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静电和非极性肽-膜相互作用。电荷z = +1至z = +3的生长抑素类似物的脂质结合和功能特性。

Electrostatic and nonpolar peptide-membrane interactions. Lipid binding and functional properties of somatostatin analogues of charge z = +1 to z = +3.

作者信息

Seelig J, Nebel S, Ganz P, Bruns C

机构信息

Department of Biophysical Chemistry, University of Basel, Switzerland.

出版信息

Biochemistry. 1993 Sep 21;32(37):9714-21. doi: 10.1021/bi00088a025.

DOI:10.1021/bi00088a025
PMID:8104033
Abstract

The interaction of four structurally related somatostatin analogues (effective electric charge +0.4 < or = < or = +3) with lipid membranes was studied with titration calorimetry and was compared with the functional activity of the peptides. Surface activity measurements provided average cross-sections of 70 or 135 A2, indicating that the cyclic molecules orient at the air-water interface with their ring system either parallel (z = +3) or perpendicular (z = +1) to the surface or switching between the two orientations according to the surface density (z = +2). The nonspecific binding of the peptides to sonified lipid vesicles was enthalpy-driven with a delta H of -4 to -7.5 kcal/mol. A consistent quantitative analysis of the binding isotherms was achieved by combining electrostatic attractions, calculated via the Gouy-Chapman theory, with a nonspecific surface partition equilibrium for the nonpolar interactions. The electrostatic attraction of the cationic peptides varied strongly according to the peptide charge. Due to the flat ring structure of the cyclic peptides, their true physical charge was sensed at the membrane surface, and no "charge screening" was observed. Peptide binding to the negative charged membrane was accompanied by a proton-uptake of the N-terminal amino group of 0.23-0.38 H+/peptide. Deviations from the theoretical prediction of 0.39 H+/peptide can be explained by a preferential binding of the nonprotonated species. The nonpolar interactions, as described by the surface partition coefficients of the four peptides, fell into a narrow range of K congruent to 50-230 M-1 whereas the apparent overall binding constants were between 200 and 5000 M-1.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

利用滴定热分析法研究了四种结构相关的生长抑素类似物(有效电荷 +0.4≤≤ +3)与脂质膜的相互作用,并与这些肽的功能活性进行了比较。表面活性测量提供了70或135 Ų的平均横截面,表明这些环状分子在空气 - 水界面处定向,其环系统与表面平行(z = +3)或垂直(z = +1),或者根据表面密度在两种取向之间切换(z = +2)。肽与超声处理的脂质囊泡的非特异性结合是由焓驱动的,ΔH为 -4至 -7.5 kcal/mol。通过将根据 Gouy-Chapman 理论计算的静电吸引力与非极性相互作用的非特异性表面分配平衡相结合,实现了对结合等温线的一致定量分析。阳离子肽的静电吸引力根据肽电荷有很大变化。由于环状肽的扁平环结构,其真实物理电荷在膜表面被感知,并且未观察到“电荷屏蔽”。肽与带负电荷的膜结合伴随着N端氨基的质子摄取,为0.23 - 0.38 H⁺/肽。与理论预测的0.39 H⁺/肽的偏差可以通过非质子化物种的优先结合来解释。四种肽的表面分配系数所描述的非极性相互作用落入一个狭窄的范围,K约为50 - 230 M⁻¹,而表观总结合常数在200至5000 M⁻¹之间。(摘要截断于250字)

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