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在两性离子聚合物和氟化表面活性剂存在下白喉毒素T结构域的折叠:迈向膜蛋白折叠的热力学测量

Folding of diphtheria toxin T-domain in the presence of amphipols and fluorinated surfactants: Toward thermodynamic measurements of membrane protein folding.

作者信息

Kyrychenko Alexander, Rodnin Mykola V, Vargas-Uribe Mauricio, Sharma Shivaji K, Durand Grégory, Pucci Bernard, Popot Jean-Luc, Ladokhin Alexey S

机构信息

Department of Biochemistry and Molecular Biology, Kansas University Medical Center, Kansas City, KS 66160-7421, USA.

出版信息

Biochim Biophys Acta. 2012 Apr;1818(4):1006-12. doi: 10.1016/j.bbamem.2011.09.012. Epub 2011 Sep 17.

Abstract

Solubilizing membrane proteins for functional, structural and thermodynamic studies is usually achieved with the help of detergents, which, however, tend to destabilize them. Several classes of non-detergent surfactants have been designed as milder substitutes for detergents, most prominently amphipathic polymers called 'amphipols' and fluorinated surfactants. Here we test the potential usefulness of these compounds for thermodynamic studies by examining their effect on conformational transitions of the diphtheria toxin T-domain. The advantage of the T-domain as a model system is that it exists as a soluble globular protein at neutral pH yet is converted into a membrane-competent form by acidification and inserts into the lipid bilayer as part of its physiological action. We have examined the effects of various surfactants on two conformational transitions of the T-domain, thermal unfolding and pH-induced transition to a membrane-competent form. All tested detergent and non-detergent surfactants lowered the cooperativity of the thermal unfolding of the T-domain. The dependence of enthalpy of unfolding on surfactant concentration was found to be least for fluorinated surfactants, thus making them useful candidates for thermodynamic studies. Circular dichroism measurements demonstrate that non-ionic homopolymeric amphipols (NAhPols), unlike any other surfactants, can actively cause a conformational change of the T-domain. NAhPol-induced structural rearrangements are different from those observed during thermal denaturation and are suggested to be related to the formation of the membrane-competent form of the T-domain. Measurements of leakage of vesicle content indicate that interaction with NAhPols not only does not prevent the T-domain from inserting into the bilayer, but it can make bilayer permeabilization even more efficient, whereas the pH-dependence of membrane permeabilization becomes more cooperative. This article is part of a Special Issue entitled: Protein Folding in Membranes.

摘要

为了进行功能、结构和热力学研究而溶解膜蛋白通常需要借助去污剂,但去污剂往往会使膜蛋白不稳定。几类非去污剂表面活性剂已被设计为去污剂的温和替代品,其中最突出的是称为“双亲分子”的两亲聚合物和氟化表面活性剂。在这里,我们通过研究它们对白喉毒素T结构域构象转变的影响,来测试这些化合物在热力学研究中的潜在用途。T结构域作为模型系统的优势在于,它在中性pH下以可溶性球状蛋白形式存在,但通过酸化会转变为具有膜活性的形式,并作为其生理作用的一部分插入脂质双层。我们研究了各种表面活性剂对T结构域的两种构象转变的影响,即热解折叠和pH诱导的向具有膜活性形式的转变。所有测试的去污剂和非去污剂表面活性剂都降低了T结构域热解折叠的协同性。发现氟化表面活性剂的解折叠焓对表面活性剂浓度的依赖性最小,因此使其成为热力学研究的有用候选物。圆二色性测量表明,与其他任何表面活性剂不同,非离子型均聚物双亲分子(NAhPols)可以积极地引起T结构域的构象变化。NAhPol诱导的结构重排与热变性过程中观察到的不同,并且被认为与T结构域具有膜活性形式的形成有关。囊泡内容物泄漏的测量表明,与NAhPols的相互作用不仅不会阻止T结构域插入双层,反而会使双层通透性更高,而膜通透性的pH依赖性变得更具协同性。本文是名为:膜中的蛋白质折叠的特刊的一部分。

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Amphipols from A to Z.从 A 到 Z 了解两性离子聚合物。
Annu Rev Biophys. 2011;40:379-408. doi: 10.1146/annurev-biophys-042910-155219.
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Conformational switching of the diphtheria toxin T domain.白喉毒素 T 结构域的构象转换。
J Mol Biol. 2010 Sep 10;402(1):1-7. doi: 10.1016/j.jmb.2010.07.024. Epub 2010 Jul 21.

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