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猪胰脏共脂肪酶的丹磺酰酪氨酸衍生物的合成与表征

Synthesis and characterization of the dansyltyrosine derivatives of porcine pancreatic colipase.

作者信息

McIntyre J C, Schroeder F, Behnke W D

机构信息

Department of Molecular Genetics, Biochemistry and Microbiology, College of Medicine, University of Cincinnati, Ohio 45267.

出版信息

Biochemistry. 1990 Feb 27;29(8):2092-101. doi: 10.1021/bi00460a019.

Abstract

Steady-state and time-resolved fluorescence techniques were used to study dansyltyrosine derivatives of porcine pancreatic colipase. Nitration, reduction, acylation, and dansylation reactions were utilized to synthesize two fluorescently labeled colipases: (o-aminodansyltyrosine 55 porcine colipase) (DNStyr55PC) and o-aminodansyltyrosine 59 porcine colipase (DNStyr59PC). DNStyr55PC was 200% active, while the DNStyr59 derivative maintained 80% activity in a pH stat assay. Emission spectra, lifetime analysis, acrylamide quenching, polarization, and anisotropy decay studies indicated that Tyr55 was located on the solvent-exposed surface of the protein, where the fluorophore experienced free rotation. Identical experiments done on DNStyr59PC indicated that Tyr59 was in a partially buried environment and the motion of the dansyl tyrosine group was hindered. The double-exponential decay of the fluorescence emission of N-acetyl-o-aminodansyltyrosine ethyl ester (DNStyr) and the DNStyr derivatives of colipase was investigated with pH, temperature, solvent, and emission-resolved-lifetime experiments. The existence of excited-state processes was eliminated in both pH and emission-resolved-lifetime experiments, whereas temperature studies indicated either a rotational isomer or a differential solvent quenching mechanism for multiple decay kinetics. These experiments also showed that DNStyr was a sensitive probe of solvent polarity and viscosity, but not of pH.

摘要

采用稳态和时间分辨荧光技术研究猪胰辅脂酶的丹磺酰酪氨酸衍生物。利用硝化、还原、酰化和丹磺酰化反应合成了两种荧光标记的辅脂酶:(邻氨基丹磺酰酪氨酸55猪辅脂酶)(DNStyr55PC)和邻氨基丹磺酰酪氨酸59猪辅脂酶(DNStyr59PC)。在pH恒稳测定中,DNStyr55PC的活性为200%,而DNStyr59衍生物保持80%的活性。发射光谱、寿命分析、丙烯酰胺猝灭、偏振和各向异性衰减研究表明,Tyr55位于蛋白质溶剂暴露表面,荧光团在该表面可自由旋转。对DNStyr59PC进行的相同实验表明,Tyr59处于部分掩埋环境,丹磺酰酪氨酸基团的运动受到阻碍。通过pH、温度、溶剂和发射分辨寿命实验研究了N-乙酰邻氨基丹磺酰酪氨酸乙酯(DNStyr)和辅脂酶的DNStyr衍生物荧光发射的双指数衰减。在pH和发射分辨寿命实验中均排除了激发态过程的存在,而温度研究表明多重衰减动力学存在旋转异构体或差异溶剂猝灭机制。这些实验还表明,DNStyr是溶剂极性和粘度的敏感探针,但不是pH的敏感探针。

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