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利用含有荧光L-或D-氨基酸的底物分析基质金属蛋白酶三螺旋肽酶活性。

Analysis of matrix metalloproteinase triple-helical peptidase activity with substrates incorporating fluorogenic L- or D-amino acids.

作者信息

Lauer-Fields Janelle L, Kele Péter, Sui Guodong, Nagase Hideaki, Leblanc Roger M, Fields Gregg B

机构信息

Department of Chemistry and Biochemistry, Florida Atlantic University, 777 Glades Road, Boca Raton, FL 33431-0991, USA.

出版信息

Anal Biochem. 2003 Oct 1;321(1):105-15. doi: 10.1016/s0003-2697(03)00460-3.

Abstract

The consequences of improper regulation of collagen turnover include diseases such as tumor cell metastasis and arthritis. Several fluorogenic triple-helical peptide (fTHP) substrates have been constructed presently to examine collagenolytic behavior. These substrates incorporate L- or D-2-amino-3-(7-methoxy-4-coumaryl)propionic acid (Amp) or L- or D-2-amino-3-(6,7-dimethoxy-4-coumaryl)propionic acid (Adp) as the fluorophore and N-2,4-dinitrophenyl (Dnp) as the quencher. The desired sequences were C6-(Gly-Pro-Hyp)5-Gly-Pro-[Amp/Adp]-Gly-Pro-Gln-Gly approximately Leu-Arg-Gly-Gln-Lys(Dnp)-Gly-Val-Arg-(Gly-Pro-Hyp)5-NH2. All four fTHPs formed stable triple-helices. Matrix metalloproteinase-2 (MMP-2) rates of hydrolysis for all fTHPs were considerably more rapid than corresponding MMP-1 rates. Evaluation of individual kinetic parameters indicated that MMP-2 bound to the fTHPs more efficiently than MMP-1. Comparison to a triple-helical substrate incorporating the same sequence but with a different fluorophore [Lys((7-methoxycoumarin-4-yl)acetyl); Lys(Mca)] demonstrated that the shorter side chain of Amp or Adp was better tolerated by MMP-1 and MMP-2. Adp may well be the fluorophore of choice for fTHPs, as (a) fTHPs incorporating Adp were obtained in significantly higher yields than the Amp-containing fTHPs, (b) Adp has a larger Stokes shift than either Amp or Lys(Mca) and thus has less chance of self-quenching, (c) Adp has a relatively high quantum yield, (d) the Adp/Dnp pair is compatible with multiwell plate reader formats, and (e) MMPs better tolerate Adp than Lys(Mca).

摘要

胶原蛋白周转调节不当的后果包括肿瘤细胞转移和关节炎等疾病。目前已构建了几种荧光三螺旋肽(fTHP)底物来检测胶原水解行为。这些底物包含L-或D-2-氨基-3-(7-甲氧基-4-香豆基)丙酸(Amp)或L-或D-2-氨基-3-(6,7-二甲氧基-4-香豆基)丙酸(Adp)作为荧光团,以及N-2,4-二硝基苯基(Dnp)作为猝灭剂。所需序列为C6-(甘氨酸-脯氨酸-羟脯氨酸)5-甘氨酸-脯氨酸-[Amp/Adp]-甘氨酸-脯氨酸-谷氨酰胺-甘氨酸-亮氨酸-精氨酸-甘氨酸-谷氨酰胺-赖氨酸(Dnp)-甘氨酸-缬氨酸-精氨酸-(甘氨酸-脯氨酸-羟脯氨酸)5-NH₂。所有四种fTHP都形成了稳定的三螺旋结构(原文此处表述有误,应为三螺旋结构)。所有fTHP的基质金属蛋白酶-2(MMP-2)水解速率都比相应的MMP-1速率快得多。对各个动力学参数的评估表明,MMP-2与fTHP的结合比MMP-1更有效。与一种包含相同序列但具有不同荧光团[赖氨酸((7-甲氧基香豆素-4-基)乙酰基);赖氨酸(Mca)] 的三螺旋底物相比,结果表明MMP-1和MMP-2对Amp或Adp较短的侧链耐受性更好。Adp很可能是fTHP的首选荧光团,原因如下:(a)包含Adp的fTHP的产率明显高于含Amp的fTHP;(b)Adp的斯托克斯位移比Amp或赖氨酸(Mca)都大,因此自猝灭的可能性较小;(c)Adp具有相对较高的量子产率;(d)Adp/Dnp对与多孔板读数器格式兼容;(e)基质金属蛋白酶对Adp的耐受性优于赖氨酸(Mca)。

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