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Catalysis of the Cleavage of Uridine 3-2,2,2-Trichloroethylphosphate by a Designed Helix-Loop-Helix Motif Peptide

机译:设计的螺旋-环-螺旋基序肽催化尿苷3-2,2,2-三氯乙基磷酸酯的裂解

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摘要

A 42-residue peptide that folds into a heli×-loop-helix motif and dimerizes to form a four-heli× bundle has been designed to catalyze the hydrolysis of phosphodiesters. The active site on the surface of the folded catalyst is composed of two histidine and four arginine residues, with the capacity to provide general acid, general base, and/or nucleophilic catalysis as well as transition state stabilization. Uridine 3'-2,2,2 trichloroethylphosphate (2) is a mimic of RNA with a leaving group pK_a of 12.3. Its hydrolysis is energetically less favorable than that of commonly used model substrates with p-nitrophenyl leaving groups and therefore a more realistic model for the design of catalysts capable of cleaving RNA. The second-order rate constant for the hydrolysis of 2 at pH 7.0 by the polypeptide catalyst was 418 x 10~(-6) M~(-1) s~(-1), and that of the imidazole catalyzed reaction was 1.66 x 10~(-6) M~(-1) s~(-1). The pH dependence suggested that catalysis is due to the unprotonated form of a residue with a pK_a of around 5.3, and the observed kinetic solvent isotope effect of 1.9 showed that there is significant hydrogen bonding in the transition state, consistent with general acid-base catalysis. The rate constant ratio k_2(Pep)/K_2(lm) of 252 is probably due to a combination of nucleophilic and general acid-base catalysis, as well as transition state stabilization. Substrate binding was weak since no sign of saturation kinetics was observed for substrate concentrations in the range from 5 to 40 mM. The results provide a platform for the further development of catalysts for RNA cleavage with a potential role in the development of drugs.
机译:已设计出42个残基的肽,可折叠成helix-loop-螺旋基序并二聚形成四个helix束,以催化磷酸二酯的水解。折叠的催化剂表面上的活性位点由两个组氨酸和四个精氨酸残基组成,具有提供通用酸,通用碱和/或亲核催化以及过渡态稳定的能力。尿苷3'-2,2,2三氯乙基磷酸酯(2)是RNA的模拟物,离去基团pK_a为12.3。它的水解在能量上不如通常使用的具有对硝基苯基离去基团的模型底物有利,因此对于设计能够裂解RNA的催化剂而言,其水解模型更为实际。多肽催化剂在pH 7.0下水解2的二级速率常数为418 x 10〜(-6)M〜(-1)s〜(-1),咪唑催化的反应速率常数为1.66 x 10〜(-6)M〜(-1)s〜(-1)。 pH依赖性表明催化是由于未质子化形式的残基的pK_a约为5.3,观察到的动力学溶剂同位素效应1.9表明过渡态中存在明显的氢键,这与一般的酸碱催化相符。速率常数比k_2(Pep)/ K_2(lm)为252可能是由于亲核和一般酸碱催化以及过渡态稳定的结合。底物结合很弱,因为对于5至40 mM的底物浓度没有观察到饱和动力学的迹象。该结果为进一步开发用于RNA切割的催化剂提供了平台,该平台在药物开发中具有潜在作用。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2007年第47期|p.14752-14758|共7页
  • 作者单位

    Contribution from Department of Applied Chemistry, Public University of Navarra, 31006 Pamplona, Navarra, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-18 03:21:41

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