由 PKG 依赖蛋白酶体降解 Hsp90 客户蛋白磷酸二酯酶 3A 介导的环状核苷酸串联的新机制

IF 4 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Journal of Biological Chemistry Pub Date : 2024-10-01 Epub Date: 2024-08-28 DOI:10.1016/j.jbc.2024.107723
Evgeny A Zemskov, Marina A Zemskova, Xiaomin Wu, Santiago Moreno Caceres, David Caraballo Delgado, Manivannan Yegambaram, Qing Lu, Panfeng Fu, Ting Wang, Stephen M Black
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引用次数: 0

摘要

内皮细胞 cAMP 特异性磷酸二酯酶 PDE3A 是急性肺损伤(ALI)模型中内皮屏障功能的主要负调控因子之一。然而,其调控机制仍有待全面研究。我们在此发现,PDE3A 是分子伴侣 hsp90 的一个新客户。在内皮细胞(EC)中,格尔德霉素(GA)对 hsp90 的抑制导致 hsp90/PDE3A 复合物的破坏,随后 PDE3A 蛋白水平显著下降。PDE3A 蛋白水平的下降依赖于泛素蛋白酶体,并且需要 E3 泛素连接酶 Hsc70 交互蛋白(CHIP)C-末端的活性。GA 处理还增强了 PDE3A 与 hsp70 的结合,从而部分阻止了 PDE3A 的降解。GA 诱导的 PDE3A 蛋白水平下降与 EC 中 PDE3 活性下降和 cAMP 水平升高相关。我们还证明,PKG 依赖性磷酸化 PDE3A 的 Ser654 位点可发出信号,使 PDE3A 与 hsp90 分离并降解 PDE3A。8-Br-cGMP- 或 8-CPT-cGMP- 和 Bay 41-8543 刺激的 EC 中内源性 PDE3A 磷酸化和降解以及瞬时转染 HEK293 细胞中野生型和磷酸化模拟 S654D 突变体 PDE3A 蛋白稳定性的比较证实了这一点。总之,我们发现了一种由泛素-蛋白酶体系统介导的 PDE3A 调节新机制。此外,PDE3A 的降解是由 S654 的磷酸化和与 hsp90 的相互作用控制的。我们推测,靶向 PDE3A/hsp90 复合物可能是 ALI 的一种治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel mechanism of cyclic nucleotide crosstalk mediated by PKG-dependent proteasomal degradation of the Hsp90 client protein phosphodiesterase 3A.

Endothelial cAMP-specific phosphodiesterase PDE3A is one of the major negative regulators of the endothelial barrier function in acute lung injury models. However, the mechanisms underlying its regulation still need to be fully resolved. We show here that the PDE3A is a newly described client of the molecular chaperone heat shock protein 90 (hsp90). In endothelial cells (ECs), hsp90 inhibition by geldanamycin (GA) led to a disruption of the hsp90/PDE3A complex, followed by a significant decrease in PDE3A protein levels. The decrease in PDE3A protein levels was ubiquitin-proteasome-dependent and required the activity of the E3 ubiquitin ligase C terminus of Hsc70-interacting protein. GA treatment also enhanced the association of PDE3A with hsp70, which partially prevented PDE3A degradation. GA-induced decreases in PDE3A protein levels correlated with decreased PDE3 activity and increased cAMP levels in EC. We also demonstrated that protein kinase G-dependent phosphorylation of PDE3A at Ser654 can signal the dissociation of PDE3A from hsp90 and PDE3A degradation. This was confirmed by endogenous PDE3A phosphorylation and degradation in 8-Br-cGMP- or 8-CPT-cGMP- and Bay 41-8543-stimulated EC and comparisons of WT- and phospho-mimic S654D mutant PDE3A protein stability in transiently transfected HEK293 cells. In conclusion, we have identified a new mechanism of PDE3A regulation mediated by the ubiquitin-proteasome system. Further, the degradation of PDE3A is controlled by the phosphorylation of S654 and the interaction with hsp90. We speculate that targeting the PDE3A/hsp90 complex could be a therapeutic approach for acute lung injury.

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来源期刊
Journal of Biological Chemistry
Journal of Biological Chemistry Biochemistry, Genetics and Molecular Biology-Biochemistry
自引率
4.20%
发文量
1233
期刊介绍: The Journal of Biological Chemistry welcomes high-quality science that seeks to elucidate the molecular and cellular basis of biological processes. Papers published in JBC can therefore fall under the umbrellas of not only biological chemistry, chemical biology, or biochemistry, but also allied disciplines such as biophysics, systems biology, RNA biology, immunology, microbiology, neurobiology, epigenetics, computational biology, ’omics, and many more. The outcome of our focus on papers that contribute novel and important mechanistic insights, rather than on a particular topic area, is that JBC is truly a melting pot for scientists across disciplines. In addition, JBC welcomes papers that describe methods that will help scientists push their biochemical inquiries forward and resources that will be of use to the research community.
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