Jiangsu Province Key Laboratory for Molecular and Medical Biotechnology, College of Life Science, Nanjing Normal University, Nanjing, Jiangsu, PR China.
Jiangsu Province Key Laboratory for Molecular and Medical Biotechnology, College of Life Science, Nanjing Normal University, Nanjing, Jiangsu, PR China.
Cell Signal. 2014 Mar;26(3):594-602. doi: 10.1016/j.cellsig.2013.11.033. Epub 2013 Dec 2.
Heat shock protein 27 (HSP27) regulates critical cellular functions such as development, differentiation, cell growth and apoptosis. A variety of stimuli induce the phosphorylation of HSP27, which affects its cellular functions. However, most previous studies focused on the role of HSP27 protein itself in apoptosis, the particular role of its phosphorylation state in signaling transduction remains largely unclear. In the present study, we reported that HSP27 phosphorylation modulated TRAIL-triggered pro-survival signaling transduction. In HeLa cells, suppression of HSP27 phosphorylation by specific inhibitor KRIBB3 or MAPKAPK2 (MK2) knockdown and by overexpression of non-phosphorylatable HSP27(3A) mutant demonstrated that hindered HSP27 phosphorylation enhanced the TRAIL-induced apoptosis. In addition, reduced HSP27 phosphorylation by KRIBB3 treatment or MK2 knockdown attenuated the TRAIL-induced activation of Akt and ERK survival signaling through suppressing the phosphorylation of Src. By overexpression of HSP27(15A) or HSP27(78/82A) phosphorylation mutant, we further showed that phosphorylation of HSP27 at serine 78/82 residues was essential to TRAIL-triggered Src-Akt/ERK signaling transduction. Co-immunoprecipitation and confocal microscopy showed that HSP27 interacted with Src and scaffolding protein β-arrestin2 in response of TRAIL stimulation and suppression of HSP27 phosphorylation apparently disrupted the TRAIL-induced interaction of HSP27 and Src or interaction of HSP27 and β-arrestin2. We further demonstrated that β-arrestin2 mediated HSP27 action on TRAIL-induced Src activation, which was achieved by recruiting signaling complex of HSP27/β-arrestin2/Src in response to TRAIL. Taken together, our study revealed that HSP27 phosphorylation modulates TRAIL-triggered activation of Src-Akt/ERK pro-survival signaling via interacting with β-arrestin2 in HeLa cells.
热休克蛋白 27(HSP27)调节关键的细胞功能,如发育、分化、细胞生长和细胞凋亡。各种刺激诱导 HSP27 的磷酸化,从而影响其细胞功能。然而,大多数先前的研究集中在 HSP27 蛋白本身在细胞凋亡中的作用,其磷酸化状态在信号转导中的特定作用在很大程度上仍不清楚。在本研究中,我们报道 HSP27 磷酸化调节 TRAIL 触发的促生存信号转导。在 HeLa 细胞中,通过特异性抑制剂 KRIBB3 或 MAPKAPK2(MK2)敲低抑制 HSP27 磷酸化,以及过表达非磷酸化 HSP27(3A)突变体,证明抑制 HSP27 磷酸化增强了 TRAIL 诱导的细胞凋亡。此外,通过 KRIBB3 处理或 MK2 敲低减少 HSP27 磷酸化,通过抑制Src 的磷酸化,减弱了 TRAIL 诱导的 Akt 和 ERK 生存信号的激活。通过 HSP27(15A)或 HSP27(78/82A)磷酸化突变体的过表达,我们进一步表明 HSP27 丝氨酸 78/82 残基的磷酸化对于 TRAIL 触发的 Src-Akt/ERK 信号转导是必需的。共免疫沉淀和共聚焦显微镜显示,HSP27 与 Src 和支架蛋白β-arrestin2 相互作用,响应 TRAIL 刺激,抑制 HSP27 磷酸化明显破坏了 TRAIL 诱导的 HSP27 和 Src 或 HSP27 和β-arrestin2 之间的相互作用。我们进一步证明,β-arrestin2 通过募集 HSP27/β-arrestin2/Src 信号复合物,介导 HSP27 在 TRAIL 诱导的 Src 激活中的作用,从而实现 TRAIL 诱导的 Src 激活。总之,我们的研究表明,在 HeLa 细胞中,HSP27 磷酸化通过与β-arrestin2 相互作用,调节 TRAIL 触发的 Src-Akt/ERK 促生存信号的激活。