首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Synthesis and hydrolysis by cathepsin B of fluorogenic substrates with the general structure benzoyl-X-ARG-MCA containing non-natural basic amino acids at position X
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Synthesis and hydrolysis by cathepsin B of fluorogenic substrates with the general structure benzoyl-X-ARG-MCA containing non-natural basic amino acids at position X

机译:组织蛋白酶B合成和水解具有通用结构苯甲酰基-X-ARG-MCA的荧光底物,该底物在位置X处包含非天然碱性氨基酸

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摘要

We synthesized one series of fluorogenic substrates for cathepsin B derived from the peptide Bz-F-R-MCA (Bz = benzoyl, MCA = 7-methyl-coumarin amide) substituting Phe at the P_2 position by non-natural basic amino acids that combine a positively charged group with aromatic or aliphatic radicals at the same side chain, namely, 4-aminomethyl-phenylalanine, 4-guanidine-phenylalanine, 4-aminomethyl-N-isopropyl-phenylalanine, 3-pyridyl-alanine, 4-piperidinyl-alanine, 4-amino-methyl-cyclohexyl-alanine, 4-aminocyclohexyl-alanine, and N~(im)-dimethyl-histidine. Bz-F-R-MCA was the best substrate for cathepsin B but also hydrolyzed Bz-R-R-MCA with lower efficiency, since the protease accepts Arg at S_2 due to the presence of Glu~(245) at the bottom of this subsite. The presence of the basic non-natural amino acids at the P_2 position of the substrate partially restored the catalytic efficiency of cathepsin B. All kinetic parameters for hydrolysis of the peptides described in this paper are in accordance with the structures of the S_2 pocket previously described. In addition, the substrate with 4-aminocyclohexyl-alanine presented the highest affinity to cathepsin B although the peptide was obtained from a mixture of cis/trans isomers of the amino acid and we were not able to separate them. For comparison all the obtained substrates were assayed with cathepsin L and papain.
机译:我们合成了一系列组织蛋白酶B的荧光底物,其衍生自肽Bz-FR-MCA(Bz =苯甲酰基,MCA = 7-甲基香豆素酰胺),在P_2位置被非天然碱性氨基酸取代,Phe呈阳性结合在同一侧链上带有芳族或脂族基团的带电基团,即4-氨基甲基-苯丙氨酸,4-胍基-苯丙氨酸,4-氨基甲基-N-异丙基-苯丙氨酸,3-吡啶基-丙氨酸,4-哌啶基-丙氨酸,4 -氨基-甲基-环己基-丙氨酸,4-氨基环己基-丙氨酸和N-(im)-二甲基-组氨酸。 Bz-F-R-MCA是组织蛋白酶B的最佳底物,但水解Bz-R-R-MCA的效率较低,这是因为该亚基底部存在Glu〜(245),因此蛋白酶在S_2处接受Arg。底物P_2位置上碱性非天然氨基酸的存在部分恢复了组织蛋白酶B的催化效率。本文所述肽水解的所有动力学参数均与先前描述的S_2口袋结构一致。另外,尽管该肽是从氨基酸的顺式/反式异构体的混合物中获得的,但具有4-氨基环己基丙氨酸的底物对组织蛋白酶B的亲和力最高。我们无法分离它们。为了比较,用组织蛋白酶L和木瓜蛋白酶分析所有获得的底物。

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