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首页> 外文期刊>Journal of Molecular Biology >Thermodynamic characterization of the interaction between prefoldin and group II chaperonin.
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Thermodynamic characterization of the interaction between prefoldin and group II chaperonin.

机译:前折叠蛋白与II组伴侣蛋白之间相互作用的热力学表征。

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摘要

Prefoldin (PFD) is a hexameric chaperone that captures a protein substrate and transfers it to a group II chaperonin (CPN) to complete protein folding. We have studied the interaction between PFD and CPN using those from a hyperthermophilic archaeon, Thermococcus strain KS-1 (T. KS-1). In this study, we determined the crystal structure of the T. KS-1 PFDbeta2 subunit and characterized the interactions between T. KS-1 CPNs (CPNalpha and CPNbeta) and T. KS-1 PFDs (PFDalpha1-beta1 and PFDalpha2-beta2). As predicted from its amino acid sequence, the PFDbeta2 subunit conforms to a structure similar to those of the PFDbeta1 subunit and the Pyrococcus horikoshii OT3 PFDbeta subunit, with the exception of the tip of its coiled-coil domain, which is thought to be the CPN interaction site. The interactions between T. KS-1 CPNs and PFDs (CPNalpha and PFDalpha1-beta1; CPNalpha and PFDalpha2-beta2; CPNbeta and PFDalpha1-beta1; and CPNbeta and PFDalpha2-beta2) were analyzed using the Biacore T100 system at various temperatures ranging from 20 to 45 degrees C. The affinities between PFDs and CPNs increased with an increase in temperature. The thermodynamic parameters calculated from association constants showed that the interaction between PFD and CPN is entropy driven. Among the four combinations of PFD-CPN interactions, the entropy difference in binding between CPNbeta and PFDalpha2-beta2 was the largest, and affinity significantly increased at higher temperatures. Considering that expression of PFDalpha2-beta2 and CPNbeta subunit is induced upon heat shock, our results suggest that PFDalpha1-beta1 is a general PFD for T. KS-1 CPNs, whereas PFDalpha2-beta2 is specific for CPNbeta.
机译:Prefoldin(PFD)是一种六聚体伴侣蛋白,可捕获蛋白质底物并将其转移至II组伴侣蛋白(CPN)以完成蛋白质折叠。我们已经使用超嗜热古细菌,热球菌菌株KS-1(T. KS-1)研究了PFD和CPN之间的相互作用。在这项研究中,我们确定了T. KS-1 PFDbeta2亚基的晶体结构,并表征了T. KS-1 CPN(CPNalpha和CPNbeta)与T. KS-1 PFD(PFDalpha1-beta1和PFDalpha2-beta2)之间的相互作用。 。根据其氨基酸序列预测,PFDbeta2亚基的结构类似于PFDbeta1亚基和霍氏热球菌OT3 PFDbeta亚基,但其卷曲螺旋结构域的末端除外,该末端被认为是CPN互动网站。使用Biacore T100系统在20至20的温度范围内分析了T.KS-1 CPN和PFD(CPNalpha和PFDalpha1-beta1; CPNalpha和PFDalpha2-beta2; CPNbeta和PFDalpha1-beta1; CPNbeta和PFDalpha2-beta2)之间的相互作用。至45摄氏度。PFD和CPN之间的亲和力随着温度的升高而增加。由缔合常数计算的热力学参数表明,PFD和CPN之间的相互作用是由熵驱动的。在PFD-CPN相互作用的四种组合中,CPNbeta和PFDalpha2-beta2之间的结合熵差异最大,并且在较高温度下亲和力显着增加。考虑到PFDalpha2-beta2和CPNbeta亚基的表达是在热激时诱导的,我们的结果表明PFDalpha1-beta1是T. KS-1 CPN的通用PFD,而PFDalpha2-beta2对CPNbeta是特异性的。

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