首页> 外文OA文献 >The kinetics of hydrolysis of some extended N-aminoacyl-L-arginine methyl esters by porcine pancreatic kallikrein. A comparison with human plasma Kallikrein.
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The kinetics of hydrolysis of some extended N-aminoacyl-L-arginine methyl esters by porcine pancreatic kallikrein. A comparison with human plasma Kallikrein.

机译:猪胰激肽释放酶对某些扩展的N-氨基酰基-L-精氨酸甲酯水解的动力学。与人血浆激肽释放酶的比较。

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摘要

The effects of subsite interactions in the S2-S4 region [Schechter & Berger (1967) Biochem. Biophys. Res. Commun. 27, 157-162] of porcine pancreatic kallikrein (EC 3.4.21.8) on its catalytic efficiency have been investigated. Kinetic constants (Kcat, Km) have been determined for a series of seven extended N-aminoacyl-L-arginine methyl esters whose sequence is based on either the C-terminal sequence of kallidin (-Pro-Phe-Arg) or (-Gly-)nArg. With these substrates it has been found that neither acylation nor deacylation of the enzyme is rate-limiting. Values of Kcat. range from 21.5 to 2320s-1, indicating that there are interactions with different residues in the N-aminoacyl chain and enzyme subsites in the S2-S4 region. It is shown that possible hydrogen-bonded interactions with the enzyme in the S3-S4 region have a significant effect on catalysis. The presence of L-phenylalanine at P2 has a very large effect on both Kcat, and Km, giving a greatly enhanced catalytic efficiency. Substrates with L-proline at P3 also have a marked effect, but in this case the overall effect is one of lowered catalytic efficiency. By comparison with the results of a similar study with human plasma kallikrein I (EC 3.4.21.8), it has been possible to demonstrate that there are considerable differences in kinetic behaviour between the two enzymes. These are related to relative differences in the rates of acylation and deacylation with ester substrates and also the roles of subsites S2 and S3 of the two enzymes.
机译:S2-S4区域中亚位点相互作用的影响[Schechter&Berger(1967)Biochem。生物物理学。 Res。公社[27,157-162]研究了猪胰激肽释放酶(EC 3.4.21.8)的催化效率。已经确定了一系列七个扩展的N-氨基酰基-L-精氨酸甲酯的动力学常数(Kcat,Km),其序列基于激肽(-Pro-Phe-Arg)或(-Gly -)nArg。对于这些底物,已经发现酶的酰化和脱酰均不是速率限制的。 Kcat的价值。范围从21.5到2320s-1,表明存在与N-氨基酰基链中不同残基和S2-S4区中酶亚位点的相互作用。结果表明,在S3-S4区域中与酶的可能的氢键相互作用对催化有重要影响。 P2处L-苯丙氨酸的存在对Kcat和Km都有非常大的影响,从而大大提高了催化效率。在P3处带有L-脯氨酸的底物也具有显着的作用,但是在这种情况下,总体作用是降低的催化效率之一。通过与人血浆激肽释放酶I(EC 3.4.21.8)的类似研究结果进行比较,有可能证明两种酶之间的动力学行为存在相当大的差异。这些与酯底物的酰化和脱酰化速率的相对差异以及两种酶的亚位点S2和S3的作用有关。

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    Levison, P R; Tomalin, G;

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  • 年度 1982
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