Boretsky Yuriy R, Protchenko Olga V, Prokopiv Tetiana M, Mukalov Igor O, Fedorovych Daria V, Sibirny Andriy A
Department of Molecular Genetics and Biotechnology, Institute of Cell Biology NAS of Ukraine, Lviv, Ukraine.
J Basic Microbiol. 2007 Oct;47(5):371-7. doi: 10.1002/jobm.200610279.
Iron deficiency causes oversynthesis of riboflavin in several yeast species, known as flavinogenic yeasts. However, the mechanisms of such regulation are not known. We found that mutations causing riboflavin overproduction and iron hyperaccumulation (rib80, rib81 and hit1), as well as cobalt excess or iron deficiency all provoke oxidative stress in the Pichia guilliermondii yeast. Iron content in the cells, production both of riboflavin and malondialdehyde by P. guilliermondii wild type and hit1 mutant strains depend on a type of carbon source used in cultivation media. The data suggest that the regulation of riboflavin biosynthesis and iron assimilation in P. guilliermondii are linked with cellular oxidative state.
缺铁会导致几种酵母(即产黄素酵母)中核黄素的过度合成。然而,这种调控的机制尚不清楚。我们发现,导致核黄素过量生产和铁超积累的突变(rib80、rib81和hit1),以及钴过量或缺铁,都会在季也蒙毕赤酵母中引发氧化应激。季也蒙毕赤酵母野生型和hit1突变株细胞中的铁含量、核黄素和丙二醛的产生均取决于培养基中使用的碳源类型。数据表明,季也蒙毕赤酵母中核黄素生物合成和铁同化的调控与细胞氧化状态有关。