Literature DB >> 8824301

Primary structure and tissue-specific expression of human beta-hydroxyisobutyryl-coenzyme A hydrolase.

J W Hawes1, J Jaskiewicz, Y Shimomura, B Huang, J Bunting, E T Harper, R A Harris.   

Abstract

beta-Hydroxyisobutyryl-CoA (HIBYL-CoA) hydrolase is responsible for the specific hydrolysis of HIBYL-CoA, a saline catabolite, as well as the hydrolysis of beta-hydroxypropionyl-CoA, an intermediate in a minor pathway of propionate metabolism. We have obtained the amino acid sequences of several tryptic peptides derived from purified rat liver HIBYL-CoA hydrolase, and the NH2-terminal peptize sequence was matched to the translated sequence of a human expressed sequence tag present in the data base of the IMAGE Consortium (Lawrence Livermore National Laboratory, Livermore, CA). The complete nucleotide sequence and the deduced amino acid sequence showed no similarity to the sequences of well known thioesterases but showed significant homology to the enoyl-CoA hydratase/isomerase enzyme family. The cDNA fragment corresponding to the mature (processed) protein was expressed in Escherichia coli. The purified recombinant enzyme displayed substrate specificity very similar to that of the rat enzyme and was specifically bound by polyclonal antibodies raised against purified rat liver HIBYL-CoA hydrolase. Northern and Western blot analyses with various human tissues indicated predominant expression in liver, heart, and kidney, with discrepancies occurring in the amounts of HIBYL-CoA hydrolase mRNA compared to stably expressed protein in several tissues.

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Year:  1996        PMID: 8824301     DOI: 10.1074/jbc.271.42.26430

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


  10 in total

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6.  Acyl-CoA thioesterase 9 (ACOT9) in mouse may provide a novel link between fatty acid and amino acid metabolism in mitochondria.

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Review 8.  Can sequence determine function?

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Authors:  Thomas W Grunt; Astrid Slany; Mariya Semkova; Ramón Colomer; María Luz López-Rodríguez; Michael Wuczkowski; Renate Wagner; Christopher Gerner; Gerald Stübiger
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  10 in total

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