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Proteasome activity profiling uncovers alteration of catalytic β2 and β5 subunits of the stress-induced proteasome during salinity stress in tomato roots

机译:蛋白酶活性分析揭示了番茄盐分胁迫过程中应激诱导的蛋白酶体催化β2和β5亚基的变化

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摘要

The stress proteasome in the animal kingdom facilitates faster conversion of oxidized proteins during stress conditions by incorporating different catalytic β subunits. Plants deal with similar kind of stresses and also carry multiple paralogous genes encoding for each of the three catalytic b subunits. Here, we investigated the existence of stress proteasomes upon abiotic stress (salt stress) in tomato roots. In contrast to Arabidopsis thaliana, tomato has a simplified proteasome gene set with single genes encoding each β subunit except for two genes encoding b2. Using proteasome activity profiling on tomato roots during salt stress, we discovered a transient modification of the catalytic subunits of the proteasome coinciding with a loss of cell viability. This stress-induced active proteasome disappears at later time points and coincides with the need to degrade oxidized proteins during salt stress. Subunit-selective proteasome probes and MS analysis of fluorescent 2D gels demonstrated that the detected stress-induced proteasome is not caused by an altered composition of subunits in active proteasomes, but involves an increased molecular weight of both labeled b2 and b5 subunits, and an additional acidic pI shift for labeled b5, whilst labeled b1 remains mostly unchanged. Treatment with phosphatase or glycosidases did not affect the migration pattern. This stress-induced proteasome may play an important role in PCD during abiotic stress.
机译:动物界中的应激蛋白酶体通过并入不同的催化性β亚基,促进了应激条件下氧化蛋白质的更快转化。植物处理类似的胁迫,并且还携带多个旁系同源基因,它们编码三个催化性b亚基的每一个。在这里,我们调查了番茄根部非生物胁迫(盐胁迫)下应激蛋白酶体的存在。与拟南芥相反,番茄具有简化的蛋白酶体基因集,其中除了两个编码b2的基因外,还编码单个β亚基的单个基因。使用盐胁迫期间番茄根上的蛋白酶体活性分析,我们发现了蛋白酶体催化亚基的瞬时修饰,与细胞活力的丧失相吻合。这种应激诱导的活性蛋白酶体在稍后的时间点消失,并且与盐胁迫期间降解氧化蛋白质的需求相吻合。亚基选择性蛋白酶体探针和荧光2D凝胶的MS分析表明,检测到的应激诱导的蛋白酶体不是由活性蛋白酶体中亚基组成的改变引起的,而是涉及标记的b2和b5亚基的分子量增加,以及另外的标记的b5的酸性pI移位,而标记的b1大部分保持不变。用磷酸酶或糖苷酶处理不影响迁移模式。在非生物胁迫期间,这种胁迫诱导的蛋白酶体可能在PCD中起重要作用。

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