<--- Back to Details
First PageDocument Content
Ralstonia eutropha / Synechocystis / Cysteine / Chemistry / Hydrogenase / Burkholderiales
Date: 2014-07-10 13:16:33
Ralstonia eutropha
Synechocystis
Cysteine
Chemistry
Hydrogenase
Burkholderiales

Improving Cyanobacterial O2-Tolerance using CBS Hydrogenase for H2 Production

Add to Reading List

Source URL: www.hydrogen.energy.gov

Download Document from Source Website

File Size: 800,07 KB

Share Document on Facebook

Similar Documents

Reactive cysteine persulfides, a novel regulator of oxidative stress and redox signaling. Professor AKAIKE, Takaaki Professor Takaaki Akaike at Tohoku University Graduated School of Medicine and co-workers revealed the n

Reactive cysteine persulfides, a novel regulator of oxidative stress and redox signaling. Professor AKAIKE, Takaaki Professor Takaaki Akaike at Tohoku University Graduated School of Medicine and co-workers revealed the n

DocID: 1viD3 - View Document

Research Highlights  nsSNP Cysteine

Research Highlights nsSNP Cysteine

DocID: 1sfAz - View Document

Abstract ErbB2 overexpression gives rise to a highly invasive, aggressive phenotype associated with an enlarged lysosomal compartment and increased activity of the lysosomal proteases, cysteine cathepsins. We have recent

Abstract ErbB2 overexpression gives rise to a highly invasive, aggressive phenotype associated with an enlarged lysosomal compartment and increased activity of the lysosomal proteases, cysteine cathepsins. We have recent

DocID: 1rdcC - View Document

ARTICLE Received 20 Aug 2013 | Accepted 20 Jan 2014 | Published 11 Feb 2014 DOI: ncomms4287  A novel allosteric mechanism in the cysteine

ARTICLE Received 20 Aug 2013 | Accepted 20 Jan 2014 | Published 11 Feb 2014 DOI: ncomms4287 A novel allosteric mechanism in the cysteine

DocID: 1qBN8 - View Document

Microsoft WordFigure 1.doc

Microsoft WordFigure 1.doc

DocID: 1qmGm - View Document