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血红素诱导血红素结合蛋白构象变化的热力学:结构域间相互作用的作用

Thermodynamics of heme-induced conformational changes in hemopexin: role of domain-domain interactions.

作者信息

Wu M L, Morgan W T

机构信息

Division of Molecular Biology and Biochemistry, School of Biological Sciences, University of Missouri-Kansas City 64110, USA.

出版信息

Protein Sci. 1995 Jan;4(1):29-34. doi: 10.1002/pro.5560040105.

Abstract

Hemopexin is a serum glycoprotein that binds heme with high affinity and delivers heme to the liver cells via receptor-mediated endocytosis. A hinge region connects the two non-disulfide-linked domains of hemopexin, a 35-kDa N-terminal domain (domain I) that binds heme, and a 25-kDa C-terminal domain (domain II). Although domain II does not bind heme, it assumes one structural state in apo-hemopexin and another in heme-hemopexin, and this change is important in facilitating the association of heme-hemopexin with its receptor. In order to elucidate the structure and function of hemopexin, it is important to understand how structural information is transmitted to domain II when domain I binds heme. Here we report a study of the protein-protein interactions between domain I and domain II using analytical ultracentrifugation and isothermal titration calorimetry. Sedimentation equilibrium analysis showed that domain I associates with domain II both in the presence and absence of heme with Kd values of 0.8 microM and 55 microM, respectively. The interaction between heme-domain I and domain II has a calorimetric enthalpy of +11 kcal/mol, a heat capacity (delta Cp) of -720 cal/mol.K, and a calculated entropy of +65 cal/mol.K. By varying the temperature of the centrifugation equilibrium runs, a van't Hoff plot with an apparent change in enthalpy (delta H) of -3.6 kcal/mol and change in entropy (delta S) of +8.1 cal/mol.K for the association of apo-domain I with domain II was obtained.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

血红素结合蛋白是一种血清糖蛋白,它能以高亲和力结合血红素,并通过受体介导的内吞作用将血红素传递给肝细胞。一个铰链区连接着血红素结合蛋白的两个非二硫键连接结构域,一个35 kDa的N端结构域(结构域I)结合血红素,以及一个25 kDa的C端结构域(结构域II)。尽管结构域II不结合血红素,但它在脱辅基血红素结合蛋白中呈现一种结构状态,在血红素 - 血红素结合蛋白中呈现另一种结构状态,这种变化对于促进血红素 - 血红素结合蛋白与其受体的结合很重要。为了阐明血红素结合蛋白的结构和功能,了解当结构域I结合血红素时结构信息如何传递到结构域II是很重要的。在这里,我们报告了一项使用分析超速离心和等温滴定量热法研究结构域I和结构域II之间蛋白质 - 蛋白质相互作用的研究。沉降平衡分析表明,无论有无血红素,结构域I都与结构域II结合,其解离常数(Kd)值分别为0.8微摩尔和55微摩尔。血红素 - 结构域I与结构域II之间的相互作用具有+11千卡/摩尔的量热焓、-720卡/摩尔·K的热容(ΔCp)以及+65卡/摩尔·K的计算熵。通过改变离心平衡运行的温度,得到了一个范特霍夫图,脱辅基结构域I与结构域II结合的焓变(ΔH)表观变化为-3.6千卡/摩尔,熵变(ΔS)为+8.1卡/摩尔·K。(摘要截断于250字)

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