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伴侣蛋白循环中参与蛋白质释放的对称型GroEL14(GroES7)2异源寡聚体的荧光检测。

Fluorescence detection of symmetric GroEL14(GroES7)2 heterooligomers involved in protein release during the chaperonin cycle.

作者信息

Török Z, Vigh L, Goloubinoff P

机构信息

Institute of Biochemistry, Biological Research Center, Szeged, P.O. Box 521, Hungary 6701.

出版信息

J Biol Chem. 1996 Jul 5;271(27):16180-6. doi: 10.1074/jbc.271.27.16180.

Abstract

The GroEL14 chaperonin from Escherichia coli was labeled with 5-((((2-iodoacetyl)amino)ethyl)amino)naphthalene-1-sulfonic acid (I-AEDANS), a hydrophobic probe whose fluorescent emission is sensitive to structural changes within the protein. Increasing concentrations of ATP or adenylyl imidodiphosphate but not ADP caused two successive GroES7-dependent changes in the fluorescence intensity of AEDANS-GroEL14, corresponding to the sequential binding of two GroES7 heptamers and the formation of two types of chaperonin heterooligomers, GroEL14GroES7 and GroEL14(GroES7)2. The binding of thermally denatured malate dehydrogenase (MDH) caused a specific increase in fluorescence intensity of AEDANS-GroEL14 that allowed the direct measurement in solution at equilibrium of ATP- and GroES7-dependent protein release from the chaperonin. Structure/function analysis during the generation of ATP from ADP indicated the following sequence of events: 1) ADP-stabilized MDH-GroEL14GroES7 particles bind newly formed ATP. 2) MDH-GroEL14GroES7 particles bind a second GroES7. 3) MDH-GroEL14(GroES7)2 particles productively release MDH. 4) Released MDH completes folding. Therefore, the symmetrical GroEL14(GroES7)2 heterooligomer is an intermediate after the formation of which the protein substrate is productively released during the chaperonin-mediated protein folding cycle.

摘要

来自大肠杆菌的GroEL14伴侣蛋白用5-((((2-碘乙酰基)氨基)乙基)氨基)萘-1-磺酸(I-AEDANS)进行标记,I-AEDANS是一种疏水探针,其荧光发射对蛋白质内部的结构变化敏感。ATP或腺苷酰亚胺二磷酸(而非ADP)浓度的增加导致AEDANS-GroEL14荧光强度发生两次连续的、依赖GroES7的变化,这对应于两个GroES7七聚体的顺序结合以及两种伴侣蛋白异源寡聚体GroEL14GroES7和GroEL14(GroES7)2的形成。热变性苹果酸脱氢酶(MDH)的结合导致AEDANS-GroEL14荧光强度特异性增加,这使得能够在溶液中直接测量ATP和GroES7依赖的伴侣蛋白释放蛋白质的平衡状态。从ADP生成ATP过程中的结构/功能分析表明了以下事件顺序:1)ADP稳定的MDH-GroEL14GroES7颗粒结合新形成的ATP。2)MDH-GroEL14GroES7颗粒结合第二个GroES7。3)MDH-GroEL14(GroES7)2颗粒有效释放MDH。4)释放的MDH完成折叠。因此,对称的GroEL14(GroES7)2异源寡聚体是一种中间体,在其形成后,蛋白质底物在伴侣蛋白介导的蛋白质折叠循环中被有效释放。

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