author_facet Miclo, A.
Germain, P.
Lefebvre, G.
Miclo, A.
Germain, P.
Lefebvre, G.
author Miclo, A.
Germain, P.
Lefebvre, G.
spellingShingle Miclo, A.
Germain, P.
Lefebvre, G.
Journal of Basic Microbiology
The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by Nocardia restricta mutants
Applied Microbiology and Biotechnology
General Medicine
author_sort miclo, a.
spelling Miclo, A. Germain, P. Lefebvre, G. 0233-111X 1521-4028 Wiley Applied Microbiology and Biotechnology General Medicine http://dx.doi.org/10.1002/jobm.3620260411 <jats:title>Abstract</jats:title><jats:p>Two mutants of <jats:italic>Nocardia restricta</jats:italic> breakdown androst‐4‐ene‐3,17‐dione into 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐l‐indanone‐δ‐lactone. The metabolic intermediates formed are very different in each mutant. One uses certain aromatic compounds very slowly. A degradation pathway for steroids by <jats:italic>Nocardia restricta</jats:italic> has been proposed.</jats:p> The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by <i>Nocardia restricta</i> mutants Journal of Basic Microbiology
doi_str_mv 10.1002/jobm.3620260411
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Technik
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series Journal of Basic Microbiology
source_id 49
title The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by Nocardia restricta mutants
title_unstemmed The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by Nocardia restricta mutants
title_full The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by Nocardia restricta mutants
title_fullStr The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by Nocardia restricta mutants
title_full_unstemmed The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by Nocardia restricta mutants
title_short The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by Nocardia restricta mutants
title_sort the production of 3aα‐h‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by <i>nocardia restricta</i> mutants
topic Applied Microbiology and Biotechnology
General Medicine
url http://dx.doi.org/10.1002/jobm.3620260411
publishDate 1986
physical 225-230
description <jats:title>Abstract</jats:title><jats:p>Two mutants of <jats:italic>Nocardia restricta</jats:italic> breakdown androst‐4‐ene‐3,17‐dione into 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐l‐indanone‐δ‐lactone. The metabolic intermediates formed are very different in each mutant. One uses certain aromatic compounds very slowly. A degradation pathway for steroids by <jats:italic>Nocardia restricta</jats:italic> has been proposed.</jats:p>
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author Miclo, A., Germain, P., Lefebvre, G.
author_facet Miclo, A., Germain, P., Lefebvre, G., Miclo, A., Germain, P., Lefebvre, G.
author_sort miclo, a.
container_issue 4
container_start_page 225
container_title Journal of Basic Microbiology
container_volume 26
description <jats:title>Abstract</jats:title><jats:p>Two mutants of <jats:italic>Nocardia restricta</jats:italic> breakdown androst‐4‐ene‐3,17‐dione into 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐l‐indanone‐δ‐lactone. The metabolic intermediates formed are very different in each mutant. One uses certain aromatic compounds very slowly. A degradation pathway for steroids by <jats:italic>Nocardia restricta</jats:italic> has been proposed.</jats:p>
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id ai-49-aHR0cDovL2R4LmRvaS5vcmcvMTAuMTAwMi9qb2JtLjM2MjAyNjA0MTE
imprint Wiley, 1986
imprint_str_mv Wiley, 1986
institution DE-Ch1, DE-L229, DE-D275, DE-Bn3, DE-Brt1, DE-D161, DE-Gla1, DE-Zi4, DE-15, DE-Pl11, DE-Rs1, DE-105, DE-14
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spelling Miclo, A. Germain, P. Lefebvre, G. 0233-111X 1521-4028 Wiley Applied Microbiology and Biotechnology General Medicine http://dx.doi.org/10.1002/jobm.3620260411 <jats:title>Abstract</jats:title><jats:p>Two mutants of <jats:italic>Nocardia restricta</jats:italic> breakdown androst‐4‐ene‐3,17‐dione into 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐l‐indanone‐δ‐lactone. The metabolic intermediates formed are very different in each mutant. One uses certain aromatic compounds very slowly. A degradation pathway for steroids by <jats:italic>Nocardia restricta</jats:italic> has been proposed.</jats:p> The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by <i>Nocardia restricta</i> mutants Journal of Basic Microbiology
spellingShingle Miclo, A., Germain, P., Lefebvre, G., Journal of Basic Microbiology, The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by Nocardia restricta mutants, Applied Microbiology and Biotechnology, General Medicine
title The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by Nocardia restricta mutants
title_full The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by Nocardia restricta mutants
title_fullStr The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by Nocardia restricta mutants
title_full_unstemmed The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by Nocardia restricta mutants
title_short The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by Nocardia restricta mutants
title_sort the production of 3aα‐h‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by <i>nocardia restricta</i> mutants
title_unstemmed The production of 3aα‐H‐4α‐(3′‐propionic acid)‐5α‐hydroxy‐7aβ‐methylhexahydro‐1‐indanone‐δ‐lactone by Nocardia restricta mutants
topic Applied Microbiology and Biotechnology, General Medicine
url http://dx.doi.org/10.1002/jobm.3620260411