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膜型-1基质金属蛋白酶和基质溶解素-3能更有效地切割在其P1'位置含有异常氨基酸的合成底物。

Membrane type-1 matrix metalloprotease and stromelysin-3 cleave more efficiently synthetic substrates containing unusual amino acids in their P1' positions.

作者信息

Mucha A, Cuniasse P, Kannan R, Beau F, Yiotakis A, Basset P, Dive V

机构信息

CEA, Département d'Ingénierie et d'Etudes des Protéines, CE-Saclay, 91191 Gif/Yvette Cedex, France.

出版信息

J Biol Chem. 1998 Jan 30;273(5):2763-8. doi: 10.1074/jbc.273.5.2763.

Abstract

The influence of the substrate P1' position on the specificity of two zinc matrix metalloproteases, membrane type-1 matrix metalloprotease (MT1-MMP) and stromelysin-3 (ST3), was evaluated by synthesizing a series of fluorogenic substrates of general formula dansyl-Pro-Leu-Ala-Xaa-Trp-Ala-Arg-NH2, where Xaa in the P1' position represents unusual amino acids containing either long arylalkyl or alkyl side chains. Our data demonstrate that both MT1-MMP and ST3 cleave substrates containing in their P1' position unusual amino acids with extremely long side chains more efficiently than the corresponding substrates with natural phenylalanine or leucine amino acids. In this series of substrates, the replacement of leucine by S-para-methoxybenzyl cysteine increased the kcat/Km ratio by a factor of 37 for MT1-MMP and 9 for ST3. The substrate with a S-para-methoxybenzyl cysteine residue in the P1' position displayed a kcat/Km value of 1.59 10(6) M-1 s-1 and 1.67 10(4) M-1 s-1, when assayed with MT1-MMP and ST3, respectively. This substrate is thus one of the most rapidly hydrolyzed substrates so far reported for matrixins, and is the first synthetic peptide efficiently cleaved by ST3. These unexpected results for these two matrixins suggest that extracellular proteins may be cleaved by matrixins at sites containing amino acids with unusual long side chains, like those generated in vivo by some post-translational modifications.

摘要

通过合成一系列通式为丹磺酰 - 脯氨酸 - 亮氨酸 - 丙氨酸 - Xaa - 色氨酸 - 丙氨酸 - 精氨酸 - NH₂ 的荧光底物,评估了底物P1' 位对两种锌基质金属蛋白酶——膜型 -1 基质金属蛋白酶(MT1 - MMP)和基质溶解素 -3(ST3)特异性的影响,其中P1' 位的Xaa代表含有长芳基烷基或烷基侧链的非天然氨基酸。我们的数据表明,与含有天然苯丙氨酸或亮氨酸的相应底物相比,MT1 - MMP和ST3都能更有效地切割P1' 位含有极长侧链非天然氨基酸的底物。在这一系列底物中,用S - 对甲氧基苄基半胱氨酸取代亮氨酸,使MT1 - MMP的kcat/Km比值提高了37倍,使ST3的该比值提高了9倍。当分别用MT1 - MMP和ST3进行测定时,P1' 位含有S - 对甲氧基苄基半胱氨酸残基的底物的kcat/Km值分别为1.59×10⁶ M⁻¹ s⁻¹ 和1.67×10⁴ M⁻¹ s⁻¹ 。因此,该底物是迄今为止报道的基质金属蛋白酶水解速度最快的底物之一,也是第一个被ST3有效切割的合成肽。这两种基质金属蛋白酶的这些意外结果表明,细胞外蛋白质可能在含有具有非天然长侧链氨基酸的位点被基质金属蛋白酶切割,就像体内某些翻译后修饰产生的那些位点一样。

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