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4-羟基-2-壬烯醛对热休克蛋白72介导的蛋白质重折叠的抑制作用。

Inhibition of Hsp72-mediated protein refolding by 4-hydroxy-2-nonenal.

作者信息

Carbone David L, Doorn Jonathan A, Kiebler Zachary, Sampey Brante P, Petersen Dennis R

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, The University of Colorado Health Sciences Center, Denver, Colorado 80262, USA.

出版信息

Chem Res Toxicol. 2004 Nov;17(11):1459-67. doi: 10.1021/tx049838g.

Abstract

A proteomic approach was applied to liver cytosol from rats fed a diet consisting of high fat and ethanol to identify 4-hydroxy-2-nonenal (4-HNE)-modified proteins in vivo. Cytosolic Hsp72, the inducible variant of the Hsp70 heat shock protein family, was consistently among the proteins modified by 4-HNE. Despite 1.3-fold induction of Hsp72 in the livers of ethanol-fed animals, no increase in Hsp70-mediated luciferase refolding in isolated heptocytes was observed, suggesting inhibition of this process by 4-HNE. A 50% and 75% reduction in luciferase refolding efficiency was observed in rabbit reticulocyte lysate (RRL) supplemented with recombinant Hsp72 which had been modified in vitro with 10 and 100 microM 4-HNE, respectively. This observation was accompanied by a 25% and 50% decrease in substrate binding by the chaperone following the same treatment; however, no effect on complex formation between Hsp72 and its co-chaperone Hsp40 was observed. Trypsin digest and mass spectral analysis of Hsp72 treated with 10 and 100 microM 4-HNE consistently identified adduct formation at Cys267 in the ATPase domain of the chaperone. The role of this residue in the observed inhibition was demonstrated through the use of DnaK, a bacterial Hsp70 variant lacking Cys267. DnaK was resistant to 4-HNE inactivation. Additionally, Hsp72 was resistant to inactivation by the thiol-unreactive aldehyde malondialdehyde (MDA), further supporting a role for Cys in Hsp72 inhibition by 4-HNE. Finally, the affinity of Hsp72 for ATP was decreased 32% and 72% following treatment of the chaperone with 10 and 100 microM 4-HNE, respectively. In a model of chronic alcoholic liver injury, induction of Hsp72 was not accompanied by an increase in protein refolding ability. This is likely the result of 4-HNE modification of the Hsp72 ATPase domain.

摘要

采用蛋白质组学方法研究高脂高乙醇饮食喂养大鼠肝脏胞质溶胶,以鉴定体内4-羟基-2-壬烯醛(4-HNE)修饰的蛋白质。胞质溶胶中的Hsp72是Hsp70热休克蛋白家族的可诱导变体,始终位列被4-HNE修饰的蛋白质之中。尽管乙醇喂养动物肝脏中的Hsp72诱导增加了1.3倍,但在分离的肝细胞中未观察到Hsp70介导的荧光素酶重折叠增加,提示4-HNE抑制了该过程。在分别用10和100μM 4-HNE体外修饰的重组Hsp72补充的兔网织红细胞裂解液(RRL)中,观察到荧光素酶重折叠效率分别降低了50%和75%。同样处理后,伴随伴侣蛋白底物结合减少25%和50%;然而,未观察到Hsp72与其共伴侣蛋白Hsp40之间的复合物形成受到影响。用10和100μM 4-HNE处理的Hsp72的胰蛋白酶消化和质谱分析始终鉴定出伴侣蛋白ATP酶结构域中Cys267处形成加合物。通过使用缺乏Cys267的细菌Hsp70变体DnaK,证明了该残基在观察到的抑制作用中的作用。DnaK对4-HNE失活具有抗性。此外,Hsp72对硫醇不反应性醛丙二醛(MDA)失活具有抗性,进一步支持了Cys在4-HNE抑制Hsp72中的作用。最后,分别用10和100μM 4-HNE处理伴侣蛋白后,Hsp72对ATP的亲和力分别降低了32%和72%。在慢性酒精性肝损伤模型中,Hsp72的诱导并未伴随蛋白质重折叠能力的增加。这可能是Hsp72 ATP酶结构域被4-HNE修饰的结果。

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