Literature DB >> 18305111

Discovery of amide (peptide) bond synthetic activity in Acyl-CoA synthetase.

Tomoko Abe1, Yoshiteru Hashimoto, Hideaki Hosaka, Kaori Tomita-Yokotani, Michihiko Kobayashi.   

Abstract

Acyl-CoA synthetase, which is one of the acid-thiol ligases (EC 6.2.1), plays key roles in metabolic and regulatory processes. This enzyme forms a carbon-sulfur bond in the presence of ATP and Mg(2+), yielding acyl-CoA thioesters from the corresponding free acids and CoA. This enzyme belongs to the superfamily of adenylate-forming enzymes, whose three-dimensional structures are analogous to one another. We here discovered a new reaction while studying the short-chain acyl-CoA synthetase that we recently reported (Hashimoto, Y., Hosaka, H., Oinuma, K., Goda, M., Higashibata, H., and Kobayashi, M. (2005) J. Biol. Chem. 280, 8660-8667). When l-cysteine was used as a substrate instead of CoA, N-acyl-l-cysteine was surprisingly detected as a reaction product. This finding demonstrated that the enzyme formed a carbon-nitrogen bond (EC 6.3.1 acid-ammonia (or amide) ligase (amide synthase); EC 6.3.2 acid-amino acid ligase (peptide synthase)) comprising the amino group of the cysteine and the carboxyl group of the acid. N-Acyl-d-cysteine, N-acyl-dl-homocysteine, and N-acyl-l-cysteine methyl ester were also synthesized from the corresponding cysteine analog substrates by the enzyme. Furthermore, this unexpected enzyme activity was also observed for acetyl-CoA synthetase and firefly luciferase, indicating the generality of the new reaction in the superfamily of adenylate-forming enzymes.

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Year:  2008        PMID: 18305111     DOI: 10.1074/jbc.M709654200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  12 in total

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2.  Amide compound synthesis by adenylation domain of bacillibactin synthetase.

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Journal:  J Antibiot (Tokyo)       Date:  2016-10-12       Impact factor: 2.649

3.  Characterization of the amicetin biosynthesis gene cluster from Streptomyces vinaceusdrappus NRRL 2363 implicates two alternative strategies for amide bond formation.

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Journal:  Appl Environ Microbiol       Date:  2012-01-20       Impact factor: 4.792

4.  Structures of Mycobacterium tuberculosis FadD10 protein reveal a new type of adenylate-forming enzyme.

Authors:  Zhen Liu; Thomas R Ioerger; Feng Wang; James C Sacchettini
Journal:  J Biol Chem       Date:  2013-04-26       Impact factor: 5.157

5.  Possible involvement of ACSS2 gene in alcoholism.

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6.  Self-subunit swapping chaperone needed for the maturation of multimeric metalloenzyme nitrile hydratase by a subunit exchange mechanism also carries out the oxidation of the metal ligand cysteine residues and insertion of cobalt.

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Journal:  J Biol Chem       Date:  2009-04-03       Impact factor: 5.157

7.  Peptide Bond Synthesis by a Mechanism Involving an Enzymatic Reaction and a Subsequent Chemical Reaction.

Authors:  Tomoko Abe; Yoshiteru Hashimoto; Ye Zhuang; Yin Ge; Takuto Kumano; Michihiko Kobayashi
Journal:  J Biol Chem       Date:  2015-11-19       Impact factor: 5.157

8.  Comparative transcriptomic analysis reveals an association of gibel carp fatty liver with ferroptosis pathway.

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Journal:  BMC Genomics       Date:  2021-05-05       Impact factor: 3.969

9.  Structural basis for acyl acceptor specificity in the achromobactin biosynthetic enzyme AcsD.

Authors:  Stefan Schmelz; Catherine H Botting; Lijiang Song; Nadia F Kadi; Gregory L Challis; James H Naismith
Journal:  J Mol Biol       Date:  2011-08-01       Impact factor: 5.469

10.  Self-subunit swapping occurs in another gene type of cobalt nitrile hydratase.

Authors:  Yi Liu; Wenjing Cui; Yuanyuan Xia; Youtian Cui; Michihiko Kobayashi; Zhemin Zhou
Journal:  PLoS One       Date:  2012-11-30       Impact factor: 3.240

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