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定量蛋白质组学和动态成像显示,在受到 MNNG 诱导的 DNA 烷化作用后,G3BP 介导的应激颗粒组装是多聚(ADP-核糖)依赖性的。

Quantitative proteomics and dynamic imaging reveal that G3BP-mediated stress granule assembly is poly(ADP-ribose)-dependent following exposure to MNNG-induced DNA alkylation.

机构信息

Centre de recherche du CHUQ, Laval University, Cancer Department, Québec, Canada.

出版信息

J Cell Sci. 2012 Oct 1;125(Pt 19):4555-66. doi: 10.1242/jcs.106963. Epub 2012 Jul 5.

Abstract

Poly(ADP-ribose) (pADPr) is a heterogenic molecule synthesised from NAD by poly(ADP-ribose) polymerases (PARPs). Many cellular functions from genome integrity surveillance, cell cycle progression and DNA repair to apoptosis are affected by pADPr through its network of associated proteins. Using quantitative proteomics, we established a temporal map of pADPr-associated complexes upon genotoxic stress. Results suggested a strong pADPr association to many proteins involved in stress granule formation, notably the ras-GAP SH3-binding protein G3BP, as well as in the later phases of alkylation-stress-induced responses. Further investigation with dynamic imaging clearly demonstrated a pADPr-dependent initiation of stress granule assembly originating from the nucleus. The co-transfection of G3BP with poly(ADP-ribose) glycohydrolase (PARG) indicates that pADPr is involved in modulating the nuclear translocation of G3BP. Moreover, a peptide pADPr blot assay of G3BP revealed that pADPr binds to the glycine-arginine-rich domain of G3BP. Thereafter, we established a comprehensive G3BP interactome in the presence of pADPr. Our findings establish a novel function for pADPr in the formation of G3BP-induced stress granules upon genotoxic stress.

摘要

多聚(ADP-核糖)(pADPr)是一种由聚(ADP-核糖)聚合酶(PARPs)从 NAD 合成的异质分子。通过与相关蛋白的网络,pADPr 影响许多细胞功能,从基因组完整性监测、细胞周期进程和 DNA 修复到细胞凋亡。使用定量蛋白质组学,我们在遗传毒性应激时建立了 pADPr 相关复合物的时间图谱。结果表明,pADPr 与许多参与应激颗粒形成的蛋白质强烈相关,特别是 ras-GAP SH3 结合蛋白 G3BP,以及烷化应激诱导反应的后期阶段。通过动态成像的进一步研究清楚地表明,pADPr 依赖性应激颗粒组装起始于核内。用聚(ADP-核糖)糖水解酶(PARG)共转染 G3BP 表明,pADPr 参与调节 G3BP 的核易位。此外,用 pADPr 进行 G3BP 的肽 pADPr 印迹分析表明,pADPr 结合到 G3BP 的甘氨酸-精氨酸丰富结构域。此后,我们在存在 pADPr 的情况下建立了一个全面的 G3BP 相互作用组。我们的发现确立了 pADPr 在遗传毒性应激时形成 G3BP 诱导的应激颗粒中的新功能。

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