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在UDPG依赖性海藻糖合酶-磷酸酶复合体缺失的酿酒酵母突变体中海藻糖的积累。

Trehalose accumulation in mutants of Saccharomyces cerevisiae deleted in the UDPG-dependent trehalose synthase-phosphatase complex.

作者信息

Ferreira J C, Thevelein J M, Hohmann S, Paschoalin V M, Trugo L C, Panek A D

机构信息

Departamento de Bioquímica, Instituto de Quimica, Universidade Federaldo Rio de Janeiro, Brazil.

出版信息

Biochim Biophys Acta. 1997 Apr 17;1335(1-2):40-50. doi: 10.1016/s0304-4165(96)00127-4.

Abstract

In Saccharomyces cerevisiae, trehalose-6-phosphate synthase converts uridine-5'-diphosphoglucose and glucose 6-phosphate to trehalose 6-phosphate which is dephosphorylated by trehalose 6-phosphatase to trehalose. These two steps take place within a complex consisting of three proteins: trehalose-6-phosphate synthase encoded by the GGS1/TPS1 (= FDP1, = BYP1, = CIF1) gene, trehalose 6-phosphatase encoded by the TPS2 gene and by a third protein encoded by both the TSL1 and TPS3 genes. Using three different methods for trehalose determination, we observed trehalose accumulation in ggs1/tps1delta, tps2delta and tsl1delta mutants, and in the double mutants ggs1/tps1delta/tps2delta and also in ggs1/tps1delta deleted mutants suppressed for growth on glucose. All these mutants harbor MAL genes. Trehalose synthesis in these mutants is probably performed by the adenosine-5'-diphosphoglucose-dependent trehalose synthase, (ADPG-dependent trehalose synthase) which was detected in all strains tested. It is noteworthy that trehalose accumulation in these mutants was detected only in cells grown on weakly repressive carbon sources such as maltose and galactose or during the transition phase from fermentable to non-fermentable growth on glucose. alpha-Glucosidase activity was always present in high amounts. We also describe an adenosine-diphosphoglucosepyrophosphorylase (ADPG-pyrophosphorylase) activity in Saccharomyces cerevisiae which increased concomitantly with the accumulation of trehalose during the transition phase from fermentable to non-fermentable growth in MAL-constitutive (MAL2-8c) strains. The same was observed when MAL-induced (MAL1) strains were compared during growth on glucose and maltose. These results led us to conclude that maltose-induced trehalose accumulation is independent of the UDPG-dependent trehalose-6-phosphate synthase/phosphatase complex; that the ADPG-dependent trehalose synthase is responsible for maltose-induced trehalose accumulation probably by forming a complex with a specific trehalose-6-phosphatase activity and that ADPG synthesis is activated during trehalose accumulation under these conditions.

摘要

在酿酒酵母中,海藻糖-6-磷酸合酶将尿苷-5'-二磷酸葡萄糖和6-磷酸葡萄糖转化为海藻糖-6-磷酸,后者再由海藻糖6-磷酸酶去磷酸化生成海藻糖。这两个步骤发生在一个由三种蛋白质组成的复合物中:由GGS1/TPS1(=FDP1,=BYP1,=CIF1)基因编码的海藻糖-6-磷酸合酶、由TPS2基因编码的海藻糖6-磷酸酶以及由TSL1和TPS3基因共同编码的第三种蛋白质。我们使用三种不同的海藻糖测定方法,观察到在ggs1/tps1δ、tps2δ和tsl1δ突变体中,以及在双突变体ggs1/tps1δ/tps2δ和在葡萄糖上生长受抑制的ggs1/tps1δ缺失突变体中都有海藻糖积累。所有这些突变体都含有MAL基因。这些突变体中的海藻糖合成可能是由腺苷-5'-二磷酸葡萄糖依赖性海藻糖合酶(ADPG依赖性海藻糖合酶)完成的,在所有测试菌株中都检测到了这种酶。值得注意的是,仅在以麦芽糖和半乳糖等弱抑制性碳源生长的细胞中,或在从葡萄糖的可发酵生长向不可发酵生长的转变阶段,才检测到这些突变体中有海藻糖积累。α-葡萄糖苷酶活性始终大量存在。我们还描述了酿酒酵母中的一种腺苷二磷酸葡萄糖焦磷酸化酶(ADPG-焦磷酸化酶)活性,在MAL组成型(MAL2-8c)菌株从可发酵生长向不可发酵生长的转变阶段期间,该活性与海藻糖的积累同步增加。当比较MAL诱导型(MAL1)菌株在葡萄糖和麦芽糖上生长时,也观察到了同样的情况。这些结果使我们得出结论,麦芽糖诱导的海藻糖积累独立于UDPG依赖性海藻糖-6-磷酸合酶/磷酸酶复合物;ADPG依赖性海藻糖合酶可能通过与特定的海藻糖-6-磷酸酶活性形成复合物来负责麦芽糖诱导的海藻糖积累,并且在这些条件下,海藻糖积累过程中ADPG合成被激活。

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