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首页> 外文期刊>Chemistry - A European Journal >Specifically and Reversibly Immobilizing Proteins/Enzymes to Nitriolotriacetic-Acid-Modified Mesoporous Silicas through Histidine Tags for Purification or Catalysis
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Specifically and Reversibly Immobilizing Proteins/Enzymes to Nitriolotriacetic-Acid-Modified Mesoporous Silicas through Histidine Tags for Purification or Catalysis

机译:通过组氨酸标签将蛋白质/酶特异性地和可逆地固定在亚硝酸三乙酸改性的介孔二氧化硅上,以进行纯化或催化

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Six nitriolotriacetic-acid-modified ordered mesoporous silicas (NTA-OMPSs) with different pore sizes and surface features for specific and reversible protein immobilization were fabricated and characterized. Specific immobilization of a genetically engineered undecaprenyl pyrophosphate synthase (UPPs) from cell lysate and a chemically modified His-tagged horseradish peroxidase (HRP) in these Ni-NTA-OMPSs through histidine coordination to the nickelated NTA was demonstrated and confirmed by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry and sodium dodecyl sulfate polyacrylamide gel electrophoresis. Negligible leakage of these enzymes over a wide range of acidic conditions was observed. Moreover, histidine tags with different lengths (His6, His4, His3, and His2) applied to HRP were evaluated to find the minimum length for effective complexation. Enzymatic assessment studies indicated that the pore size of the OMPSs has minimal influence on the enzymatic activity, whereas chemical entities such as unreacted mercapto groups tailored on the interior surfaces of the OMPSs played certain roles in inhibiting the enzymatic activity and stability. On MCF-S-NTA, SBA-S-NTA, and film-S-NTA, which contained unreacted mercaptopropyl groups on the interior surface, immobilized His-tagged HRP showed lower catalytic activity and stability than on MCF-NTA, film-NTA, and SBA-NTA. Selective hydroxylation of optically pure L-tyrosine to (S)-2-amino-3-(3,4-dihydroxyphenyl)propanoic acid (L-DOPA) by the immobilized HRP was also demonstrated.
机译:制备并表征了六种次氮基三乙酸改性的有序介孔二氧化硅(NTA-OMPS),它们具有不同的孔径和表面特征,用于特异性和可逆的蛋白质固定。通过组氨酸配位,证实了镍-NTA-OMPS中从细胞裂解物中遗传工程化的十一烯酸焦磷酸合酶(UPPs)和化学修饰的His-tagged辣根过氧化物酶(HRP)与镍化NTA的特异性固定,并通过基质辅助激光证实解吸/电离飞行时间质谱和十二烷基硫酸钠聚丙烯酰胺凝胶电泳。在宽范围的酸性条件下,这些酶的渗漏可忽略不计。此外,对应用于HRP的具有不同长度的组氨酸标签(His6,His4,His3和His2)进行了评估,以找到有效络合的最小长度。酶促评估研究表明,OMPS的孔径对酶活性的影响极小,而化学实体(例如,在OMPS内表面定制的未反应巯基)在抑制酶活性和稳定性方面发挥了一定作用。在MCF-S-NTA,SBA-S-NTA和薄膜-S-NTA的内表面上含有未反应的巯基丙基,固定化的带有His标签的HRP的催化活性和稳定性低于在MCF-S-NTA的薄膜-NTA上,以及SBA-NTA。还证明了通过固定化的HRP将光学纯的L-酪氨酸选择性羟基化为(S)-2-氨基-3-(3,4-二羟基苯基)丙酸(L-DOPA)。

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