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囊性纤维化跨膜电导调节因子降解:泛素化和 SUMO 化途径之间的串扰。

Cystic fibrosis transmembrane conductance regulator degradation: cross-talk between the ubiquitylation and SUMOylation pathways.

机构信息

Department of Cell Biology, University of Pittsburgh School of Medicine, PA 15224, USA.

出版信息

FEBS J. 2013 Sep;280(18):4430-8. doi: 10.1111/febs.12415. Epub 2013 Jul 22.

Abstract

Defining the significant checkpoints in cystic fibrosis transmembrane conductance regulator (CFTR) biogenesis should identify targets for therapeutic intervention with CFTR folding mutants such as F508del. Although the role of ubiquitylation and the ubiquitin proteasome system is well established in the degradation of this common CFTR mutant, the part played by SUMOylation is a novel aspect of CFTR biogenesis/quality control. We identified this post-translational modification of CFTR as resulting from its interaction with small heat shock proteins (Hsps), which were found to selectively facilitate the degradation of F508del through a physical interaction with the SUMO (small ubiquitin-like modifier) E2 enzyme, Ubc9. Hsp27 promoted the SUMOylation of mutant CFTR by the SUMO-2 paralogue, which can form poly-chains. Poly-SUMO chains are then recognized by the SUMO-targeted ubiquitin ligase, RNF4, which elicited F508del degradation in a Hsp27-dependent manner. This work identifies a sequential connection between the SUMO and ubiquitin modifications of the CFTR mutant: Hsp27-mediated SUMO-2 modification, followed by ubiquitylation via RNF4 and degradation of the mutant via the proteasome. Other examples of the intricate cross-talk between the SUMO and ubiquitin pathways are discussed with reference to other substrates; many of these are competitive and lead to different outcomes. It is reasonable to anticipate that further research on SUMO-ubiquitin pathway interactions will identify additional layers of complexity in the process of CFTR biogenesis and quality control.

摘要

确定囊性纤维化跨膜电导调节剂 (CFTR) 生物发生中的重要检查点应能确定针对 CFTR 折叠突变体(如 F508del)的治疗干预靶点。虽然泛素化和泛素蛋白酶体系统在降解这种常见的 CFTR 突变体中的作用已得到充分证实,但 SUMO 化的作用是 CFTR 生物发生/质量控制的一个新方面。我们发现 CFTR 的这种翻译后修饰是由于其与小热休克蛋白 (Hsp) 的相互作用所致,这些 Hsp 被发现通过与 SUMO(小泛素样修饰物)E2 酶 Ubc9 的物理相互作用,选择性地促进 F508del 的降解。Hsp27 通过 SUMO-2 同工型促进突变型 CFTR 的 SUMO 化,SUMO-2 同工型可以形成多链。多 SUMO 链随后被 SUMO 靶向泛素连接酶 RNF4 识别,RNF4 以 Hsp27 依赖性方式引发 F508del 降解。这项工作确定了 CFTR 突变体的 SUMO 和泛素修饰之间的顺序连接:Hsp27 介导的 SUMO-2 修饰,随后通过 RNF4 泛素化,以及通过蛋白酶体降解突变体。其他底物中 SUMO 和泛素途径之间错综复杂的相互作用的例子也进行了讨论;其中许多是竞争性的,导致不同的结果。有理由预期,进一步研究 SUMO-泛素途径相互作用将在 CFTR 生物发生和质量控制过程中确定更多的复杂性。

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