sumo化在酵母的正常生长中是必不可少的,但它促进了酵母的耐热性。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2023-01-01 DOI:10.1080/10985549.2023.2166320
Marjan Moallem, Akhi Akhter, Giovanni L Burke, John Babu, Benjamin G Bergey, J Bryan McNeil, Mohammad S Baig, Emanuel Rosonina
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引用次数: 1

摘要

许多蛋白质在正常生长的酵母中被同化,SUMO偶联水平在暴露于几种应激条件下会上升。我们观察到高水平的sumo化也在早期指数生长和当营养丰富的培养基使用。然而,我们发现sumoylation降低(比正常情况低75%)的耐受性非常好,在非胁迫条件下或在渗透、氧化或乙醇胁迫下没有明显的生长缺陷。相比之下,唯一的SUMO偶联酶Ubc9活性降低的菌株对温度敏感,特别是在热应激反应中暗示了SUMO化。与此相一致的是,轻微的热休克会引发summoylation的增加,这需要Ubc9的功能水平,但也可能取决于去summoylation的减少,因为热休克会降低主要的SUMO蛋白酶Ulp1的蛋白水平。此外,我们发现只有正常sumoylation水平的~ 5%的ubc9突变株表现出适度的生长缺陷,RNA聚合酶II (RNAPII)的基因组分布异常,并且在热休克后RNAPII的再分布大大扩大。综上所述,我们的数据表明,SUMO偶联在正常条件下基本上是可以忽略的,但当温度升高时,维持转录控制、调节RNAPII的再分配和促进存活需要一个阈值水平的Ubc9活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Sumoylation is Largely Dispensable for Normal Growth but Facilitates Heat Tolerance in Yeast.

Numerous proteins are sumoylated in normally growing yeast and SUMO conjugation levels rise upon exposure to several stress conditions. We observe high levels of sumoylation also during early exponential growth and when nutrient-rich medium is used. However, we find that reduced sumoylation (∼75% less than normal) is remarkably well-tolerated, with no apparent growth defects under nonstress conditions or under osmotic, oxidative, or ethanol stresses. In contrast, strains with reduced activity of Ubc9, the sole SUMO conjugase, are temperature-sensitive, implicating sumoylation in the heat stress response, specifically. Aligned with this, a mild heat shock triggers increased sumoylation which requires functional levels of Ubc9, but likely also depends on decreased desumoylation, since heat shock reduces protein levels of Ulp1, the major SUMO protease. Furthermore, we find that a ubc9 mutant strain with only ∼5% of normal sumoylation levels shows a modest growth defect, has abnormal genomic distribution of RNA polymerase II (RNAPII), and displays a greatly expanded redistribution of RNAPII after heat shock. Together, our data implies that SUMO conjugations are largely dispensable under normal conditions, but a threshold level of Ubc9 activity is needed to maintain transcriptional control and to modulate the redistribution of RNAPII and promote survival when temperatures rise.

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