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胰岛素的热解离与去折叠

Thermal dissociation and unfolding of insulin.

作者信息

Huus Kasper, Havelund Svend, Olsen Helle B, van de Weert Marco, Frokjaer Sven

机构信息

Department of Pharmaceutics, The Danish University of Pharmaceutical Sciences, Universitetsparken 2, 2100 Copenhagen, Denmark.

出版信息

Biochemistry. 2005 Aug 23;44(33):11171-7. doi: 10.1021/bi0507940.

Abstract

The thermal stability of human insulin was studied by differential scanning microcalorimetry and near-UV circular dichroism as a function of zinc/protein ratio, to elucidate the dissociation and unfolding processes of insulin in different association states. Zinc-free insulin, which is primarily dimeric at room temperature, unfolded at approximately 70 degrees C. The two monomeric insulin mutants Asp(B28) and Asp(B9),Glu(B27) unfolded at higher temperatures, but with enthalpies of unfolding that were approximately 30% smaller. Small amounts of zinc caused a biphasic thermal denaturation pattern of insulin. The biphasic denaturation is caused by a redistribution of zinc ions during the heating process and results in two distinct transitions with T(m)'s of approximately 70 and approximately 87 degrees C corresponding to monomer/dimer and hexamer, respectively. At high zinc concentrations (>or=5 Zn(2+) ions/hexamer), only the hexamer transition is observed. The results of this study show that the thermal stability of insulin is closely linked to the association state and that the zinc hexamer remains stable at much higher temperatures than the monomer. This is in contrast to studies with chemical denaturants where it has been shown that monomer unfolding takes place at much higher denaturant concentrations than the dissociation of higher oligomers [Ahmad, A., et al. (2004) J. Biol. Chem. 279, 14999-15013].

摘要

通过差示扫描量热法和近紫外圆二色性研究了人胰岛素的热稳定性与锌/蛋白质比率的关系,以阐明胰岛素在不同缔合状态下的解离和展开过程。无锌胰岛素在室温下主要以二聚体形式存在,在约70℃时展开。两种单体胰岛素突变体Asp(B28)和Asp(B9)、Glu(B27)在较高温度下展开,但展开焓约小30%。少量锌导致胰岛素出现双相热变性模式。双相变性是由加热过程中锌离子的重新分布引起的,导致两个不同的转变,其T(m)分别约为70℃和约87℃,分别对应单体/二聚体和六聚体。在高锌浓度(≥5个Zn(2+)离子/六聚体)下,仅观察到六聚体转变。本研究结果表明,胰岛素的热稳定性与缔合状态密切相关,并且锌六聚体在比单体高得多的温度下仍保持稳定。这与化学变性剂的研究结果相反,在化学变性剂研究中已表明,单体展开发生时的变性剂浓度比高级寡聚体的解离浓度高得多 [艾哈迈德,A.等人(2004年)《生物化学杂志》279,14999 - 15013]。

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