Literature DB >> 14993790

Bovine 5-oxo-L-prolinase: simple assay method, purification, cDNA cloning, and detection of mRNA in the coronary artery.

Tohru Watanabe1, Koji Abe, Hirokazu Ishikawa, Yasuteru Iijima.   

Abstract

RS-7897 is a novel antianginal nitrate containing an L-2-oxothiazolidine-4-carboxylic acid (OTCA) and unlike other organic nitrates does not induce nitrate tolerance. OTCA is known to be converted to L-cysteine (L-Cys) by rat 5-oxo-prolinase (5-OPase) and was detected in the plasma of RS-7897-treated dogs. Nitrate tolerance is considered to develop mainly through sulfhydryl depletion. We hypothesized that RS-7897-derived OTCA was converted into L-Cys by 5-OPase and supplied sulfhydryl groups in vascular smooth muscle cells, the targets of the nitrate. As the initial step for clarifying the presumed role of 5-OPase in RS-7897 metabolism, we established a non-radiochemical assay method highly specific for 5-OPase. Using this assay method, we purified 5-OPase from bovine kidney cytosol until homogeneous results were obtained in sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE). The catalytic activity of bovine 5-OPase to convert OTCA to L-Cys was confirmed, as was the case for the rat enzyme. Then the cDNA encoding bovine 5-OPase was cloned. The deduced amino acid sequence revealed that bovine 5-OPase was highly homologous to rat 5-OPase. Based on the bovine cDNA sequence, oligonucleotide primers were synthesized and used for RT-PCR. 5-OPase mRNA was significantly detected in the RT-PCR product of the bovine coronary artery, a major target organ of RS-7897. These results suggest that OTCA may be converted to L-Cys by 5-OPase in the mammalian coronary artery when treated with RS-7897, and thus generated L-Cys may reduce sulfhydryl depletion and contribute to the prevention of the development of nitrate tolerance.

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Year:  2004        PMID: 14993790     DOI: 10.1248/bpb.27.288

Source DB:  PubMed          Journal:  Biol Pharm Bull        ISSN: 0918-6158            Impact factor:   2.233


  5 in total

1.  A futile cycle, formed between two ATP-dependant gamma-glutamyl cycle enzymes, gamma-glutamyl cysteine synthetase and 5-oxoprolinase: the cause of cellular ATP depletion in nephrotic cystinosis?

Authors:  Akhilesh Kumar; Anand Kumar Bachhawat
Journal:  J Biosci       Date:  2010-03       Impact factor: 1.826

Review 2.  Emerging regulatory paradigms in glutathione metabolism.

Authors:  Yilin Liu; Annastasia S Hyde; Melanie A Simpson; Joseph J Barycki
Journal:  Adv Cancer Res       Date:  2014       Impact factor: 6.242

3.  Characterization of the caprolactam degradation pathway in Pseudomonas jessenii using mass spectrometry-based proteomics.

Authors:  Marleen Otzen; Cyntia Palacio; Dick B Janssen
Journal:  Appl Microbiol Biotechnol       Date:  2018-05-31       Impact factor: 4.813

Review 4.  Inborn errors of enzymes in glutamate metabolism.

Authors:  Lynne Rumping; Esmee Vringer; Roderick H J Houwen; Peter M van Hasselt; Judith J M Jans; Nanda M Verhoeven-Duif
Journal:  J Inherit Metab Dis       Date:  2019-10-11       Impact factor: 4.982

5.  Catalytic and structural properties of ATP-dependent caprolactamase from Pseudomonas jessenii.

Authors:  Antonija Marjanovic; Henriëtte J Rozeboom; Meintje S de Vries; Clemens Mayer; Marleen Otzen; Hein J Wijma; Dick B Janssen
Journal:  Proteins       Date:  2021-05-06
  5 in total

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