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Tof-sims Structural Characterization Of Self-assembly Monolayer Of Cytochrome B5 Onto Gold Substrate

机译:细胞色素B5在金基底上自组装单层的Tof-sims结构表征

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Orientation and three-dimensional structure of immobilized proteins on bio-devices are very important to assure their high performance. Time-of-flight secondary ion mass spectrometry (TOF-SIMS) is able to analyze upper surface of one layer of molecules. Orientation of immobilized proteins can be evaluated based on determination of a partial structure, representing ensemble of amino acids, on the surface part. In this study, a monolayer of cytochrome b5 was reconstituted onto gold substrate and investigated by surface plasmon resonance (SPR). After freeze-drying, the resulted protein self-assembly was evaluated using TOF-SIMS with the bismuth cluster ion source, and then TOF-SIMS spectra were analyzed to select peaks specific to cytochrome b5 and identify their chemical formula and ensembles of amino acids. The results from TOF-SIMS spectra analysis were compared to the amino acid sequence of the modified cytochrome b5 and three-dimensional structure of cytochrome b5 registered in the protein data bank. Finally, fragment-ion-generating parts of the immobilized-cytochrome bS are determined based on the suggested residues and three-dimensional structure. These results suggest the actual structure and confirm the expected orientation of immobilized protein.
机译:固定化蛋白质在生物设备上的定向和三维结构对于确保其高性能非常重要。飞行时间二次离子质谱仪(TOF-SIMS)能够分析一层分子的上表面。可以基于表面部分代表氨基酸整体的部分结构的确定来评估固定化蛋白质的方向。在这项研究中,细胞色素b5的单层被重构到金基质上,并通过表面等离子体共振(SPR)进行了研究。冷冻干燥后,使用带有铋簇离子源的TOF-SIMS评估所得蛋白质的自组装,然后分析TOF-SIMS光谱以选择特定于细胞色素b5的峰,并鉴定其化学式和氨基酸序列。将TOF-SIMS光谱分析的结果与修饰的细胞色素b5的氨基酸序列和蛋白质数据库中注册的细胞色素b5的三维结构进行了比较。最后,基于建议的残基和三维结构确定了固定化细胞色素bS产生碎片离子的部分。这些结果表明了实际的结构并证实了固定蛋白的预期取向。

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