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动力学中间体揭示了白喉毒素T结构域沿膜插入途径的交错pH依赖性转变。

Kinetic intermediate reveals staggered pH-dependent transitions along the membrane insertion pathway of the diphtheria toxin T-domain.

作者信息

Kyrychenko Alexander, Posokhov Yevgen O, Rodnin Mykola V, Ladokhin Alexey S

机构信息

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

出版信息

Biochemistry. 2009 Aug 18;48(32):7584-94. doi: 10.1021/bi9009264.

Abstract

The pH-triggered membrane insertion pathway of the T-domain of diphtheria toxin was studied using site-selective fluorescence labeling with subsequent application of several spectroscopic techniques (e.g., fluorescence correlation spectroscopy, FRET, lifetime quenching, and kinetic fluorescence). FCS measurements indicate that pH-dependent formation of the membrane-competent form depends only slightly on the amount of anionic lipids in the membrane. The subsequent transbilayer insertion, however, is strongly favored by anionic lipids. Kinetic FRET measurements between the donor-labeled T-domain and acceptor-labeled lipid vesicles demonstrate rapid membrane association at all pH values for which binding occurs. In contrast, the transmembrane insertion kinetics is significantly slower and is also both pH- and lipid-dependent. Analysis of kinetic behavior of binding and insertion indicates the presence of several interfacial intermediates on the insertion pathway of the T-domain, from soluble W-state to transmembrane T-state. Intermediate interfacial I-state can be trapped in membranes with low content of anionic lipids (10%). In membranes of greater anionic lipid content, another pH-dependent transition results in the formation of the insertion-competent state and subsequent transmembrane insertion. Comparison of the results of various kinetic and equilibrium experiments suggests that the pH dependences determining membrane association and transbilayer insertion transitions are different but staggered. Anionic lipids not only assist in formation of the insertion-competent form but also lower the kinetic barrier for the final insertion.

摘要

利用位点选择性荧光标记以及随后应用的多种光谱技术(例如荧光相关光谱法、荧光共振能量转移、寿命猝灭和动力学荧光),对白喉毒素T结构域的pH触发膜插入途径进行了研究。荧光相关光谱法测量表明,膜活性形式的pH依赖性形成仅略微依赖于膜中阴离子脂质的含量。然而,随后的跨膜插入在很大程度上受阴离子脂质的促进。供体标记的T结构域与受体标记的脂质囊泡之间的动力学荧光共振能量转移测量表明,在发生结合的所有pH值下,膜结合都很快。相比之下,跨膜插入动力学明显较慢,并且也依赖于pH和脂质。对结合和插入的动力学行为分析表明,在T结构域从可溶性W态到跨膜T态的插入途径上存在几种界面中间体。中间界面I态可以被困在阴离子脂质含量低(10%)的膜中。在阴离子脂质含量更高的膜中,另一种pH依赖性转变导致形成插入活性状态并随后进行跨膜插入。各种动力学和平衡实验结果的比较表明,决定膜结合和跨膜插入转变的pH依赖性不同但相互交错。阴离子脂质不仅有助于形成插入活性形式,还降低了最终插入的动力学屏障。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d817/2748921/2590df776c4b/nihms-134643-f0001.jpg

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