分析物响应性聚合物的功能设计与生物物理特性

Functional Design and Biophysical Characterization of Analyte-Responsive Polymers.

作者信息

Curley Carolyn E, Jovic Dold Katarina, Torres Jazmine A, Richard A Clay, Sanders Eleenah, Halpern Jeffrey M, Pantazes Robert J, Balog Eva Rose M

机构信息

School of Molecular and Physical Sciences, University of New England, Biddeford, Maine 04005, United States.

Department of Chemical Engineering and Bioengineering, University of New Hampshire, Durham, New Hampshire 03824, United States.

出版信息

Biomacromolecules. 2025 Aug 11;26(8):4826-4837. doi: 10.1021/acs.biomac.5c00066. Epub 2025 Jul 25.

Abstract

As a proof-of-concept for analyte-responsive polymers (ARPs) for biosensing, this study investigates how ligand binding changes the temperature-dependent dynamics and self-assembly of an elastin-like polymer (ELP) fused with a peptide recognition element for the small globular protein domain SH3. Using isothermal titration calorimetry, we characterized the apparent binding thermodynamics when one binding partner is fused with an ELP. Circular dichroism, dynamic light scattering, and temperature-dependent UV-vis spectroscopy were used to examine how ligand binding influences ARP conformational dynamics and phase behavior. SH3 binding was associated with an increase in transition temperature that reproduced in a complex medium and was consistent with predictions from a published model for ELP fusions. Addition of SH3 destabilized ARP assemblies, demonstrating that an ARP response can be specifically triggered by ligand binding. This work advances our understanding of how ligand binding and phase behavior are interdependent in systems involving intrinsically disordered proteins and their assemblies.

摘要

作为用于生物传感的分析物响应聚合物(ARP)的概念验证,本研究调查了配体结合如何改变与用于小球蛋白结构域SH3的肽识别元件融合的类弹性蛋白聚合物(ELP)的温度依赖性动力学和自组装。使用等温滴定量热法,我们表征了一个结合伴侣与ELP融合时的表观结合热力学。圆二色性、动态光散射和温度依赖性紫外可见光谱用于研究配体结合如何影响ARP构象动力学和相行为。SH3结合与转变温度的升高相关,这在复杂介质中重现,并且与已发表的ELP融合模型的预测一致。添加SH3使ARP组装体不稳定,表明ARP响应可由配体结合特异性触发。这项工作推进了我们对涉及内在无序蛋白质及其组装体的系统中配体结合和相行为如何相互依赖的理解。

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