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Biochemistry
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July 29, 2009
Radical triplets and suicide inhibition in reactions of 4-thia-D- and 4-thia-L-lysine with lysine 5,6-aminomutase
Kuo-Hsiang Tang, Steven O Mansoorabadi, George H Reed, et al.
Biochemistry
|
October 18, 2006
Identification of structural and catalytic classes of highly conserved amino acid residues in lysine 2,3-aminomutase
Dawei Chen, Perry A Frey, Bryan W Lepore, et al.
Acta Crystallographica. Section D, Biological Crystallography
|
April 23, 2004
Crystallization and X-ray diffraction analysis of ornithine cyclodeaminase from Pseudomonas putida
Shabnam Alam, Susan C Wang, Frank J Ruzicka, et al.
Archives of Biochemistry and Biophysics
|
May 15, 2003
Adenosyl coenzyme and pH dependence of the [4Fe-4S]2+/1+ transition in lysine 2,3-aminomutase
Glen T Hinckley, Frank J Ruzicka, Mark J Thompson, et al.
Biochemistry
|
November 30, 2006
Analysis of the Cob(II)alamin-5'-deoxy-3',4'-anhydroadenosyl radical triplet spin system in the active site of diol dehydrase
Steven O Mansoorabadi, Olafur Th Magnusson, Russell R Poyner, et al.
Journal of the American Chemical Society
|
September 24, 2011
Radical stabilization is crucial in the mechanism of action of lysine 5,6-aminomutase: role of tyrosine-263α as revealed by electron paramagnetic resonance spectroscopy
Yung-Han Chen, Amarendra N Maity, Yu-Chiang Pan, et al.
Biochemistry
|
April 16, 2003
Galactose mutarotase: pH dependence of enzymatic mutarotation
Jane A Beebe, Abolfazl Arabshahi, James G Clifton, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
October 30, 2004
A locking mechanism preventing radical damage in the absence of substrate, as revealed by the x-ray structure of lysine 5,6-aminomutase
Frederick Berkovitch, Elham Behshad, Kuo-Hsiang Tang, et al.
Journal of the American Chemical Society
|
August 3, 2006
How an enzyme tames reactive intermediates: positioning of the active-site components of lysine 2,3-aminomutase during enzymatic turnover as determined by ENDOR spectroscopy
Nicholas S Lees, Dawei Chen, Charles J Walsby, et al.
Biochemistry
|
November 3, 2004
Ornithine cyclodeaminase: structure, mechanism of action, and implications for the mu-crystallin family
Jessica L Goodman, Susan Wang, Shabnam Alam, et al.
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Showing results (31-40 of 43) with videos related to
Sort By:
Page
of 5
Biochemistry
|
July 29, 2009
Radical triplets and suicide inhibition in reactions of 4-thia-D- and 4-thia-L-lysine with lysine 5,6-aminomutase
Kuo-Hsiang Tang, Steven O Mansoorabadi, George H Reed, et al.
Biochemistry
|
October 18, 2006
Identification of structural and catalytic classes of highly conserved amino acid residues in lysine 2,3-aminomutase
Dawei Chen, Perry A Frey, Bryan W Lepore, et al.
Acta Crystallographica. Section D, Biological Crystallography
|
April 23, 2004
Crystallization and X-ray diffraction analysis of ornithine cyclodeaminase from Pseudomonas putida
Shabnam Alam, Susan C Wang, Frank J Ruzicka, et al.
Archives of Biochemistry and Biophysics
|
May 15, 2003
Adenosyl coenzyme and pH dependence of the [4Fe-4S]2+/1+ transition in lysine 2,3-aminomutase
Glen T Hinckley, Frank J Ruzicka, Mark J Thompson, et al.
Biochemistry
|
November 30, 2006
Analysis of the Cob(II)alamin-5'-deoxy-3',4'-anhydroadenosyl radical triplet spin system in the active site of diol dehydrase
Steven O Mansoorabadi, Olafur Th Magnusson, Russell R Poyner, et al.
Journal of the American Chemical Society
|
September 24, 2011
Radical stabilization is crucial in the mechanism of action of lysine 5,6-aminomutase: role of tyrosine-263α as revealed by electron paramagnetic resonance spectroscopy
Yung-Han Chen, Amarendra N Maity, Yu-Chiang Pan, et al.
Biochemistry
|
April 16, 2003
Galactose mutarotase: pH dependence of enzymatic mutarotation
Jane A Beebe, Abolfazl Arabshahi, James G Clifton, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
October 30, 2004
A locking mechanism preventing radical damage in the absence of substrate, as revealed by the x-ray structure of lysine 5,6-aminomutase
Frederick Berkovitch, Elham Behshad, Kuo-Hsiang Tang, et al.
Journal of the American Chemical Society
|
August 3, 2006
How an enzyme tames reactive intermediates: positioning of the active-site components of lysine 2,3-aminomutase during enzymatic turnover as determined by ENDOR spectroscopy
Nicholas S Lees, Dawei Chen, Charles J Walsby, et al.
Biochemistry
|
November 3, 2004
Ornithine cyclodeaminase: structure, mechanism of action, and implications for the mu-crystallin family
Jessica L Goodman, Susan Wang, Shabnam Alam, et al.
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of 5