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p在各种肽序列的电荷调节和构象中的作用。

Role of p in Charge Regulation and Conformation of Various Peptide Sequences.

作者信息

Lunkad Raju, Murmiliuk Anastasiia, Tošner Zdeněk, Štěpánek Miroslav, Košovan Peter

机构信息

Department of Physical and Macromolecular Chemistry, Faculty of Science, Charles University, 128 43 Prague, Czech Republic.

出版信息

Polymers (Basel). 2021 Jan 9;13(2):214. doi: 10.3390/polym13020214.

Abstract

Peptides containing amino acids with ionisable side chains represent a typical example of weak ampholytes, that is, molecules with multiple titratable acid and base groups, which generally exhibit charge regulating properties upon changes in pH. Charged groups on an ampholyte interact electrostatically with each other, and their interaction is coupled to conformation of the (macro)molecule, resulting in a complex feedback loop. Their charge-regulating properties are primarily determined by the pKA of individual ionisable side-chains, modulated by electrostatic interactions between the charged groups. The latter is determined by the amino acid sequence in the peptide chain. In our previous work we introduced a simple coarse-grained model of a flexible peptide. We validated it against experiments, demonstrating its ability to quantitatively predict charge on various peptides in a broad range of pH. In the current work, we investigated two types of peptide sequences: diblock and alternating, each of them consisting of an equal number of amino acids with acid and base side-chains. We showed that changing the sequence while keeping the same overall composition has a profound effect on the conformation, whereas it practically does not affect total charge on the peptide. Nevertheless, the sequence significantly affects the charge state of individual groups, showing that the zero net effect on the total charge is a consequence of unexpected cancellation of effects. Furthermore, we investigated how the difference between the pKA of acid and base side chains affects the charge and conformation of the peptide, showing that it is possible to tune the charge-regulating properties by following simple guiding principles based on the pKA and on the amino acid sequence. Our current results provide a theoretical basis for understanding of the complex coupling between the ionisation and conformation in flexible polyampholytes, including synthetic polymers, biomimetic materials and biological molecules, such as intrinsically disordered proteins, whose function can be regulated by changes in the pH.

摘要

含有可电离侧链氨基酸的肽是弱两性电解质的典型例子,即具有多个可滴定酸碱基团的分子,其通常在pH值变化时表现出电荷调节特性。两性电解质上的带电基团彼此静电相互作用,它们的相互作用与(大)分子的构象相关联,从而形成一个复杂的反馈回路。它们的电荷调节特性主要由各个可电离侧链的pKA决定,并受带电基团之间静电相互作用的调节。后者由肽链中的氨基酸序列决定。在我们之前的工作中,我们引入了一个简单的柔性肽粗粒化模型。我们通过实验对其进行了验证,证明它能够在很宽的pH范围内定量预测各种肽上的电荷。在当前的工作中,我们研究了两种类型的肽序列:双嵌段和交替序列,它们各自由相同数量的带有酸性和碱性侧链的氨基酸组成。我们表明,在保持相同总体组成的情况下改变序列对构象有深远影响,而实际上对肽的总电荷没有影响。然而,序列显著影响各个基团的电荷状态,表明对总电荷的零净效应是效应意外抵消的结果。此外,我们研究了酸性和碱性侧链的pKA差异如何影响肽的电荷和构象,表明可以根据pKA和氨基酸序列遵循简单的指导原则来调节电荷调节特性。我们目前的结果为理解柔性聚两性电解质(包括合成聚合物、仿生材料和生物分子,如内在无序蛋白,其功能可通过pH值变化来调节)中电离与构象之间的复杂耦合提供了理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a4a/7827592/2ad57a7c93ad/polymers-13-00214-g001.jpg

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