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裂殖酵母细胞完整性 MAPK 途径在应对葡萄糖限制中的作用。

Role of the fission yeast cell integrity MAPK pathway in response to glucose limitation.

机构信息

Yeast Physiology Group, Department of Genetics and Microbiology, Facultad de Biología, Universidad de Murcia, 30071 Murcia, Spain.

出版信息

BMC Microbiol. 2013 Feb 11;13:34. doi: 10.1186/1471-2180-13-34.

Abstract

BACKGROUND

Glucose is a signaling molecule which regulates multiple events in eukaryotic organisms and the most preferred carbon source in the fission yeast Schizosaccharomyces pombe. The ability of this yeast to grow in the absence of glucose becomes strongly limited due to lack of enzymes of the glyoxylate cycle that support diauxic growth. The stress-activated protein kinase (SAPK) pathway and its effectors, Sty1 MAPK and transcription factor Atf1, play a critical role in the adaptation of fission yeast to grow on alternative non-fermentable carbon sources by inducing the expression of fbp1+ gene, coding for the gluconeogenic enzyme fructose-1,6-bisphosphatase. The cell integrity Pmk1 pathway is another MAPK cascade that regulates various processes in fission yeast, including cell wall construction, cytokinesis, and ionic homeostasis. Pmk1 pathway also becomes strongly activated in response to glucose deprivation but its role during glucose exhaustion and ensuing adaptation to respiratory metabolism is currently unknown.

RESULTS

We found that Pmk1 activation in the absence of glucose takes place only after complete depletion of this carbon source and that such activation is not related to an endogenous oxidative stress. Notably, Pmk1 MAPK activation relies on de novo protein synthesis, is independent on known upstream activators of the pathway like Rho2 GTPase, and involves PKC ortholog Pck2. Also, the Glucose/cAMP pathway is required operative for full activation of the Pmk1 signaling cascade. Mutants lacking Pmk1 displayed a partial growth defect in respiratory media which was not observed in the presence of glucose. This phenotype was accompanied by a decreased and delayed expression of transcription factor Atf1 and target genes fbp1+ and pyp2+. Intriguingly, the kinetics of Sty1 activation in Pmk1-less cells was clearly altered during growth adaptation to non-fermentable carbon sources.

CONCLUSIONS

Unknown upstream elements mediate Pck2-dependent signal transduction of glucose withdrawal to the cell integrity MAPK pathway. This signaling cascade reinforces the adaptive response of fission yeast to such nutritional stress by enhancing the activity of the SAPK pathway.

摘要

背景

葡萄糖是一种信号分子,调节真核生物中的多种事件,是裂殖酵母 Schizosaccharomyces pombe 中最优选的碳源。由于缺乏支持双相生长的乙醛酸循环酶,这种酵母在没有葡萄糖的情况下生长的能力受到严重限制。应激激活蛋白激酶 (SAPK) 途径及其效应物 Sty1 MAPK 和转录因子 Atf1 在裂殖酵母适应替代非发酵碳源生长中起着至关重要的作用,通过诱导编码糖异生酶果糖-1,6-二磷酸酶的 fbp1+基因的表达。细胞完整性 Pmk1 途径是另一种 MAPK 级联,调节裂殖酵母中的各种过程,包括细胞壁构建、胞质分裂和离子动态平衡。Pmk1 途径在响应葡萄糖剥夺时也会强烈激活,但它在葡萄糖耗尽和随后适应呼吸代谢中的作用目前尚不清楚。

结果

我们发现,在没有葡萄糖的情况下,Pmk1 的激活仅在这种碳源完全耗尽后发生,并且这种激活与内源性氧化应激无关。值得注意的是,Pmk1 MAPK 的激活依赖于从头蛋白质合成,不依赖于 Rho2 GTPase 等已知的途径上游激活物,并且涉及 PKC 同源物 Pck2。此外,葡萄糖/cAMP 途径对于 Pmk1 信号级联的完全激活是必需的。缺乏 Pmk1 的突变体在呼吸培养基中表现出部分生长缺陷,但在有葡萄糖的情况下则没有观察到这种现象。这种表型伴随着转录因子 Atf1 和靶基因 fbp1+和 pyp2+的表达减少和延迟。有趣的是,在适应非发酵碳源的生长过程中,Pmk1 缺失细胞中 Sty1 的激活动力学明显改变。

结论

未知的上游元件介导葡萄糖耗尽到细胞完整性 MAPK 途径的 Pck2 依赖性信号转导。这种信号级联通过增强 SAPK 途径的活性来增强裂殖酵母对这种营养胁迫的适应性反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4d2/3572419/a7703de5f7fd/1471-2180-13-34-1.jpg

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