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PMID: 12215431 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

An intramolecular disulfide bridge as a catalytic switch for serotonin N-acetyltransferase.

The Journal of biological chemistry ·Vol. 277 ·No. 46 ·2002-11-15 ·Pages 44229-35

Tsuboi S, Kotani Y, Ogawa K, Hatanaka T, Yatsushiro S, Otsuka M, Moriyama Y

Abstract

Serotonin N-acetyltransferase (EC. 2.3.1.87) (AA-NAT) is a melatonin rhythm-generating enzyme in pineal glands. To establish a melatonin rhythm, AA-NAT activity is precisely regulated through several signaling pathways. Here we show novel regulation of AA-NAT activity, in which an intramolecular disulfide bond may function as a switch for the catalysis. Recombinant AA-NAT activity was irreversibly inhibited by N-ethylmaleimide (NEM) in an acetyl-CoA-protected manner. Oxidized glutathione or dissolved oxygen reversibly inhibited AA-NAT in an acetyl-CoA-protected manner. To identify the cysteine residues responsible for the inhibition, AA-NAT was first oxidized with dissolved oxygen, treated with NEM, reduced with dithiothreitol, and then labeled with [(14)C]NEM. Cys(61) and Cys(177) were specifically labeled in an acetyl-CoA-protected manner. The AA-NAT with the Cys(61) to Ala and Cys(177) to Ala double substitutions (C61A/C177A-AA-NAT) was fully active but did not exhibit sensitivity to either oxidation or NEM, whereas the AA-NATs with only the single substitutions retained about 40% of these sensitivities. An intramolecular disulfide bond between Cys(61) and Cys(177) formed upon oxidation and cleaved upon reduction was identified. Furthermore, C61A/C177A-AA-NAT expressed in COS7 cells was relatively insensitive to H(2)O(2)-evoked oxidative stress, whereas wild-type AA-NAT was strongly inhibited under the same conditions. These results indicate that the formation and cleavage of the disulfide bond between Cys(61) and Cys(177) produce the active and inactive states of AA-NAT. It is possible that intracellular redox conditions regulate AA-NAT activity through switching via an intramolecular disulfide bridge.

MeSH Terms
Alanine/chemistry Amino Acid Sequence Animals Arylamine N-Acetyltransferase/chemistry,metabolism COS Cells Catalysis Cysteine/chemistry Disulfides Dose-Response Relationship, Drug Hydrogen Peroxide/pharmacology Mass Spectrometry Molecular Sequence Data Mutagenesis, Site-Directed Mutation Oxidative Stress Peptides/chemistry Protein Binding Time Factors
Chemicals
Disulfides Peptides Hydrogen Peroxide Arylamine N-Acetyltransferase Cysteine Alanine
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Tsuboi Seiji
Department of Biochemistry, Faculty of Pharmaceutical Sciences, Okayama University, Japan.
Kotani Yoshifumi
Ogawa Ken'ichi
Hatanaka Tadashi
Yatsushiro Shouki
Otsuka Masato
Moriyama Yoshinori
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2002-11-15
Epub
2002-00-04
Pages
44229-35
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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