Preferential Utilization of d-Lactate by Shewanella oneidensis

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Published inApplied and Environmental Microbiology Vol. 78; no. 23; pp. 8474 - 8476
Main Authors Brutinel, Evan D., Gralnick, Jeffrey A.
Format Journal Article
LanguageEnglish
Published Washington, DC American Society for Microbiology 01.12.2012
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AbstractList Shewanella oneidensis couples oxidation of lactate to respiration of many substrates. Here we report that llpR ( l - l actate- p ositive r egulator, SO_3460) encodes a positive regulator of l -lactate utilization distinct from previously studied regulators. We also demonstrate d -lactate inhibition of l -lactate utilization in S. oneidensis , resulting in preferential utilization of the d isomer.
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Shewanella oneidensis couples oxidation of lactate to respiration of many substrates. Here we report that llpR (l-lactate-positive regulator, SO_3460) encodes a positive regulator of l-lactate utilization distinct from previously studied regulators. We also demonstrate d-lactate inhibition of l-lactate utilization in S. oneidensis, resulting in preferential utilization of the d isomer. [PUBLICATION ABSTRACT]
Shewanella oneidensis couples oxidation of lactate to respiration of many substrates. Here we report that llpR (L-lactate-positive regulator, SO_3460) encodes a positive regulator of L-lactate utilization distinct from previously studied regulators. We also demonstrate D-lactate inhibition of L-lactate utilization in S. oneidensis, resulting in preferential utilization of the D isomer.Shewanella oneidensis couples oxidation of lactate to respiration of many substrates. Here we report that llpR (L-lactate-positive regulator, SO_3460) encodes a positive regulator of L-lactate utilization distinct from previously studied regulators. We also demonstrate D-lactate inhibition of L-lactate utilization in S. oneidensis, resulting in preferential utilization of the D isomer.
Shewanella oneidensis couples oxidation of lactate to respiration of many substrates. Here we report that llpR (L-lactate-positive regulator, SO_3460) encodes a positive regulator of L-lactate utilization distinct from previously studied regulators. We also demonstrate D-lactate inhibition of L-lactate utilization in S. oneidensis, resulting in preferential utilization of the D isomer.
Author Jeffrey A. Gralnick
Evan D. Brutinel
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Bacteria
Vibrionaceae
Shewanella
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Shewanella oneidensis couples oxidation of lactate to respiration of many substrates. Here we report that llpR ( l - l actate- p ositive r egulator, SO_3460)...
Shewanella oneidensis couples oxidation of lactate to respiration of many substrates. Here we report that llpR (L-lactate-positive regulator, SO_3460) encodes...
Shewanella oneidensis couples oxidation of lactate to respiration of many substrates. Here we report that llpR (l-lactate-positive regulator, SO_3460) encodes...
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StartPage 8474
SubjectTerms Bacteriology
Biological and medical sciences
Fundamental and applied biological sciences. Psychology
Gene Expression Regulation, Bacterial
Gene Expression Regulation, Enzymologic
Gram-negative bacteria
Lactic Acid - chemistry
Lactic Acid - metabolism
Microbiology
Oxidation
Oxidation-Reduction
Physiology
Respiration
Shewanella - metabolism
Stereoisomerism
Transcription Factors - metabolism
Title Preferential Utilization of d-Lactate by Shewanella oneidensis
URI http://aem.asm.org/content/78/23/8474.abstract
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