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Peptide interfacial adsorption is kinetically limited by the thermodynamic stability of self association

机译:肽界面吸附在动力学上受到自缔合的热力学稳定性的限制

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摘要

We present a study of the adsorption of two peptides at the octane–water interface. The first peptide, Lac21, exists in mixed monomer–tetramer equilibrium in bulk solution with an appreciable monomer concentration. The second peptide, Lac28, exists as a tetramer in solution, with minimal exposed hydrophobic surface. A kinetic limitation to interfacial adsorption exists for Lac28 at moderate to high surface coverage that is not observed for Lac21. We estimate the potential energy barrier for Lac28 adsorption to be 42 kJ/mol and show that this is comparable to the expected free energy barrier for tetramer dissociation. This finding suggests that, at moderate to high surface coverage, adsorption is kinetically limited by the availability of interfacially active monomeric “domains” in the subinterfacial region. We also show how the commonly used empirical equation for protein adsorption dynamics can be used to estimate the potential energy barrier for adsorption. Such an approach is shown to be consistent with a formal description of diffusion–adsorption, provided a large potential energy barrier exists. This work demonstrates that the dynamics of interfacial adsorption depend on protein thermodynamic stability, and hence structure, in a quantifiable way.
机译:我们对辛烷-水界面上两种肽的吸附进行了研究。第一种肽Lac21在本体溶液中以单体-四聚物的混合平衡存在,单体浓度可观。第二个肽Lac28以四聚体的形式存在于溶液中,疏水表面暴露最少。 Lac28在中等​​至高的表面覆盖下存在界面吸附的动力学限制,而Lac21则没有观察到。我们估计Lac28吸附的势能垒为42 kJ / mol,并表明这与四聚体解离的预期自由能垒相当。这一发现表明,在中等至高的表面覆盖率下,吸附作用在动力学上受到亚界面区域内界面活性单体“结构域”可用性的限制。我们还展示了如何将常用的蛋白质吸附动力学经验公式用于估算吸附的势能垒。如果存在较大的势能垒,则表明这种方法与扩散吸附的形式描述是一致的。这项工作表明界面吸附的动力学取决于蛋白质的热力学稳定性,并因此以可量化的方式取决于结构。

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