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Supracrystallographic resolution of interactions contributing to enzyme catalysis by use of natural structural variants and reactivity-probe kinetics

机译:超晶体学分辨率的相互作用,通过使用天然结构变体和反应探针动力学有助于酶催化

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p1. The influence on the reactivities of the catalytic sites of papain (EC 3.4.22.2) and actinidin (3.4.22.14) of providing for interactions involving the S1-S2 intersubsite regions of the enzymes was evaluated by using as a series of thiol-specific two-hydronic-state reactivity probes: n-propyl 2-pyridyl disulphide (I) (a ‘featureless’ probe), 2-(acetamido)ethyl 2′-pyridyl disulphide (II) (containing a P1-P2 amide bond), 2-(acetoxy)ethyl 2′-pyridyl disulphide (III) [the ester analogue of probe (II)] and 2-carboxyethyl 2′-pyridyl disulphide N-methylamide (IV) [the retroamide analogue of probe (II)]. Syntheses of compounds (I), (III) and (IV) are reported. 2. The reactivities of the two enzymes towards the four reactivity probes (I)-(IV) and also that of papain towards 2-(N9-acetyl-L-phenylalanylamino)ethyl 2′-pyridyl disulphide (VII) (containing both a P1-P2 amide bond and an L-phenylalanyl side chain as an occupant for the S2 subsite), in up to four hydronic (previously called protonic) states, were evaluated by analysis of pH-dependent stopped-flow kinetic data (for the release of pyridine-2-thione) by using an eight-parameter rate equation [described in the Appendix: Brocklehurst & Brocklehurst (1988) Biochem. J. 256, 556-558] to provide pH-independent rate constants and macroscopic pKa values. The analysis reveals the various ways in which the two enzymes respond very differently to the binding of ligands in the S1-S2 intersubsite regions despite the virtually superimposable crystal structures in these regions of the molecules. 3. Particularly striking differences between the behaviour of papain and that of actinidin are that (a) only papain responds to the presence of a P1-P2 amide bond in the probe such that a rate maximum at pH 6-7 is produced in the pH-k profile in place of the rate minimum, (b) only in the papain reactions does the pKa value of the alkaline limb of the pH-k profile change from 9.5 to approx. 8.2 [the value characteristic of a pH-(kcat./Km) profile] when the probe contains a P1-P2 amide bond, (c) only papain reactivity is affected by two positively co-operative hydronic dissociations with pKI congruent to pKII congruent to 4 and (d) modulation of the reactivity of the common -S(-)-ImH+ catalytic-site ion-pair (Cys-25/His-159 in papain and Cys-25/His-162 in actinidin) by hydronic dissociation with pKa approx. 5 is more marked and occurs more generally in reactions of actinidin than is the case for papain reactions.(ABSTRACT TRUNCATED AT 400 WORDS)/p
机译:> 1。通过使用一系列硫醇特异性的两个化合物评估了木瓜蛋白酶(EC 3.4.22.2)和肌动蛋白(3.4.22.14)的催化位点反应活性的影响,这些相互作用涉及酶的S1-S2位点间区域。 -羟基状态反应性探针:正丙基2-吡啶基二硫化物(I)(“无特征”探针),2-(乙酰氨基)乙基2'-吡啶基二硫化物(II)(包含P1-P2酰胺键),2 -(乙酰氧基)乙基2'-吡啶基二硫化物(III)[探针(II)的酯类似物]和2-羧乙基2'-吡啶基二硫化物N-甲基酰胺(IV)[探针(II)的逆酰胺类似物]。报道了化合物(I),(III)和(IV)的合成。 2.两种酶对四种反应性探针(I)-(IV)的反应性,以及木瓜蛋白酶对2-(N9-乙酰基-L-苯丙氨酰氨基)乙基2'-吡啶基二硫化物(VII)的反应性(均包含通过分析pH依赖的停流动力学数据(用于释放),评估了最多四个流体(以前称为质子)状态下的P1-P2酰胺键和L-苯丙氨酰基侧链(作为S2亚位的占据者)通过使用八参数速率方程[在附录:Brocklehurst& Co. Brocklehurst(1988)生物化学。 J. 256,556-558],以提供与pH无关的速率常数和宏观pKa值。该分析揭示了两种酶对S1-S2亚位间区域中配体的结合反应非常不同的各种方式,尽管在分子的这些区域中实际上存在重叠的晶体结构。 3.木瓜蛋白酶和肌动蛋白的行为之间的特别显着差异是:(a)仅木瓜蛋白酶对探针中P1-P2酰胺键的存在作出反应,从而在pH值中产生最大速率为pH 6-7 -k曲线代替最小速率,(b)仅在木瓜蛋白酶反应中,pH-k曲线的碱性肢体的pKa值从9.5变为大约。 8.2 [pH-(kcat./Km)分布图的值特征],当探针包含P1-P2酰胺键时,(c)只有木瓜蛋白酶反应性受pKI等同于pKII的两个pKI的积极合作水解离到4和(d)通过水解离解对常见的-S(-)-ImH +催化部位离子对(木瓜蛋白酶中的Cys-25 / His-159和猕猴桃素中的Cys-25 / His-162)的反应性进行调节大约pKa与木瓜蛋白酶反应相比,5在actinidin的反应中更明显且更普遍地发生。(摘要截短为400字)

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