4.4 Article

Functional roles of a predicted branched chain aminotransferase encoded by the LkBAT1 gene of the yeast Lachancea kluyveri

期刊

FUNGAL GENETICS AND BIOLOGY
卷 85, 期 -, 页码 71-82

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.fgb.2015.11.004

关键词

Branched chain amino acid metabolism; Aminotransferase; Respiration; Fermentation; Lachancea kluyveri; Saccharomyces cerevisiae

资金

  1. International Centre for Genetic Engineering and Biotechnology (ICGEB) [CRP/MEX10-03]
  2. CONACYT
  3. IPICYT scholarship
  4. [SEP-CONACYT CB_2005-1_49039]
  5. [CB_2009_132377]
  6. [SEP-CONACYT CB_2014-239492-B]

向作者/读者索取更多资源

Branched chain amino acid aminotransferases (BCATs) catalyze the last step of the biosynthesis and the first step of the catabolism of branched chain amino acids. In Saccharomyces cerevisiae, BCATs are encoded by the ScBAT1 and ScBAT2 paralogous genes. Analysis of Lachancea kluyveri genome sequence, allowed the identification of the LkBAT1 locus, which could presumably encode a BCAT. A second unlinked locus (LkBAT1bis), exhibiting sequence similarity to LkBAT1 was also identified. To determine the function of these putative BCATs, L kluyveri mutant strains lacking LkBAT1, LkBAT1bis or both genes were generated and tested for VIL metabolism. LkBat1 displayed branched chain aminotransferase activity and is required for VIL biosynthesis and catabolism. However, LIthat1 Delta mutant is a valine and isoleucine auxotroph and a leucine bradytroph indicating that L kluyveri harbors an alternative enzyme(s) involved in leucine biosynthesis. Additionally, heterologous reciprocal gene complementation between S. cerevisiae and L. kluyveri orthologous LkBAT1, ScBAT1 and ScBAT2 genes, confirmed that the mitochondrial LkBat1 functions as BCAT in S. cerevisiae, restoring wild type phenotype to the ScBAT1 null mutant. Conversely, LkBAT1bis did not display a role in BCAAs metabolism. However, when ethanol was used as carbon source, deletion of LkBAT1 his in an Lkbat1 Delta null strain resulted in an extended 'lag' growth phase, pointing to a potential function of LkBAT1 and LkBAT1bis in the aerobic metabolism of L. kluyveri. These results confirm the BCAT function of LkBAT1 in L. kluyveri, and further support the proposition that the BCAT function in ancestral-type yeasts has been distributed in the two paralogous genes present in S. cerevisiae. (C) 2015 Elsevier Inc. All rights reserved.

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