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Functions of the Clostridium acetobutylicium FabF and FabZ proteins in unsaturated fatty acid biosynthesis

BACKGROUND: The original anaerobic unsaturated fatty acid biosynthesis pathway proposed by Goldfine and Bloch was based on in vivo labeling studies in Clostridium butyricum ATCC 6015 (now C. beijerinckii) but to date no dedicated unsaturated fatty acid biosynthetic enzyme has been identified in Clos...

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Autores principales: Zhu, Lei, Cheng, Juanli, Luo, Biao, Feng, Saixiang, Lin, Jinshui, Wang, Shengbin, Cronan, John E, Wang, Haihong
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2700279/
https://www.ncbi.nlm.nih.gov/pubmed/19493359
http://dx.doi.org/10.1186/1471-2180-9-119
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author Zhu, Lei
Cheng, Juanli
Luo, Biao
Feng, Saixiang
Lin, Jinshui
Wang, Shengbin
Cronan, John E
Wang, Haihong
author_facet Zhu, Lei
Cheng, Juanli
Luo, Biao
Feng, Saixiang
Lin, Jinshui
Wang, Shengbin
Cronan, John E
Wang, Haihong
author_sort Zhu, Lei
collection PubMed
description BACKGROUND: The original anaerobic unsaturated fatty acid biosynthesis pathway proposed by Goldfine and Bloch was based on in vivo labeling studies in Clostridium butyricum ATCC 6015 (now C. beijerinckii) but to date no dedicated unsaturated fatty acid biosynthetic enzyme has been identified in Clostridia. C. acetobutylicium synthesizes the same species of unsaturated fatty acids as E. coli, but lacks all of the known unsaturated fatty acid synthetic genes identified in E. coli and other bacteria. A possible explanation was that two enzymes of saturated fatty acid synthesis of C. acetobutylicium, FabZ and FabF might also function in the unsaturated arm of the pathway (a FabZ homologue is known to be an unsaturated fatty acid synthetic enzyme in enterococci). RESULTS: We report that the FabF homologue located within the fatty acid biosynthetic gene cluster of C. acetobutylicium functions in synthesis of both unsaturated fatty acids and saturated fatty acids. Expression of this protein in E. coli functionally replaced both the FabB and FabF proteins of the host in vivo and replaced E. coli FabB in a defined in vitro fatty acid synthesis system. In contrast the single C. acetobutylicium FabZ homologue, although able to functionally replace E. coli FabZ in vivo and in vitro, was unable to replace FabA, the key dehydratase-isomerase of E. coli unsaturated fatty acid biosynthesis in vivo and lacked isomerase activity in vitro. CONCLUSION: Thus, C. acetobutylicium introduces the double of unsaturated fatty acids by use of a novel and unknown enzyme.
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spelling pubmed-27002792009-06-23 Functions of the Clostridium acetobutylicium FabF and FabZ proteins in unsaturated fatty acid biosynthesis Zhu, Lei Cheng, Juanli Luo, Biao Feng, Saixiang Lin, Jinshui Wang, Shengbin Cronan, John E Wang, Haihong BMC Microbiol Research article BACKGROUND: The original anaerobic unsaturated fatty acid biosynthesis pathway proposed by Goldfine and Bloch was based on in vivo labeling studies in Clostridium butyricum ATCC 6015 (now C. beijerinckii) but to date no dedicated unsaturated fatty acid biosynthetic enzyme has been identified in Clostridia. C. acetobutylicium synthesizes the same species of unsaturated fatty acids as E. coli, but lacks all of the known unsaturated fatty acid synthetic genes identified in E. coli and other bacteria. A possible explanation was that two enzymes of saturated fatty acid synthesis of C. acetobutylicium, FabZ and FabF might also function in the unsaturated arm of the pathway (a FabZ homologue is known to be an unsaturated fatty acid synthetic enzyme in enterococci). RESULTS: We report that the FabF homologue located within the fatty acid biosynthetic gene cluster of C. acetobutylicium functions in synthesis of both unsaturated fatty acids and saturated fatty acids. Expression of this protein in E. coli functionally replaced both the FabB and FabF proteins of the host in vivo and replaced E. coli FabB in a defined in vitro fatty acid synthesis system. In contrast the single C. acetobutylicium FabZ homologue, although able to functionally replace E. coli FabZ in vivo and in vitro, was unable to replace FabA, the key dehydratase-isomerase of E. coli unsaturated fatty acid biosynthesis in vivo and lacked isomerase activity in vitro. CONCLUSION: Thus, C. acetobutylicium introduces the double of unsaturated fatty acids by use of a novel and unknown enzyme. BioMed Central 2009-06-04 /pmc/articles/PMC2700279/ /pubmed/19493359 http://dx.doi.org/10.1186/1471-2180-9-119 Text en Copyright ©2009 Zhu et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research article
Zhu, Lei
Cheng, Juanli
Luo, Biao
Feng, Saixiang
Lin, Jinshui
Wang, Shengbin
Cronan, John E
Wang, Haihong
Functions of the Clostridium acetobutylicium FabF and FabZ proteins in unsaturated fatty acid biosynthesis
title Functions of the Clostridium acetobutylicium FabF and FabZ proteins in unsaturated fatty acid biosynthesis
title_full Functions of the Clostridium acetobutylicium FabF and FabZ proteins in unsaturated fatty acid biosynthesis
title_fullStr Functions of the Clostridium acetobutylicium FabF and FabZ proteins in unsaturated fatty acid biosynthesis
title_full_unstemmed Functions of the Clostridium acetobutylicium FabF and FabZ proteins in unsaturated fatty acid biosynthesis
title_short Functions of the Clostridium acetobutylicium FabF and FabZ proteins in unsaturated fatty acid biosynthesis
title_sort functions of the clostridium acetobutylicium fabf and fabz proteins in unsaturated fatty acid biosynthesis
topic Research article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2700279/
https://www.ncbi.nlm.nih.gov/pubmed/19493359
http://dx.doi.org/10.1186/1471-2180-9-119
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