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肽(pHLIP)与脂质双分子层膜结合及跨膜折叠的能量学

Energetics of peptide (pHLIP) binding to and folding across a lipid bilayer membrane.

作者信息

Reshetnyak Yana K, Andreev Oleg A, Segala Michael, Markin Vladislav S, Engelman Donald M

机构信息

Physics Department, University of Rhode Island, 2 Lippitt Road, Kingston, RI 02881, USA.

出版信息

Proc Natl Acad Sci U S A. 2008 Oct 7;105(40):15340-5. doi: 10.1073/pnas.0804746105. Epub 2008 Sep 30.

Abstract

The pH low-insertion peptide (pHLIP) serves as a model system for peptide insertion and folding across a lipid bilayer. It has three general states: (I) soluble in water or (II) bound to the surface of a lipid bilayer as an unstructured monomer, and (III) inserted across the bilayer as a monomeric alpha-helix. We used fluorescence spectroscopy and isothermal titration calorimetry to study the interactions of pHLIP with a palmitoyloleoylphosphatidylcholine (POPC) lipid bilayer and to calculate the transition energies between states. We found that the Gibbs free energy of binding to a POPC surface at low pHLIP concentration (state I-state II transition) at 37 degrees C is approximately -7 kcal/mol near neutral pH and that the free energy of insertion and folding across a lipid bilayer at low pH (state II-state III transition) is nearly -2 kcal/mol. We discuss a number of related thermodynamic parameters from our measurements. Besides its fundamental interest as a model system for the study of membrane protein folding, pHLIP has utility as an agent to target diseased tissues and translocate molecules through the membrane into the cytoplasm of cells in environments with elevated levels of extracellular acidity, as in cancer and inflammation. The results give the amount of energy that might be used to move cargo molecules across a membrane.

摘要

pH低插入肽(pHLIP)是用于研究肽跨脂质双层插入和折叠的模型系统。它有三种一般状态:(I)可溶于水,或(II)作为无结构单体结合在脂质双层表面,以及(III)作为单体α-螺旋跨双层插入。我们使用荧光光谱法和等温滴定量热法研究pHLIP与棕榈酰油酰磷脂酰胆碱(POPC)脂质双层的相互作用,并计算不同状态之间的转变能。我们发现,在37℃下,低pHLIP浓度时(状态I - 状态II转变),在接近中性pH条件下与POPC表面结合的吉布斯自由能约为-7 kcal/mol,而在低pH时跨脂质双层插入和折叠的自由能(状态II - 状态III转变)接近-2 kcal/mol。我们讨论了测量得到的一些相关热力学参数。除了作为研究膜蛋白折叠的模型系统具有重要的基础研究意义外,pHLIP还可作为一种试剂,用于靶向病变组织,并在细胞外酸度升高的环境(如癌症和炎症环境)中,将分子通过膜转运到细胞胞质中。这些结果给出了可用于跨膜转运货物分子的能量值。

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