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可变亚相pH条件下溶菌酶的朗缪尔单分子层:关于结构、形态和滞后行为的综合研究

Langmuir monolayer of lysozyme at variable subphase pH conditions: a comprehensive study on structure, morphology and hysteresis behaviour.

作者信息

Nath Himadri, Sarmah Raktim J, Kundu Sarathi

机构信息

Soft Nano Laboratory (SNL), Physical Sciences Division, Institute of Advanced Study in Science and Technology (IASST) Vigyan Path, Paschim Boragaon, Garchuk Guwahati Assam 781035 India

Academy of Scientific and Innovative Research (AcSIR) Ghaziabad 201002 India.

出版信息

RSC Adv. 2023 Jul 27;13(33):22789-22799. doi: 10.1039/d3ra03710j. eCollection 2023 Jul 26.

Abstract

Formation of a pure Langmuir monolayer of lysozyme at the air-water interface and its investigation by means of a surface pressure ()-mean molecular area () isotherm has been accomplished under different subphase pH conditions. A normalized area-time curve confirms the stable nature of the lysozyme monolayer whose compressibility variation with an increased surface pressure at specific subphase pH has also been studied from - isotherms. The monolayers exhibit irreversible hysteresis behaviour irrespective of subphase pH conditions, as evidenced from successive compression-expansion - isotherm cycles. Comparison of surface thermodynamics under hysteresis with subphase pH variation confirms that the monolayer at subphase pH ≈ 4.0 involves a greater amount of energy to attain and retain the ordered and compact monolayer than the other two pH conditions (pH ≈ 7.0 and 9.5). visualization of lysozyme monolayers by Brewster angle microscopy suggests the homogeneous and stripe-like pattern formation at lower and higher surface pressure respectively. Further investigations of lysozyme films at solid surfaces have been carried out with atomic force microscopy and X-ray reflectivity (XRR) analysis. Structural reversibility of lysozyme molecules under compression-expansion-compression of the monolayer is revealed from the comparison of height profiles of AFM images and electron density profiles as extracted from XRR analysis of the films deposited during both first and second compressions of the monolayer. The mechanism of the structural rearrangement of lysozyme molecules with surface pressure variation at different subphase pH is explored, correlating macroscopic and microscopic information.

摘要

在不同亚相pH条件下,已实现了溶菌酶在空气-水界面形成纯朗缪尔单分子层,并通过表面压力(π)-平均分子面积(A)等温线对其进行了研究。归一化的面积-时间曲线证实了溶菌酶单分子层的稳定性,还从π-A等温线研究了在特定亚相pH下其压缩性随表面压力增加的变化。无论亚相pH条件如何,单分子层都表现出不可逆的滞后行为,这从连续的压缩-膨胀π-A等温线循环中得到了证明。将滞后状态下的表面热力学与亚相pH变化进行比较证实,与其他两个pH条件(pH≈7.0和9.5)相比,亚相pH≈4.0时的单分子层达到并保持有序紧密的单分子层需要更多的能量。用布鲁斯特角显微镜观察溶菌酶单分子层表明,分别在较低和较高表面压力下形成了均匀和条纹状图案。已用原子力显微镜和X射线反射率(XRR)分析对固体表面的溶菌酶薄膜进行了进一步研究。通过比较原子力显微镜图像的高度轮廓和从单分子层第一次和第二次压缩过程中沉积的薄膜的XRR分析中提取的电子密度轮廓,揭示了单分子层在压缩-膨胀-压缩过程中溶菌酶分子的结构可逆性。探索了在不同亚相pH下溶菌酶分子随表面压力变化的结构重排机制,将宏观和微观信息联系起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c9e/10373444/397d1e1346ef/d3ra03710j-f1.jpg

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