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首页> 外文期刊>Molecular Microbiology >Inorganic phosphate is sensed by specific phosphate carriers and acts in concert with glucose as a nutrient signal for activation of the protein kinase A pathway in the yeast Saccharomyces cerevisiae.
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Inorganic phosphate is sensed by specific phosphate carriers and acts in concert with glucose as a nutrient signal for activation of the protein kinase A pathway in the yeast Saccharomyces cerevisiae.

机译:无机磷酸盐由特定的磷酸盐载体感知,并与葡萄糖协同作用,作为营养信号,激活了酿酒酵母中的蛋白激酶A途径。

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Yeast cells starved for inorganic phosphate on a glucose-containing medium arrest growth and enter the resting phase G0. We show that re-addition of phosphate rapidly affects well known protein kinase A targets: trehalase activation, trehalose mobilization, loss of heat resistance, repression of STRE-controlled genes and induction of ribosomal protein genes. Phosphate-induced activation of trehalase is independent of protein synthesis and of an increase in ATP. It is dependent on the presence of glucose, which can be detected independently by the G-protein coupled receptor Gpr1 and by the glucose-phosphorylation dependent system. Addition of phosphate does not trigger a cAMP signal. Despite this, lowering of protein kinase A activity by mutations in the TPK genes strongly reduces trehalase activation. Inactivation of phosphate transport by deletion of PHO84 abolishes phosphate signalling at standard concentrations, arguing against the existence of a transport-independent receptor. The non-metabolizablephosphate analogue arsenate also triggered signalling. Constitutive expression of the Pho84, Pho87, Pho89, Pho90 and Pho91 phosphate carriers indicated pronounced differences in their transport and signalling capacities in phosphate-starved cells. Pho90 and Pho91 sustained highest phosphate transport but did not sustain trehalase activation. Pho84 sustained both transport and rapid signalling, whereas Pho87 was poor in transport but positive for signalling. Pho89 displayed very low phosphate transport and was negative for signalling. Although the results confirmed that rapid signalling is independent of growth recovery, long-term mobilization of trehalose was much better correlated with growth recovery than with trehalase activation. These results demonstrate that phosphate acts as a nutrient signal for activation of the protein kinase A pathway in yeast in a glucose-dependent way and they indicate that the Pho84 and Pho87 carriers act as specific phosphate sensors for rapid phosphate signalling.
机译:酵母细胞在含葡萄糖的培养基上因无机磷酸盐缺乏而饥饿,阻止其生长并进入静止期G0。我们表明磷酸盐的重新添加迅速影响众所周知的蛋白激酶A目标:海藻糖酶激活,海藻糖动员,耐热性丧失,STRE控制基因的抑制和核糖体蛋白基因的诱导。磷酸盐诱导的海藻糖酶活化与蛋白质合成和ATP增加无关。它取决于葡萄糖的存在,葡萄糖的存在可以由G蛋白偶联受体Gpr1和葡萄糖磷酸化依赖性系统独立检测。磷酸盐的添加不会触发cAMP信号。尽管如此,由于TPK基因突变引起的蛋白激酶A活性降低,仍大大降低了海藻糖酶的活化。通过删除PHO84来使磷酸盐转运失活,从而消除了标准浓度下的磷酸盐信号传导,这是与转运无关受体的存在有关的。不可代谢的磷酸盐类似物砷酸盐也触发信号。 Pho84,Pho87,Pho89,Pho90和Pho91磷酸盐载体的组成型表达表明它们在磷酸盐缺乏的细胞中的转运和信号传递能力存在明显差异。 Pho90和Pho91维持最高的磷酸盐转运,但不维持海藻糖酶活化。 Pho84既能维持转运又能快速发出信号,而Pho87的转运能力较差,但信号阳性。 Pho89的磷酸盐转运极低,对信号呈阴性。尽管结果证实了快速信号传导与生长恢复无关,但海藻糖的长期动员与生长恢复的相关性要比海藻糖酶的激活好得多。这些结果表明磷酸盐以葡萄糖依赖性方式作为激活酵母中蛋白激酶A途径的营养信号,并且表明Pho84和Pho87载体充当快速磷酸盐信号转导的特定磷酸盐传感器。

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