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通过单对荧光共振能量转移分析揭示跨膜螺旋束的热力学和动力学稳定性:跨膜片段数量和胆固醇的影响。

Thermodynamic and kinetic stabilities of transmembrane helix bundles as revealed by single-pair FRET analysis: Effects of the number of membrane-spanning segments and cholesterol.

机构信息

Graduate School of Pharmaceutical Sciences, Kyoto University, Sakyo-ku, Kyoto 606-8501, Japan.

Graduate School of Pharmaceutical Sciences, Kyoto University, Sakyo-ku, Kyoto 606-8501, Japan.

出版信息

Biochim Biophys Acta Biomembr. 2021 Mar 1;1863(3):183532. doi: 10.1016/j.bbamem.2020.183532. Epub 2020 Dec 11.

Abstract

The tertiary structures and conformational dynamics of transmembrane (TM) helical proteins are maintained by the interhelical interaction network in membranes, although it is complicated to analyze the underlying driving forces because the amino acid sequences can involve multiple and various types of interactions. To obtain insights into basal and common effects of the number of membrane-spanning segments and membrane cholesterol, we measured stabilities of helix bundles composed of simple TM helices (AALALAA) (1TM) and (AALALAA)-G-(AALALAA) (2TM). Association-dissociation dynamics for 1TM-1TM, 1TM-2TM, and 2TM-2TM pairs were monitored to compare stabilities of 2-, 3-, and 4-helical bundles, respectively, with single-pair fluorescence resonance energy transfer (sp-FRET) in liposome membranes. Both thermodynamic and kinetic stabilities of the helix bundles increased with a greater number of membrane-spanning segments in POPC. The presence of 30 mol% cholesterol strongly enhanced the formation of 1TM-1TM and 1TM-2TM bundles (~ - 9 kJ mol), whereas it only weakly stabilized the 2TM-2TM bundle (~ - 3 kJ mol). Fourier transform infrared-polarized attenuated total reflection (ATR-FTIR) spectroscopy revealed an ~30° tilt of the helix axis relative to bilayer normal for the 1TM-2TM pair in the presence of cholesterol, suggesting the formation of a tilted helix bundle to release high lateral pressure at the center of cholesterol-containing membranes. These results demonstrate that the number of membrane-spanning segments affects the stability and structure of the helix bundle, and their cholesterol-dependences. Such information is useful to understand the basics of folding and assembly of multispanning TM proteins.

摘要

跨膜(TM)螺旋蛋白的三级结构和构象动力学由膜中的螺旋间相互作用网络维持,尽管由于氨基酸序列可能涉及多种相互作用,因此分析潜在驱动力很复杂。为了深入了解跨膜段数和膜胆固醇的基本和常见影响,我们测量了由简单 TM 螺旋(AALALAA)(1TM)和(AALALAA)-G-(AALALAA)(2TM)组成的螺旋束的稳定性。通过单对荧光共振能量转移(sp-FRET)在脂质体膜中监测 1TM-1TM、1TM-2TM 和 2TM-2TM 对的缔合-解离动力学,分别比较 2-、3-和 4-螺旋束的稳定性。在 POPC 中,螺旋束的热力学和动力学稳定性随跨膜段数的增加而增加。存在 30 mol%胆固醇强烈促进 1TM-1TM 和 1TM-2TM 束的形成(-9 kJ mol),而仅弱稳定 2TM-2TM 束(-3 kJ mol)。傅里叶变换红外偏振衰减全反射(ATR-FTIR)光谱表明,在胆固醇存在下,1TM-2TM 对的螺旋轴相对于双层法线有约 30°的倾斜,表明形成倾斜的螺旋束以释放胆固醇膜中心的高侧向压力。这些结果表明,跨膜段数会影响螺旋束的稳定性和结构,以及它们对胆固醇的依赖性。这些信息有助于理解多跨 TM 蛋白折叠和组装的基础。

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