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热休克蛋白 72 抑制肾上皮-间充质转化过程中 Smad3 的激活和核转位。

HSP72 inhibits Smad3 activation and nuclear translocation in renal epithelial-to-mesenchymal transition.

机构信息

Department of Nephrology, First Affiliated Hospital, Sun Yat-Sen University, Guangzhou, China, 510080.

出版信息

J Am Soc Nephrol. 2010 Apr;21(4):598-609. doi: 10.1681/ASN.2009050552. Epub 2010 Feb 4.

Abstract

Although heat shock protein 72 (HSP72) ameliorates renal tubulointerstitial fibrosis by inhibiting epithelial-to-mesenchymal transition (EMT), the underlying mechanism is unknown. Because Smad proteins transduce TGF-beta signaling from the cytosol to the nucleus and HSP72 assists in protein folding and facilitates nuclear translocation, we investigated whether HSP72 inhibits TGF-beta-induced EMT by modulating Smad expression, activation, and nuclear translocation. To evaluate the roles of distinct HSP72 structural domains in these processes, we constructed vectors that expressed wild-type HSP72 or mutants lacking either the peptide-binding domain (HSP72-DeltaPBD), which is responsible for substrate binding and refolding, or the nuclear localization signal (HSP72-DeltaNLS). Overexpression of wild-type HSP72 or HSP72-DeltaNLS inhibited TGF-beta1-induced EMT, but HSP72-DeltaPBD did not, suggesting a critical role for the PBD in this inhibition. HSP72 overexpression inhibited TGF-beta1-induced phosphorylation and nuclear translocation of Smad3 and p-Smad3, but not Smad2; these inhibitory effects required the PBD but not the NLS. Coimmunoprecipitation assays suggested a physical interaction between Smad3 and the PBD. siRNA knockdown of endogenous HSP72 enhanced both TGF-beta1-induced Smad3 phosphorylation and EMT and confirmed the interaction of HSP72 with both Smad3 and p-Smad3. In vivo, induction of HSP72 by geranylgeranylacetone suppressed Smad3 phosphorylation in renal tubular cells after unilateral ureteral obstruction. In conclusion, HSP72 inhibits EMT in renal epithelial cells primarily by exerting domain-specific effects on Smad3 activation and nuclear translocation.

摘要

虽然热休克蛋白 72(HSP72)通过抑制上皮-间充质转化(EMT)来改善肾间质纤维化,但具体机制尚不清楚。由于 Smad 蛋白将 TGF-β信号从细胞质转导到细胞核,而 HSP72 有助于蛋白质折叠并促进核易位,因此我们研究了 HSP72 是否通过调节 Smad 表达、激活和核易位来抑制 TGF-β诱导的 EMT。为了评估不同 HSP72 结构域在这些过程中的作用,我们构建了表达野生型 HSP72 或缺失肽结合域(负责底物结合和重折叠的 HSP72-DeltaPBD)或核定位信号(HSP72-DeltaNLS)的突变体的载体。野生型 HSP72 或 HSP72-DeltaNLS 的过表达抑制 TGF-β1 诱导的 EMT,但 HSP72-DeltaPBD 没有,表明 PBD 在这种抑制中起关键作用。HSP72 的过表达抑制 TGF-β1 诱导的 Smad3 磷酸化和核易位,但不抑制 Smad2;这些抑制作用需要 PBD 但不需要 NLS。共免疫沉淀实验表明 Smad3 与 PBD 之间存在物理相互作用。内源性 HSP72 的 siRNA 敲低增强了 TGF-β1 诱导的 Smad3 磷酸化和 EMT,并证实了 HSP72 与 Smad3 和 p-Smad3 的相互作用。在体内,用香叶基香叶基丙酮诱导 HSP72 的表达抑制了单侧输尿管梗阻后肾小管细胞中 Smad3 的磷酸化。总之,HSP72 通过对 Smad3 激活和核易位发挥特定的作用来抑制肾小管上皮细胞中的 EMT。

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