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首页> 外文期刊>Journal of peptide science: An official publication of the European Peptide Society >Thermodynamics of partitioning of substance P in isotropic bicelles
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Thermodynamics of partitioning of substance P in isotropic bicelles

机译:各向同性单体电池中P物质分配的热力学

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摘要

The temperature dependence of the partition of a neuropeptide, substance P(SP), in isotropic (q = 0.5)bicelles was investigated by using pulsed field gradient NMR diffusion technique. The partition coefficient decreases as the temperature is increased from 295 to 325 K, indicating a favorable (negative) enthalpy change upon partitioning of the peptide. Thermodynamic analysis of the data shows that the partitioning of SIR at 300 K is driven by the enthalpic term (Delta H) with the value of -4.03 kcal mol(-1), while it is opposed by the entropic term (-T Delta S) by approximately 1.28 kcal mol(-1) with a small negative change in heat capacity (Delta C-p). The enthalpy-driven process for the partition of SIR in bicelles is the same as in dodecylphosphocholine (DPC) micelles, however, the negative entropy change in bicelles of flat bilayer surface is in sharp contrast with the positive entropy change in DPC micelles of highly curved surface, indicating that the curvature of the membrane surface might play a significant role in the partitioning of peptides.
机译:通过使用脉冲场梯度NMR扩散技术研究了各向同性(q = 0.5)小球中神经肽物质P(SP)的分配对温度的依赖性。随着温度从295 K增加到325 K,分配系数降低,表明在分配肽时有利的(负)焓变化。数据的热力学分析表明,在300 K时SIR的分配受焓项(Delta H)的驱动,其值为-4.03 kcal mol(-1),而与熵项相反(-T Delta S )约1.28 kcal mol(-1),而热容(Delta Cp)的负变化很小。焓驱动的SIR在胶束中的分配过程与十二烷基磷酸胆碱(DPC)胶束中的相同,但是,平坦双层表面的胶束中的负熵变化与高度弯曲的DPC胶束中的正熵变化形成鲜明对比。表面,表明膜表面的曲率可能在肽的分配中起重要作用。

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