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Chaperone Hsp27 a Novel Subunit of AUF1 Protein Complexes Functions in AU-Rich Element-Mediated mRNA Decay

机译:伴侣Hsp27一种新型的AUF1蛋白复合物亚基在富AU元素介导的mRNA衰变中起作用

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摘要

Controlled, transient cytokine production by monocytes depends heavily upon rapid mRNA degradation, conferred by 3′ untranslated region-localized AU-rich elements (AREs) that associate with RNA-binding proteins. The ARE-binding protein AUF1 forms a complex with cap-dependent translation initiation factors and heat shock proteins to attract the mRNA degradation machinery. We refer to this protein assembly as the AUF1- and signal transduction-regulated complex, ASTRC. Rapid degradation of ARE-bearing mRNAs (ARE-mRNAs) requires ubiquitination of AUF1 and its destruction by proteasomes. Activation of monocytes by adhesion to capillary endothelium at sites of tissue damage and subsequent proinflammatory cytokine induction are prominent features of inflammation, and ARE-mRNA stabilization plays a critical role in the induction process. Here, we demonstrate activation-induced subunit rearrangements within ASTRC and identify chaperone Hsp27 as a novel subunit that is itself an ARE-binding protein essential for rapid ARE-mRNA degradation. As Hsp27 has well-characterized roles in protein ubiquitination as well as in adhesion-induced cytoskeletal remodeling and cell motility, its association with ASTRC may provide a sensing mechanism to couple proinflammatory cytokine induction with monocyte adhesion and motility.
机译:单核细胞控制的瞬时细胞因子的产生在很大程度上取决于快速的mRNA降解,这是由与RNA结合蛋白缔合的3'非翻译区域定位的富含AU的元件(ARE)赋予的。 ARE结合蛋白AUF1与Cap依赖性翻译起始因子和热激蛋白形成复合物,以吸引mRNA降解机制。我们将这种蛋白质组装称为AUF1和信号转导调节复合物ASTRC。带有ARE的mRNA(ARE-mRNA)的快速降解需要AUF1泛素化并被蛋白酶体破坏。在组织损伤部位通过粘附到毛细血管内皮而激活单核细胞以及随后的促炎性细胞因子诱导是炎症的突出特征,而ARE-mRNA的稳定化在诱导过程中起着关键作用。在这里,我们证明了ASTRC内激活诱导的亚基重排,并将伴侣Hsp27鉴定为一种新颖的亚基,它本身是快速ARE-mRNA降解必不可少的ARE结合蛋白。由于Hsp27在蛋白质泛素化以及粘附诱导的细胞骨架重塑和细胞运动中具有充分表征的作用,因此它与ASTRC的结合可能提供将促炎细胞因子诱导与单核细胞粘附和运动耦合的传感机制。

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