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Novel amino acid aminotransferases mediate the final steps in biosynthetic pathways of branched-chain and aromatic amino acids in the hyperthermophile Thermotoga maritima

delete2026-01-01
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PRE
AI
T
Tetsuya Miyamoto *
S
Shunya Abe
Y
Yuki Hoshiyama
G
Genta Sugiyama
K
Kazuma Nishiguchi
S
SHINYA FUSHINOBU
K
Kumiko Sakai‐Kato
DOI:10.1111/febs.70392delete
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Abstract

Abstract

En 中文
The hyperthermophile Thermotoga maritima does not possess a typical branched-chain amino acid aminotransferase or aromatic amino acid aminotransferase, leaving the biosynthetic pathways of these amino acids unclear. In this study, we identified and characterized a novel branched-chain and aromatic amino acid aminotransferase (TM1131). We also characterized a histidinol-phosphate aminotransferase (TM1040) with reported aminotransferase activity toward aromatic amino acids. TM1131 exhibited broad substrate specificity and the highest activity toward branched-chain and aromatic amino acids as an amino donor and toward corresponding 2-oxoacids as an amino acceptor. TM1040 also showed broad substrate specificity, with the highest activity toward l-lysine and l-arginine as an amino donor, and toward 2-oxoacids corresponding to l-methionine, l-leucine, and l-phenylalanine. Additionally, we investigated the multifunctionality of these two enzymes to explore other potential amino acid metabolic activities. Intriguingly, TM1131 displayed aspartate 4-decarboxylase activity, albeit with lower catalytic efficiency than measured for aminotransferase activity. TM1131 is involved in the final step of the biosynthetic pathways of branched-chain and aromatic amino acids, to which TM1040 also likely contributes.
Keywords:
amino acid aminotransferase
aromatic amino acid
aspartate decarboxylase
branched-chain amino acid
Thermotoga maritima

Journal

FEBS Journal cover
FEBS Journal
IF:
4.2
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9.0K
Citations:
2.6W

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K
Kitasato University
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U
university of tokyo
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