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荧光素衍生物的选择性蛋白光裂解。

Selective protein photocleavage by fluorescein derivatives.

机构信息

Department of Chemistry, Faculty of Science, Srinakharinwirot University, Sukhumvit 23, Bangkok 10110, Thailand.

Department of Chemistry, Faculty of Science, Srinakharinwirot University, Sukhumvit 23, Bangkok 10110, Thailand.

出版信息

J Photochem Photobiol B. 2020 Nov;212:112027. doi: 10.1016/j.jphotobiol.2020.112027. Epub 2020 Sep 18.

Abstract

Modification of the structure of small molecular probe which can act as photocleavage reagent has become a considerable challenge to improve the ability to target specific sites on a large protein. These photoreagents can provide valuable information on the binding site recognition and the mechanism of the photocleavage reaction under photochemical control. In this study, site specific photocleavage of lysozyme and avidin by fluorescein derivatives, fluorescein sodium salt (F-1) and 5(6)-carboxyfluorescein diacetate (F-2) were reported here for the first time. Functional groups on the photoreagent have been proven to effect on the interaction with the protein. Cleavage of the proteins by fluorescein derivatives were successful under visible region when irradiating the solution mixture of protein, fluorescein derivative and electron acceptor, cobalt (III) hexamine trichloride, at 490-492 nm. N-terminal amino acid sequencing of the cleaved fragments of lysozyme indicated the cleavage site between Trp108 - Val 109 for both probes, whereas the cleavage of avidin by F-1 and F-2 were detected between Trp70 - Lys71. Binding interaction can be investigated using methods as simple as absorption and fluorescence spectroscopies. Absorption and fluorescence studies indicated the strong binding interactions between fluorescein derivatives and the target proteins. Computational modeling was used to gain a better insight of the protein-probe binding interaction and binding sites. Molecular docking studies indicated that F-1 and F-2 were located near the hydrophilic and hydrophobic sites of both proteins within 4 Å away from the cleavage site. The docking results clarified the binding sites of F-1 and F-2 on proteins, corresponding to the results obtained from the protein photocleavage studies.

摘要

对小分子探针结构的修饰,使其能够作为光解试剂,已成为提高在大蛋白上靶向特定部位的能力的重要挑战。这些光解试剂可以提供关于结合部位识别的有价值的信息,以及光化学控制下光解反应的机制。在这项研究中,首次报道了荧光素衍生物(荧光素钠盐(F-1)和 5(6)-羧基荧光素二乙酸酯(F-2))对溶菌酶和亲和素的定点光解。光解试剂上的功能基团已被证明会影响与蛋白质的相互作用。当在 490-492nm 波长下用蛋白质、荧光素衍生物和电子受体六水合三氯化钴的溶液混合物照射时,荧光素衍生物成功地在可见光区切割了蛋白质。N-末端氨基酸测序表明,两种探针在 Trp108-Val109 之间切割溶菌酶的片段,而 F-1 和 F-2 在 Trp70-Lys71 之间切割亲和素。可以使用吸收和荧光光谱等简单方法研究结合相互作用。吸收和荧光研究表明,荧光素衍生物与靶蛋白之间存在强烈的结合相互作用。计算建模用于更好地了解蛋白质-探针结合相互作用和结合部位。分子对接研究表明,F-1 和 F-2 位于两种蛋白质的亲水和疏水部位附近,距离切割部位 4Å 以内。对接结果阐明了 F-1 和 F-2 在蛋白质上的结合部位,与蛋白质光解研究的结果相对应。

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