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芽殖酵母酿酒酵母中雷帕霉素靶蛋白(TOR)与II型肌球蛋白缺陷(myo1Δ)之间的功能和遗传相互作用。

Functional and genetic interactions of TOR in the budding yeast Saccharomyces cerevisiae with myosin type II-deficiency (myo1Δ).

作者信息

Pagán-Mercado Glorivee, Santiago-Cartagena Ednalise, Akamine Pearl, Rodríguez-Medina José R

机构信息

Department of Biochemistry, School of Medicine, Medical Sciences Campus, University of Puerto Rico, PO Box 365067, San Juan, PR 00936-5067, USA.

出版信息

BMC Cell Biol. 2012 May 30;13:13. doi: 10.1186/1471-2121-13-13.

Abstract

BACKGROUND

Yeast has numerous mechanisms to survive stress. Deletion of myosin type II (myo1Δ) in Saccharomyces cerevisiae results in a cell that has defective cytokinesis. To survive this genetically induced stress, this budding yeast up regulates the PKC1 cell wall integrity pathway (CWIP). More recently, our work indicated that TOR, another stress signaling pathway, was down regulated in myo1Δ strains. Since negative signaling by TOR is known to regulate PKC1, our objectives in this study were to understand the cross-talk between the TOR and PKC1 signaling pathways and to determine if they share upstream regulators for mounting the stress response in myo1Δ strains.

RESULTS

Here we proved that TORC1 signaling was down regulated in the myo1Δ strain. While a tor1Δ mutant strain had increased viability relative to myo1Δ, a combined myo1Δtor1Δ mutant strain showed significantly reduced cell viability. Synthetic rescue of the tor2-21(ts) lethal phenotype was observed in the myo1Δ strain in contrast to the chs2Δ strain, a chitin synthase II null mutant that also activates the PKC1 CWIP and exhibits cytokinesis defects very similar to myo1Δ, where the rescue effect was not observed. We observed two pools of Slt2p, the final Mitogen Activated Protein Kinase (MAPK) of the PKC1 CWIP; one pool that is up regulated by heat shock and one that is up regulated by the myo1Δ stress. The cell wall stress sensor WSC1 that activates PKC1 CWIP under other stress conditions was shown to act as a negative regulator of TORC1 in the myo1Δ mutant. Finally, the repression of TORC1 was inversely correlated with the activation of PKC1 in the myo1Δ strain.

CONCLUSIONS

Regulated expression of TOR1 was important in the activation of the PKC1 CWIP in a myo1Δ strain and hence its survival. We found evidence that the PKC1 and TORC1 pathways share a common upstream regulator associated with the cell wall stress sensor WSC1. Surprisingly, essential TORC2 functions were not required in the myo1Δ strain. By understanding how yeast mounts a concerted stress response, one can further design pharmacological cocktails to undermine their ability to adapt and to survive.

摘要

背景

酵母有多种机制来应对压力。酿酒酵母中II型肌球蛋白(myo1Δ)的缺失会导致细胞胞质分裂出现缺陷。为了在这种遗传诱导的压力下存活,这种出芽酵母会上调PKC1细胞壁完整性途径(CWIP)。最近,我们的研究表明,另一种应激信号通路TOR在myo1Δ菌株中被下调。由于已知TOR的负信号调节PKC1,因此我们在本研究中的目标是了解TOR和PKC1信号通路之间的相互作用,并确定它们是否共享上游调节因子以在myo1Δ菌株中引发应激反应。

结果

在这里我们证明了TORC1信号在myo1Δ菌株中被下调。虽然tor1Δ突变菌株相对于myo1Δ具有更高的活力,但myo1Δtor1Δ双突变菌株的细胞活力显著降低。与chs2Δ菌株相反,在myo1Δ菌株中观察到tor2 - 21(ts)致死表型的合成拯救,chs2Δ菌株是一种几丁质合酶II缺失突变体,它也激活PKC1 CWIP并表现出与myo1Δ非常相似的胞质分裂缺陷,在chs2Δ菌株中未观察到拯救效果。我们观察到PKC1 CWIP的最终促分裂原活化蛋白激酶(MAPK)Slt2p有两个池;一个池受热休克上调,另一个池受myo1Δ应激上调。在其他应激条件下激活PKC1 CWIP的细胞壁应激传感器WSC1在myo1Δ突变体中被证明是TORC1的负调节因子。最后,在myo1Δ菌株中,TORC1的抑制与PKC1的激活呈负相关。

结论

TOR1的调控表达对于激活myo1Δ菌株中的PKC1 CWIP及其存活很重要。我们发现证据表明PKC1和TORC1途径共享一个与细胞壁应激传感器WSC1相关的共同上游调节因子。令人惊讶的是,myo1Δ菌株中不需要TORC2的基本功能。通过了解酵母如何引发协同应激反应,人们可以进一步设计药物组合来破坏它们的适应和存活能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c802/3470973/e75889ec521e/1471-2121-13-13-1.jpg

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