Nosaka Kazuto
Department of Chemistry, Kyoto Prefectural University of Medicine, Kita-ku, Kyoto, 603-8334, Japan.
Appl Microbiol Biotechnol. 2006 Aug;72(1):30-40. doi: 10.1007/s00253-006-0464-9. Epub 2006 Jul 7.
The yeast Saccharomyces cerevisiae is able to synthesize thiamin pyrophosphate (TPP) de novo, which involves the independent formation of two ring structures, 2-methyl-4-amino-5-hydroxymethylpyrimidine and 4-methyl-5-beta-hydroxyethylthiazole, in the early steps. In addition, this organism can efficiently utilize thiamin from the extracellular environment to produce TPP. Nineteen genes involved in the synthesis of TPP and the utilization of thiamin (THI genes) have been identified, and the function of several THI genes has been elucidated. All THI genes participating in the synthesis of the pyrimidine unit belong to multigene families. It is also intriguing that some thiamin biosynthetic proteins are composed of two distinct domains or form an enzyme complex. The expression of THI genes is coordinately induced in response to thiamin starvation. It is likely that the induction of THI genes is activated by a positive regulatory factor complex and that the protein-protein interaction among the factors is disturbed by TPP. Thiamin-hyperproducing yeast and fermented food containing a high content of thiamin are expected to be available in the future based on the progress in understanding thiamin biosynthesis and its genetic regulation in S. cerevisiae.
酿酒酵母能够从头合成硫胺素焦磷酸(TPP),这在早期步骤中涉及两个环状结构2-甲基-4-氨基-5-羟甲基嘧啶和4-甲基-5-β-羟乙基噻唑的独立形成。此外,这种生物体能够有效地利用细胞外环境中的硫胺素来产生TPP。已经鉴定出19个参与TPP合成和硫胺素利用的基因(THI基因),并且一些THI基因的功能已经得到阐明。所有参与嘧啶单元合成的THI基因都属于多基因家族。同样有趣的是,一些硫胺素生物合成蛋白由两个不同的结构域组成或形成酶复合物。THI基因的表达在硫胺素饥饿时被协同诱导。THI基因的诱导可能由一个正调控因子复合物激活,并且这些因子之间的蛋白质-蛋白质相互作用会被TPP干扰。基于对酿酒酵母中硫胺素生物合成及其遗传调控的理解取得的进展,预计未来将获得硫胺素高产酵母和含有高含量硫胺素的发酵食品。