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Hyperphosphorylation of Msn2p and Msn4p in response to heat shock and the diauxic shift is inhibited by cAMP in Saccharomyces cerevisiae

机译:MSN2P和MSN4P响应热冲击的超磷酸化和杂志的蛋白酶蛋白群

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In response to various stresses, as well as during the diauxic transition, the Msn2p and Msn4p transcription factors of Saccharomyces cerevisiae are activated and induce a large set of genes. This activation is inhibited by the Ras/cAMP/PKA (cAMP-dependent protein kinase) pathway. Here we show by immunoblotting experiments that Msn2p and Msn4p are phosphorylated in vivo during growth on glucose, and become hyperphosphorylated at the diauxic transition and upon heat shock. This hyperphosphorylation is correlated with activation of Msn2/4p-dependent transcription. An increased level of cAMP prevents and reverses these hyperphosphorylations, indicating that kinases other than PKA are involved. These results suggest that PKA and stress-activated kinases control Msn2/4p activity by antagonistic phosphorylation. It was also noted that Msn4p is transiently increased at the diauxic transition. Msn2p and Msn4p present different hyperphosphorylation patterns in response to different stresses.
机译:响应于各种应力,以及在辅助转变期间,激活酿酒酵母的MSN2P和MSN4P转录因子并诱导大量基因。该活化由RAS / CAMP / PKA(CAMP依赖性蛋白激酶)途径抑制。在这里,我们通过免疫印迹实验表明,MSN2P和MSN4P在葡萄糖的生长期间在体内磷酸化,并在杂静脉转变和热冲击时变得高磷酸化。该高磷酸化与MSN2 / 4P依赖性转录的激活相关。营地水平升高并逆转这些高磷酸盐,表明涉及PKA以外的激酶。这些结果表明,PKA和应力激活的激酶通过拮抗磷酸化控制MSN2 / 4P活性。还有人注意到,MSN4P在辅助转变时瞬时增加。 MSN2P和MSN4P响应于不同的应力呈现不同的高磷酸化模式。

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