Watanabe Daisuke, Takagi Hiroshi
a Graduate School of Biological Sciences , Nara Institute of Science and Technology , Ikoma , Japan.
Biosci Biotechnol Biochem. 2017 Jun;81(6):1061-1068. doi: 10.1080/09168451.2017.1295805. Epub 2017 Feb 28.
Rim15p, a Greatwall-family protein kinase in yeast Saccharomyces cerevisiae, is required for cellular nutrient responses, such as the entry into quiescence and the induction of meiosis and sporulation. In higher eukaryotes, the orthologous gene products are commonly involved in the cell cycle G/M transition. How are these pleiotropic functions generated from a single family of protein kinases? Recent advances in both research fields have identified the conserved Greatwall-mediated signaling pathway and a variety of downstream target molecules. In addition, our studies of S. cerevisiae sake yeast strains revealed that Rim15p also plays a significant role in the control of alcoholic fermentation. Despite an extensive history of research on glycolysis and alcoholic fermentation, there has been no critical clue to artificial modification of fermentation performance of yeast cells. Our finding of an in vivo metabolic regulatory mechanism is expected to provide a major breakthrough in yeast breeding technologies for fermentation applications.
Rim15p是酿酒酵母中的一种Greatwall家族蛋白激酶,它参与细胞对营养物质的反应,如进入静止期以及诱导减数分裂和孢子形成。在高等真核生物中,直系同源基因产物通常参与细胞周期的G/M转换。这些多效性功能是如何从单一的蛋白激酶家族产生的呢?这两个研究领域的最新进展已经确定了保守的Greatwall介导的信号通路和多种下游靶分子。此外,我们对清酒酵母菌株的研究表明,Rim15p在酒精发酵的控制中也起着重要作用。尽管对糖酵解和酒精发酵已有广泛的研究历史,但对于人工修饰酵母细胞的发酵性能尚无关键线索。我们对体内代谢调控机制的发现有望为发酵应用的酵母育种技术带来重大突破。