Evidence for two steroid 1,2-dehydrogenase activities in Mycobacterium fortuitum
Author:
Publisher
Elsevier BV
Subject
Endocrinology,Biochemistry,Biophysics
Reference8 articles.
1. STUDIES ON THE MICROBIOLOGICAL DEGRADATION OF CHOLESTEROL
2. Cholesterol utilization by Streptomyces spp.
3. Microbiological Transformations. VI. The Microbiological Aromatization of Steroids
4. Microbiological Transformations. VII. The Hydroxylation of Steroids at C-9
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1. Improving the production of 9α-hydroxy-4-androstene-3,17-dione from phytosterols by 3-ketosteroid-Δ1-dehydrogenase deletions and multiple genetic modifications in Mycobacterium fortuitum;Microbial Cell Factories;2023-03-16
2. Improving the production of 9α-hydroxy-4-androstene-3,17-dione from phytosterols by 3-ketosteroid-Δ1- dehydrogenase deficiency and multiple gene regulation in Mycobacterium fortuitum;2022-11-21
3. Aerobic catabolism of sterols by microorganisms: key enzymes that open the 3-ketosteroid nucleus;FEMS Microbiology Letters;2019-07-01
4. The role and mechanism of microbial 3-ketosteroid Δ1-dehydrogenases in steroid breakdown;The Journal of Steroid Biochemistry and Molecular Biology;2019-07
5. Identification of steroid C27 monooxygenase isoenzymes involved in sterol catabolism and stepwise pathway engineering of Mycobacterium neoaurum for improved androst-1,4-diene-3,17-dione production;Journal of Industrial Microbiology and Biotechnology;2019-05-01
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