De Silva-Udawatta M N, Cannon J F
Department of Molecular Microbiology and Immunology, University of Missouri, Columbia, Missouri, MO 65212, USA.
Mol Microbiol. 2001 Jun;40(6):1345-56. doi: 10.1046/j.1365-2958.2001.02477.x.
Trehalose is a major storage carbohydrate in budding yeast, Saccharomyces cerevisiae. Alterations in trehalose synthesis affect carbon source-dependent growth, accumulation of glycogen and sporulation. Trehalose is synthesized by trehalose phosphate synthase (TPS), which is a complex of at least four proteins. In this work, we show that the Tps1p subunit protein catalyses trehalose phosphate synthesis in the absence of other TPS components. The tps1-H223Y allele (glc6-1) that causes a semidominant decrease in glycogen accumulation exhibits greater enzyme activity than wild-type TPS1 because, unlike the wild-type enzyme, TPS activity in tps1-H223Y cells is not inhibited by phosphate. Poor sporulation in tps1 null diploids is caused by reduced expression of meiotic inducers encoded by IME1, IME2 and MCK1. Furthermore, high-copy MCK1 or heterozygous hxk2 mutations can suppress the tps1 sporulation trait. These results suggest that the trehalose-6-phosphate inhibition of hexokinase activity is required for full induction of MCK1 in sporulating yeast cells.
海藻糖是酿酒酵母(Saccharomyces cerevisiae)中的一种主要储存碳水化合物。海藻糖合成的改变会影响碳源依赖性生长、糖原积累和孢子形成。海藻糖由海藻糖磷酸合酶(TPS)合成,TPS是一种至少由四种蛋白质组成的复合物。在这项研究中,我们表明Tps1p亚基蛋白在没有其他TPS成分的情况下催化海藻糖磷酸的合成。导致糖原积累半显性减少的tps1-H223Y等位基因(glc6-1)比野生型TPS1表现出更高的酶活性,因为与野生型酶不同,tps1-H223Y细胞中的TPS活性不受磷酸盐抑制。tps1缺失二倍体中孢子形成不良是由IME1、IME2和MCK1编码的减数分裂诱导因子表达降低引起的。此外,高拷贝的MCK1或杂合的hxk2突变可以抑制tps1的孢子形成特性。这些结果表明,在产孢酵母细胞中,海藻糖-6-磷酸对己糖激酶活性的抑制是MCK1完全诱导所必需的。