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大肠杆菌小分子热休克蛋白 IbpA 是一种聚集传感器,可在转录后水平自我调节自身表达。

Escherichia coli small heat shock protein IbpA is an aggregation-sensor that self-regulates its own expression at posttranscriptional levels.

机构信息

School of Life Science and Technology, Tokyo Institute of Technology, Yokohama, Japan.

Cell Biology Center, Institute of Innovative Research, Tokyo Institute of Technology, Yokohama, Japan.

出版信息

Mol Microbiol. 2021 Jan;115(1):142-156. doi: 10.1111/mmi.14606. Epub 2020 Oct 14.

Abstract

Aggregation is an inherent characteristic of proteins. Risk management strategies to reduce aggregation are critical for cells to survive upon stresses that induce aggregation. Cells cope with protein aggregation by utilizing a variety of chaperones, as exemplified by heat-shock proteins (Hsps). The heat stress-induced expression of IbpA and IbpB, small Hsps in Escherichia coli, is regulated by the σ heat-shock transcriptional regulator and the temperature-dependent translational regulation via mRNA heat fluctuation. We found that, even without heat stress, either the expression of aggregation-prone proteins or the ibpA gene deletion profoundly increases the expression of IbpA. Combined with other evidence, we propose novel mechanisms for the regulation of the small Hsps expression. Oligomeric IbpA self-represses the ibpA/ibpB translation, and mediates its own mRNA degradation, but the self-repression is relieved by sequestration of IbpA into the protein aggregates. Thus, the function of IbpA as a chaperone to form co-aggregates is harnessed as an aggregation sensor to tightly regulate the IbpA level. Since the excessive preemptive supply of IbpA in advance of stress is harmful, the prodigious and rapid expression of IbpA/IbpB on demand is necessary for IbpA to function as a first line of defense against acute protein aggregation.

摘要

聚集是蛋白质的固有特性。在压力诱导聚集的情况下,为了使细胞能够存活,减少聚集的风险管理策略至关重要。细胞通过利用各种伴侣蛋白来应对蛋白质聚集,热休克蛋白(Hsps)就是一个例子。在大肠杆菌中,小 HSPs IbpA 和 IbpB 的热应激诱导表达受σ热休克转录调节剂和通过 mRNA 热波动的温度依赖性翻译调节控制。我们发现,即使没有热应激,聚集倾向蛋白的表达或 ibpA 基因缺失都会显著增加 IbpA 的表达。结合其他证据,我们提出了小 HSPs 表达调控的新机制。寡聚 IbpA 自我抑制 ibpA/ibpB 翻译,并介导自身 mRNA 降解,但 IbpA 被隔离到蛋白质聚集体中会解除自我抑制。因此,IbpA 作为形成共聚集的伴侣的功能被用作聚集传感器,以紧密调节 IbpA 水平。由于在应激前预先过量提供 IbpA 是有害的,因此 IbpA/IbpB 的大量快速按需表达对于 IbpA 作为急性蛋白质聚集的第一道防线发挥作用是必要的。

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