonde; Michael D. Clay; Jun Zhu; John M. Gruber; Jeffrey Colbeck; John D. Munger; Jagadeesh Mavinhalli; Roger Sheldon


Archive | 2009

Procédés biocatalytiques permettant la préparation de composés de proline bicycliques fusionnés sensiblement stéréomériquement

Benjamin Mijts; Jeffrey Colbeck; John D. Munger; Jagadeesh Mavinahalli; Roger Sheldon; Sheela Muley; Jack Liang; Lisa M. Newman; Xiyun Zhang; James Lalonde; Michael D. Clay; Jun Zhu; John M. Gruber

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Xiyun Zhang

University of California

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