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Independent amino acid residues in the S2 pocket of falcipain-3 determine its specificity for P2 residues in substrates

机译:Falcipain-3的S2口袋中的独立氨基酸残基决定了其对底物中P2残基的特异性

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Falcipain-3 (FP3) is an essential and drug target cysteine protease of the most lethal human malaria parasite Plasmodium falciparum. FP3 and its majority of homologs in malaria parasites prefer Leu at the P2 position in substrates and inhibitors, whereas its major host homolog cathepsin L prefers Phe. However, FP3 is much less active on peptide substrates and has negligible activity against a P2 Arg-containing substrate (Z-RR-AMC) compared to its paralog falcipain-2A (FP2A). To identify the specificity determinants, the S2/3 pocket residues of FP3 were substituted with the corresponding residues in FP2 or cathepsin L, and the wild type and mutant proteases were assessed for hydrolysis of peptide and protein substrates. Our results indicate that the S2 pocket residues 194 and P181 of FP3 are chiefly responsible for its P2 Leu preference and negligible activity for Z-RR-AMC, respectively. E243 in FP3 and the corresponding residue D234 in FP2 have a key role in Z-RR-AMC hydrolysing activity, possibly through stabilization of side chain interactions, as their substitution with Ala abolished the activity. Several FP3 mutants, which retained P2 Leu preference and showed similar or more activity than wild type FP3 on peptide substrates, degraded haemoglobin less efficiently than wild type FP3, suggesting that multiple residues contribute to haemoglobinase activity. Furthermore, P181 and E243 appear to contribute to the optimum activity of FP3 in the food vacuole milieu (approximate to pH 5.5). The identification of residues determining specificity of FP3 could aid in developing specific inhibitors of FP3 and its homologs in malaria parasites. (C) 2015 Elsevier B.V. All rights reserved.
机译:Falcipain-3(FP3)是最致命的人类疟疾寄生虫恶性疟原虫的必需药物靶标半胱氨酸蛋白酶。 FP3及其在疟原虫中的大多数同源物在底物和抑制剂的P2位置更喜欢Leu,而其主要宿主同源组织L则更喜欢Phe。然而,与它的同系物falcipain-2A(FP2A)相比,FP3在肽底物上的活性低得多,并且对含P2 Arg的底物(Z-RR-AMC)的活性可忽略不计。为了鉴定特异性决定因素,将FP3的S2 / 3口袋残基替换为FP2或组织蛋白酶L中的相应残基,并评估了野生型和突变型蛋白酶对肽和蛋白质底物的水解作用。我们的结果表明,FP3的S2口袋残基194和P181分别负责其P2 Leu偏好和对Z-RR-AMC的活性可忽略不计。 FP3中的E243和FP2中的相应残基D234在Z-RR-AMC水解活性中起关键作用,可能是通过稳定侧链相互作用来实现的,因为它们被Ala取代后就废除了该活性。几个FP3突变体保留了P2 Leu偏好并在肽底物上显示了与野生型FP3相似或更高的活性,其降解血红蛋白的效率低于野生型FP3,表明多个残基有助于血红蛋白酶的活性。此外,P181和E243似乎有助于食物液泡环境中FP3的最佳活性(约pH 5.5)。鉴定决定FP3特异性的残基可以帮助开发特定的FP3抑制剂及其在疟原虫中的同源物。 (C)2015 Elsevier B.V.保留所有权利。

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