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热休克蛋白HSP70-1A和HSP90β的胞质传递监测血清素转运体的折叠轨迹。

A cytosolic relay of heat shock proteins HSP70-1A and HSP90β monitors the folding trajectory of the serotonin transporter.

作者信息

El-Kasaby Ali, Koban Florian, Sitte Harald H, Freissmuth Michael, Sucic Sonja

机构信息

From the Institute of Pharmacology, Center of Physiology and Pharmacology, Medical University of Vienna, A-1090 Vienna, Austria and the Department of Pharmacology, Faculty of Veterinary Medicine, Mansoura University, 35516 Mansoura, Egypt.

From the Institute of Pharmacology, Center of Physiology and Pharmacology, Medical University of Vienna, A-1090 Vienna, Austria and.

出版信息

J Biol Chem. 2014 Oct 17;289(42):28987-9000. doi: 10.1074/jbc.M114.595090. Epub 2014 Sep 8.

Abstract

Mutations in the C terminus of the serotonin transporter (SERT) disrupt folding and export from the endoplasmic reticulum. Here we examined the hypothesis that a cytosolic heat shock protein relay was recruited to the C terminus to assist folding of SERT. This conjecture was verified by the following observations. (i) The proximal portion of the SERT C terminus conforms to a canonical binding site for DnaK/heat shock protein of 70 kDa (HSP70). A peptide covering this segment stimulated ATPase activity of purified HSP70-1A. (ii) A GST fusion protein comprising the C terminus of SERT pulled down HSP70-1A. The interaction between HSP70-1A and SERT was visualized in live cells by Förster resonance energy transfer: it was restricted to endoplasmic reticulum-resident transporters and enhanced by an inhibitor that traps HSP70-1A in its closed state. (iv) Co-immunoprecipitation confirmed complex formation of SERT with HSP70-1A and HSP90β. Consistent with an HSP relay, co-chaperones (e.g. HSC70-HSP90-organizing protein) were co-immunoprecipitated with the stalled mutants SERT-R607A/I608A and SERT-P601A/G602A. (v) Depletion of HSP90β by siRNA or its inhibition increased the cell surface expression of wild type SERT and SERT-F604Q. In contrast, SERT-R607A/I608A and SERT-P601A/G602A were only rendered susceptible to inhibition of HSP70 and HSP90 by concomitant pharmacochaperoning with noribogaine. (vi) In JAR cells, inhibition of HSP90 also increased the levels of SERT, indicating that endogenously expressed transporter was also susceptible to control by HSP90β. These findings support the concept that the folding trajectory of SERT is sampled by a cytoplasmic chaperone relay.

摘要

血清素转运体(SERT)C末端的突变会破坏其折叠并阻止其从内质网输出。在此,我们检验了一种假说,即一种胞质热休克蛋白传递系统被招募至SERT的C末端以协助其折叠。以下观察结果证实了这一推测。(i)SERT C末端的近端部分符合70 kDa的DnaK/热休克蛋白(HSP70)的典型结合位点。覆盖该片段的肽可刺激纯化的HSP70-1A的ATP酶活性。(ii)包含SERT C末端的GST融合蛋白下拉了HSP70-1A。通过Förster共振能量转移在活细胞中观察到HSP70-1A与SERT之间的相互作用:这种相互作用仅限于内质网驻留转运体,并被一种将HSP70-1A捕获在其封闭状态的抑制剂增强。(iv)免疫共沉淀证实了SERT与HSP70-1A和HSP90β形成复合物。与热休克蛋白传递系统一致,共伴侣蛋白(如HSC70-HSP90组织蛋白)与停滞突变体SERT-R607A/I608A和SERT-P601A/G602A进行了免疫共沉淀。(v)通过小干扰RNA(siRNA)耗尽HSP90β或抑制HSP90β可增加野生型SERT和SERT-F604Q的细胞表面表达。相比之下,只有通过与去甲二氢愈创木酸进行联合药物伴侣疗法,SERT-R607A/I608A和SERT-P601A/G602A才会对HSP70和HSP90的抑制敏感。(vi)在JAR细胞中,抑制HSP90也会增加SERT的水平,这表明内源性表达的转运体也易受HSP90β的调控。这些发现支持了这样一种概念,即SERT的折叠轨迹由一种胞质伴侣蛋白传递系统进行采样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/166f/4200255/19b744784861/zbc0471499270001.jpg

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