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脱辅基或全蛋白α-乳白蛋白与溶菌酶之间的分子相互作用:通过荧光测量评估异二聚体的形成。

Molecular interaction between apo or holo alpha-lactalbumin and lysozyme: formation of heterodimers as assessed by fluorescence measurements.

作者信息

Nigen Michaël, Le Tilly Véronique, Croguennec Thomas, Drouin-Kucma Delphine, Bouhallab Saïd

机构信息

INRA-agrocampus Rennes, UMR 1253, STLO, 65 rue de Saint-Brieuc, F-35042, Rennes, France.

出版信息

Biochim Biophys Acta. 2009 Apr;1794(4):709-15. doi: 10.1016/j.bbapap.2008.12.017. Epub 2009 Jan 6.

Abstract

In a previous work, we reported that contrary to native calcium-loaded alpha-lactalbumin (holo alpha-LA), calcium-depleted form (apo alpha-LA) has the ability to self-assemble with lysozyme (LYS) to form different supramolecular structures in temperature-dependent manner. In this study, we examine what happens at molecular scale using fluorescence techniques. Fluorescence anisotropy coupled with fluorescence lifetime measurements provides a means to measure intermolecular interactions. We showed that LYS interacts with both apo alpha-LA and holo alpha-LA to form oligomers, assumed to be heterodimers, at 10 degrees C and 45 degrees C. The dissociation constants for dimerization were found to be in the muM range and increased significantly with increasing ionic strength from 39 to 124 mM. Although the binding constants of holo alpha-LA-LYS and apo alpha-LA-LYS complexes were of the same order of magnitude, the shape or conformation of formed heterodimers differed as assessed by fluorescence parameters in particular correlation time calculations. Such conformation differences could explain why holo alpha-LA-LYS complexes are trapped as heterodimers while the apo alpha-LA-LYS complexes have the ability to further self-assemble into various supramolecular structures.

摘要

在之前的一项工作中,我们报道了与天然钙负载的α-乳白蛋白(全α-LA)相反,缺钙形式(脱辅基α-LA)能够与溶菌酶(LYS)自组装,以温度依赖的方式形成不同的超分子结构。在本研究中,我们使用荧光技术研究分子尺度上发生了什么。荧光各向异性与荧光寿命测量相结合提供了一种测量分子间相互作用的方法。我们表明,在10℃和45℃下,LYS与脱辅基α-LA和全α-LA相互作用形成假定为异二聚体的寡聚体。发现二聚化的解离常数在微摩尔范围内,并且随着离子强度从39 mM增加到124 mM而显著增加。尽管全α-LA-LYS和脱辅基α-LA-LYS复合物的结合常数处于相同的数量级,但通过荧光参数特别是相关时间计算评估,形成的异二聚体的形状或构象不同。这种构象差异可以解释为什么全α-LA-LYS复合物被困为异二聚体,而脱辅基α-LA-LYS复合物有能力进一步自组装成各种超分子结构。

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