A Brassica cDNA clone encoding a bifunctional hydroxymethylpyrimidine kinase/thiamin-phosphate pyrophosphorylase involved in thiamin biosynthesis

  • Yang Suk Kim
  • , Kazuto Nosaka
  • , Diana M. Downs
  • , June Myoung Kwak
  • , Deokhoon Park
  • , Kyung Chung
  • , Hong Gil Nam

Research output: Contribution to journalArticlepeer-review

29 Scopus citations

Abstract

We report the characterization of a Brassica napus cDNA clone (pBTH1) encoding a protein (BTH1) with two enzymatic activities in the thiamin biosynthetic pathway, thiamin-phosphate pyrophosphorylase (TMP-PPase) and 2-methyl-4-amino-5-hydroxymethylpyrimidine-monophosphate kinase (HMP-P kinase). The cDNA clone was isolated by a novel functional complementation strategy employing an Escherichia coli mutant deficient in the TMP-PPase activity. A biochemical assay showed the clone to confer recovery of TMP-PPase activity in the E. coli mutant strain. The cDNA clone is 1746 bp long and contains an open reading frame encoding a peptide of 524 amino acids. The C-terminal part of BTH1 showed 53% and 59% sequence similarity to the N-terminal TMP-PPase region of the bifunctional yeast proteins Saccharomyces THI6 and Schizosaccharomyces pombe THI4, respectively. The N-terminal part of BTH1 showed 58% sequence similarity to HMP-P kinase of Salmonella typhimurium. The cDNA clone functionally complemented the S. typhimurium and E. coli thiD mutants deficient in the HMP-P kinase activity. These results show that the clone encodes a bifunctional protein with TMP-PPase at the C-terminus and HMP-P kinase at the N-terminus. This is in contrast to the yeast bifunctional proteins that encode TMP-PPase at the N-terminus and 4-methyl-5-(2-hydroxyethyl)thiazole kinase at the C-terminus. Expression of the BTHI gene is negatively regulated by thiamin, as in the cases for the thiamin biosynthetic genes of microorganisms. This is the first report of a plant thiamin biosynthetic gene on which a specific biochemical activity is assigned. The Brassica BTH1 gene may correspond to the Arabidopsis TH-1 gene.

Original languageEnglish
Pages (from-to)955-966
Number of pages12
JournalPlant Molecular Biology
Volume37
Issue number6
DOIs
StatePublished - Aug 1998

Bibliographical note

Funding Information:
We thank Dr H. Nakayama for providing the E. coli stains, Dr Y. Kawasaki for providing the substrates for the TMP-PPase assay, and Drs S. D. Choi and R. Wing for helping with the BAC library screening. This work was supported by grants from KOSEF and the Ministry of Agriculture. D. M. D. was supported by NIH grant GM47296.

Keywords

  • Bifunctional enzyme
  • Brassica napus
  • Hydroxymethylpyrimidine phosphate kinase
  • Thiamin
  • Thiamin phosphate pyrophosphorylase
  • cDNA

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