Komorek Paulina, Jachimska Barbara, Brand Izabella
Jerzy Haber Institute of Catalysis and Surface Chemistry Polish Academy of Sciences, Niezapominajek 8, 30-239 Cracow, Poland.
Jerzy Haber Institute of Catalysis and Surface Chemistry Polish Academy of Sciences, Niezapominajek 8, 30-239 Cracow, Poland.
Bioelectrochemistry. 2021 Dec;142:107946. doi: 10.1016/j.bioelechem.2021.107946. Epub 2021 Sep 1.
Adsorbed protein films consist of essential building blocks of many biotechnological and biomedical devices. The electrostatic potential may significantly modulate the protein behaviour on surfaces, affecting their structure and biological activity. In this study, lysozyme was used to investigate the effects of applied electric potentials on adsorption and the protein structure. The pH and the surface charge determine the amount and secondary structure of adsorbed lysozyme on a gold surface. In-situ measurements using polarization modulation infrared reflection absorption spectroscopy indicated that the concentration of both the adsorbed anions and the lysozyme led to conformational changes in the protein film, which was demonstrated by a greater amount of aggregated β-sheets in films fabricated at net positive charges of the Au electrode (E > E). The changes in secondary structure involved two parallel processes. One comprised changes in the hydration/hydrogen-bond network at helices, leading to diverse helical structures: α-, 3- and/or π-helices. In the second process β-turns, β-sheets, and random coils displayed an ability to form aggregated β-sheet structures. The study illuminates the understanding of electrical potential-dependent changes involved in the protein misfolding process.
吸附的蛋白质膜是许多生物技术和生物医学设备的基本组成部分。静电势可能会显著调节蛋白质在表面的行为,影响其结构和生物活性。在本研究中,溶菌酶被用于研究外加电势对吸附和蛋白质结构的影响。pH值和表面电荷决定了金表面吸附的溶菌酶的数量和二级结构。使用偏振调制红外反射吸收光谱进行的原位测量表明,吸附的阴离子和溶菌酶的浓度都会导致蛋白质膜的构象变化,这在金电极净正电荷(E>E)下制备的膜中表现为大量聚集的β-折叠。二级结构的变化涉及两个平行过程。一个过程包括螺旋处水合/氢键网络的变化,导致形成不同的螺旋结构:α-螺旋、3-螺旋和/或π-螺旋。在第二个过程中,β-转角、β-折叠和无规卷曲表现出形成聚集β-折叠结构的能力。该研究阐明了对蛋白质错误折叠过程中电势依赖性变化的理解。