首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Cleavage Specificity of Mycobacterium tuberculosis ClpP1P2 Protease and Identification of Novel Peptide Substrates and Boronate Inhibitors with Anti-bacterial Activity
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Cleavage Specificity of Mycobacterium tuberculosis ClpP1P2 Protease and Identification of Novel Peptide Substrates and Boronate Inhibitors with Anti-bacterial Activity

机译:结核分枝杆菌ClpP1P2蛋白酶的切割特异性和具有抗菌活性的新型肽底物和硼酸盐抑制剂的鉴定

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摘要

The ClpP1P2 protease complex is essential for viability in Mycobacteria tuberculosis and is an attractive drug target. Using a fluorogenic tripeptide library (Ac-X3X2X1-aminomethylcoumarin) and by determining specificity constants (kcat/Km), we show that ClpP1P2 prefers Met ≫ Leu > Phe > Ala in the X1 position, basic residues or Trp in the X2 position, and Pro ≫ Ala > Trp in the X3 position. We identified peptide substrates that are hydrolyzed up to 1000 times faster than the standard ClpP substrate. These positional preferences were consistent with cleavage sites in the protein GFPssrA by ClpXP1P2. Studies of ClpP1P2 with inactive ClpP1 or ClpP2 indicated that ClpP1 was responsible for nearly all the peptidase activity, whereas both ClpP1 and ClpP2 contributed to protein degradation. Substrate-based peptide boronates were synthesized that inhibit ClpP1P2 peptidase activity in the submicromolar range. Some of them inhibited the growth of Mtb cells in the low micromolar range indicating that cleavage specificity of Mtb ClpP1P2 can be used to design novel anti-bacterial agents.
机译:ClpP1P2蛋白酶复合物对于结核分枝杆菌的生存力至关重要,并且是有吸引力的药物靶标。使用荧光三肽文库(Ac-X3X2X1-氨基甲基香豆素)并通过确定特异性常数(kcat / Km),我们显示ClpP1P2在X1位置更喜欢Met≫ Leu> Phe> Ala,在X2位置更喜欢碱性残基或Trp,并且在X3位置按Pro≫ Ala> Trp。我们确定了水解速度比标准ClpP底物快1000倍的肽底物。这些位置偏好与ClpXP1P2在蛋白GFPssrA中的切割位点一致。对具有非活性ClpP1或ClpP2的ClpP1P2的研究表明,ClpP1几乎负责所有的肽酶活性,而ClpP1和ClpP2均导致蛋白质降解。合成了基于基质的肽硼酸酯,其在亚微摩尔范围内抑制ClpP1P2肽酶活性。其中一些在低微摩尔范围内抑制了Mtb细胞的生长,表明Mtb ClpP1P2的切割特异性可用于设计新型抗菌剂。

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