Department of Chemistry, Faculty of Science, Srinakharinwirot University, Sukhumvit 23, Bangkok 10110, Thailand.
J Photochem Photobiol B. 2011 Jun 2;103(3):251-5. doi: 10.1016/j.jphotobiol.2011.04.003. Epub 2011 Apr 12.
In this study, a new small-molecule-based reagent was designed to recognize and bind to specific site in protein. A new pyrenyl probe, d-biotinyl-1(1-pyrene)methylamide (Py-biotin) was designed and synthesized by coupling of d-biotin to 1(1-pyrene)methylamine hydrochloride. Binding studies and site-specific photocleavage of avidin by Py-biotin were demonstrated. Binding of Py-biotin to avidin was studied using absorbance and fluorescence spectroscopic techniques. Red shifts of the absorption peak positions of the pyrenyl chromophore followed by hyperchromism were observed upon binding to avidin. The photocleavage of avidin was achieved when a mixture of the protein, Py-biotin, and an electron acceptor, cobalt(III) hexammine trichloride (CoHA), was irradiated at 342nm. No reaction occurred in the absence of the probe, CoHA, or light. N-terminal sequencing of the peptide fragments indicated a cleavage site of avidin between Thr 77 and Val 78. The high specificity of photocleavage may be valuable in targeting specific sites of proteins with small molecules.
在这项研究中,设计了一种新的基于小分子的试剂,以识别和结合蛋白质中的特定位点。通过将 d-生物素偶联到 1(1-芘基)甲胺盐酸盐,设计并合成了新的芘基探针 d-生物素基-1(1-芘基)甲酰胺(Py-biotin)。证明了 Py-biotin 与亲和素的结合研究和位点特异性光解。使用吸收和荧光光谱技术研究了 Py-biotin 与亲和素的结合。当芘发色团的吸收峰位置发生红移并伴有增色时,观察到 Py-biotin 与亲和素的结合。当蛋白质、Py-biotin 和电子受体钴(III)六氨三氯化物(CoHA)的混合物在 342nm 下照射时,亲和素发生光解。在没有探针、CoHA 或光的情况下,没有反应发生。肽片段的 N 端测序表明亲和素在 Thr 77 和 Val 78 之间的切割位点。小分子对特定蛋白质位点的高特异性光解可能具有重要价值。