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Spectroscopy of proteins on surfaces: implications for protein orientation and protein/protein interactions

机译:表面上蛋白质的光谱:对蛋白质取向和蛋白质/蛋白质相互作用的影响

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Several approaches for stabilizing three hemeproteins (cytochrome c, myoglobin, and cytochrome c$-3$/) on a silver surface were developed. Methodology for preventing denaturation of complex biomolecules, such as surface modification by small molecules, is often required in order to obtain surface-enhanced resonance Raman scattering (SERRS)spectra that are relevant to the functional molecule. The optimal approach depends upon the stability of the protein. For example, cytochrome c is native on a number of different substrates (silver electrodes, sols and thin- films), whereas myoglobin is most stable on silver sols. Because SERRS detects changes in the interactions of the heme group with the protein, the greater stability of cytochrome c as compared to myoglobin probably reflects the fact that the heme is covalently bound to the former. Surface selection rules were used to analyze the orientation of the heme group of several proteins relative to the silver surface. A comparison of the changes in the relative intensities of bands in the SERRS spectra of cytochrome c indicates that the protein orientation is sensitive to the presence of lipids or other proteins (avidin) on the silver surface.
机译:开发了稳定三种血对蛋白(细胞色素C,Myoglobin和细胞色CO $-3 $ /)的几种方法。为了获得与功能分子相关的表面增强的共振拉曼散射(SERRS)光谱,通常需要预防络合物生物分子的变性的方法,例如通过小分子的表面改性。最佳方法取决于蛋白质的稳定性。例如,细胞色素C在许多不同的基板(银电极,溶胶和薄膜)上是天然的,而Myoglobin在银溶胶上最稳定。由于Serrs检测到血红素组与蛋白质相互作用的变化,与肌球蛋白相比,细胞色素C的稳定性可能反映了血红素与前者共价结合的事实。表面选择规则用于分析几种蛋白质相对于银表面的血红素组的取向。细胞色素C的SERRS光谱中带中相对强度变化的比较表明蛋白质取向对银表面上的脂质或其他蛋白质(抗生物素蛋白)的存在敏感。

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