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色氨酸与卤代化合物的光诱导反应。

The light-induced reactions of tryptophan with halocompounds.

作者信息

Edwards Robert A, Jickling Glen, Turner Raymond J

机构信息

Structural Biology Research Group, Department of Biological Sciences, University of Calgary, Alberta, Canada.

出版信息

Photochem Photobiol. 2002 Apr;75(4):362-8. doi: 10.1562/0031-8655(2002)075<0362:tlirot>2.0.co;2.

Abstract

The light-dependent reaction between N-acetyl-L-tryptophanamide (NATA) and chloroform has been examined using fluorescence, NMR and reverse phase chromatography. The emission of NATA in the presence of CHCl3 decreases at 360 nm and increases at longer wavelengths (approximately 480 nm) upon illumination with 280 nm light. The action spectrum for the formation of the 480 nm emitting product(s) has the same shape as the excitation spectra of the indole fluorophore in NATA. The pH of the solution decreases as the reaction proceeds. The reaction rate depends on the intensity of the illumination and is of the first order with respect to both [NATA] and [CHCl3]. NMR and reverse phase chromatography results demonstrate that multiple products are formed. The reaction products give new peaks between 8.9 and 10.5 ppm in the 1H-NMR that are assigned to -CHO groups, which are added to the indole ring. Some of the products react with 2,4-dinitrophenylhydrazine and thus confirm this assignment. A scheme is proposed in which the excited indole gives off a solvated electron to initiate a series of steps that yield indole derivatives in which a -CHO group has replaced a -H in the indole ring. Similar reactions are observed when 5-hydroxytryptophan, 5-fluorotryptophan or N-methylindolacetate is used instead of tryptophan or when the chloroform is replaced with other trichlorinated compounds, such as trichloroacetic acid, trichloroethanol and trichloroethane, as well as the tribrominated compound, bromoform, and the monoiodinated compound, iodoactetate.

摘要

利用荧光、核磁共振(NMR)和反相色谱法研究了N-乙酰-L-色氨酸酰胺(NATA)与氯仿之间的光依赖反应。在CHCl₃存在下,NATA的发射光在360 nm处减弱,在用280 nm光照射时,在较长波长(约480 nm)处增强。480 nm发射产物形成的作用光谱与NATA中吲哚荧光团的激发光谱形状相同。随着反应进行,溶液的pH值降低。反应速率取决于光照强度,对[NATA]和[CHCl₃]均为一级反应。NMR和反相色谱结果表明形成了多种产物。反应产物在¹H-NMR中8.9至10.5 ppm之间给出新峰,这些峰归属于添加到吲哚环上的-CHO基团。一些产物与2,4-二硝基苯肼反应,从而证实了这一归属。提出了一个方案,其中激发的吲哚释放出一个溶剂化电子以引发一系列步骤,产生吲哚衍生物,其中吲哚环中的一个-H被一个-CHO基团取代。当使用5-羟基色氨酸、5-氟色氨酸或N-甲基吲哚乙酸代替色氨酸时,或者当氯仿被其他三氯化化合物(如三氯乙酸、三氯乙醇和三氯乙烷)以及三溴化合物溴仿和单碘化化合物碘乙酸酯代替时,观察到类似反应。

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