Expression, purification, and activity of ActhiS, a thiazole biosynthesis enzyme from Acremonium chrysogenum


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Abstract

Thiamine pyrophosphate is an essential coenzyme in all organisms. Its biosynthesis involves independent syntheses of the precursors, pyrimidine and thiazole, which are then coupled. In our previous study with overexpressed and silent mutants of ActhiS (thiazole biosynthesis enzyme from Acremonium chrysogenum), we found that the enzyme level correlated with intracellular thiamine content in A. chrysogenum. However, the exact structure and function of ActhiS remain unclear. In this study, the enzyme-bound ligand was characterized as the ADP adduct of 5-(2-hydroxyethyl)-4-methylthia-zole-2-carboxylic acid (ADT) using HPLC and 1H NMR. The ligand-free ActhiS expressed in M9 minimal medium catalyzed conversion of NAD+ and glycine to ADT in the presence of iron. Furthermore, the C217 residue was identified as the sulfur donor for the thiazole moiety. These observations confirm that ActhiS is a thiazole biosynthesis enzyme in A. chrysogenum, and it serves as a sulfur source for the thiazole moiety.

About the authors

Zhihui Song

China State Institute of Pharmaceutical Industry

Email: bebydou@hotmail.com
China, Shanghai, 201203

Jie Pan

China State Institute of Pharmaceutical Industry

Email: bebydou@hotmail.com
China, Shanghai, 201203

Liping Xie

China State Institute of Pharmaceutical Industry

Email: bebydou@hotmail.com
China, Shanghai, 201203

Guihua Gong

China State Institute of Pharmaceutical Industry

Email: bebydou@hotmail.com
China, Shanghai, 201203

Shu Han

China State Institute of Pharmaceutical Industry

Email: bebydou@hotmail.com
China, Shanghai, 201203

Wei Zhang

China State Institute of Pharmaceutical Industry

Email: bebydou@hotmail.com
China, Shanghai, 201203

Youjia Hu

China State Institute of Pharmaceutical Industry

Author for correspondence.
Email: bebydou@hotmail.com
China, Shanghai, 201203


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