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光致变色黄色蛋白在水合聚乙烯亚胺和聚谷氨酸界面的吸附。

Photoactive Yellow Protein Adsorption at Hydrated Polyethyleneimine and Poly-l-Glutamic Acid Interfaces.

机构信息

School of Analytical Sciences Adlershof, Humboldt-Universität zu Berlin, 12489 Berlin, Germany.

Institute of Biophysics, Biological Research Centre, 6726 Szeged, Hungary.

出版信息

Molecules. 2023 May 13;28(10):4077. doi: 10.3390/molecules28104077.

Abstract

Chiral and achiral vibrational sum-frequency generation (VSFG) spectroscopy was performed in the 1400-1700 and 2800-3800 cm range to study the interfacial structure of photoactive yellow protein (PYP) adsorbed on polyethyleneimine (PEI) and poly-l-glutamic acid (PGA) surfaces. Nanometer-thick polyelectrolyte layers served as the substrate for PYP adsorption, with 6.5-pair layers providing the most homogeneous surfaces. When the topmost material was PGA, it acquired a random coil structure with a small number of β-fibrils. Upon adsorption on oppositely charged surfaces, PYP yielded similar achiral spectra. However, the VSFG signal intensity increased for PGA surfaces with a concomitant redshift of the chiral C-H and N-H stretching bands, suggesting increased adsorption for PGA compared to PEI. At low wavenumbers, both the backbone and the side chains of PYP induced drastic changes to all measured chiral and achiral VSFG spectra. Decreasing ambient humidity led to the loss of tertiary structure with a re-orientation of α-helixes, evidenced by a strongly blue-shifted chiral amide I band of the β-sheet structure with a shoulder at 1654 cm. Our observations indicate that chiral VSFG spectroscopy is not only capable of determining the main type of secondary structure of PYP, i.e., β-scaffold, but is also sensitive to tertiary protein structure.

摘要

手性和非手性振动和频产生(VSFG)光谱在 1400-1700 和 2800-3800 cm 范围内进行,以研究光活性黄色蛋白(PYP)在聚乙烯亚胺(PEI)和聚 L-谷氨酸(PGA)表面吸附的界面结构。纳米厚的聚电解质层作为 PYP 吸附的基底,6.5 对层提供最均匀的表面。当最顶层材料为 PGA 时,它获得了一种随机卷曲结构,只有少量的β-原纤维。当吸附在带相反电荷的表面上时,PYP 产生了类似的非手性光谱。然而,对于 PGA 表面,VSFG 信号强度增加,同时手性 C-H 和 N-H 伸缩带发生红移,表明 PGA 的吸附量比 PEI 增加。在低波数下,PYP 的主链和侧链都引起了所有测量的手性和非手性 VSFG 光谱的剧烈变化。环境湿度的降低导致三级结构的丧失和α-螺旋的重新取向,这表现为β-片层结构的手性酰胺 I 带强烈蓝移,其肩峰在 1654 cm 处。我们的观察表明,手性 VSFG 光谱不仅能够确定 PYP 的主要二级结构类型,即β-支架,而且对三级蛋白质结构也很敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc5e/10223613/9b557f517e9b/molecules-28-04077-g001.jpg

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