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木瓜蛋白酶S1 - S2亚位点间区域分子识别对催化位点化学的影响。通过将P1 - P2酰胺键引入双质子态反应性探针,pH依赖性特征的变化及反向溶剂动力学同位素效应的产生。

Consequences of molecular recognition in the S1-S2 intersubsite region of papain for catalytic-site chemistry. Change in pH-dependence characteristics and generation of an inverse solvent kinetic isotope effect by introduction of a P1-P2 amide bond into a two-protonic-state reactivity probe.

作者信息

Brocklehurst K, Kowlessur D, Patel G, Templeton W, Quigley K, Thomas E W, Wharton C W, Willenbrock F, Szawelski R J

机构信息

Department of Biochemistry, St. Bartholomew's Hospital Medical College, University of London, U.K.

出版信息

Biochem J. 1988 Mar 15;250(3):761-72. doi: 10.1042/bj2500761.

Abstract
  1. The pH-dependences of the second-order rate constant (k) for the reactions of papain (EC 3.4.22.2) with 2-(acetamido)ethyl 2'-pyridyl disulphide and with ethyl 2-pyridyl disulphide and of k for the reaction of benzimidazol-2-ylmethanethiol (as a minimal model of cysteine proteinase catalytic sites) with the former disulphide were determined in aqueous buffers at 25 degrees C at I 0.1. 2. Of these three pH-k profiles only that for the reaction of papain with 2-(acetamido)ethyl 2'-pyridyl disulphide has a rate maximum at pH approx. 6; the others each have a rate minimum in this pH region and a rate maximum at pH 4, which is characteristic of reactions of papain with other 2-pyridyl disulphides that do not contain a P1-P2 amide bond in the non-pyridyl part of the molecule. 3. The marked change in the form of the pH-k profile consequent upon introduction of a P1-P2 amide bond into the probe molecule for the reaction with papain but not for that with the minimal catalytic-site model is interpreted in terms of the induction by binding of the probe in the S1-S2 intersubsite region of the enzyme of a transition-state geometry in which nucleophilic attack by the -S- component of the catalytic site is assisted by association of the imidazolium ion component with the leaving group. 4. The greater definition of the rate maximum in the pH-k profile for the reaction of papain with an analogous 2-pyridyl disulphide reactivity probe containing both a P1-P2 amide bond and a potential occupant for the S2 subsite [2-(N'-acetyl-L-phenylalanylamino)ethyl 2'-pyridyl disulphide [Brocklehurst, Kowlessur, O'Driscoll, Patel, Quenby, Salih, Templeton, Thomas & Willenbrock (1987) Biochem. J. 244, 173-181]) suggests that a P2-S2 interaction substantially increases the population of transition states for the imidazolium ion-assisted reaction. 5. The overall kinetic solvent 2H-isotope effect at pL 6.0 was determined to be: for the reaction of papain with 2,2'-dipyridyl disulphide, 0.96 (i.e. no kinetic isotope effect), for its reaction with the probe containing only the P1-P2 amide bond, 0.75, for its reaction with the probe containing both the P1-P2 amide bond and the occupant for the S2 subsite, 0.61, and for kcat./Km for its catalysis of the hydrolysis of N-methoxycarbonylglycine 4-nitrophenyl ester, 0.67.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在25℃、离子强度I = 0.1的水性缓冲液中,测定了木瓜蛋白酶(EC 3.4.22.2)与2-(乙酰氨基)乙基2'-吡啶基二硫化物、与乙基2-吡啶基二硫化物反应的二级速率常数(k)的pH依赖性,以及苯并咪唑-2-基甲硫醇(作为半胱氨酸蛋白酶催化位点的最小模型)与前一种二硫化物反应的k的pH依赖性。2. 在这三种pH-k曲线中,只有木瓜蛋白酶与2-(乙酰氨基)乙基2'-吡啶基二硫化物反应的曲线在pH约为6时具有速率最大值;其他曲线在该pH区域各有一个速率最小值,在pH 4时有一个速率最大值,这是木瓜蛋白酶与分子中非吡啶部分不含P1 - P2酰胺键的其他2-吡啶基二硫化物反应的特征。3. 将P1 - P2酰胺键引入与木瓜蛋白酶反应的探针分子中,pH-k曲线形式发生显著变化,而与最小催化位点模型反应时则没有这种变化,这可以解释为探针在酶的S1 - S2亚位点区域结合诱导了一种过渡态几何结构,其中催化位点的 -S- 组分的亲核攻击通过咪唑鎓离子组分与离去基团的缔合得到辅助。4. 木瓜蛋白酶与同时含有P1 - P2酰胺键和S2亚位点占据基团的类似2-吡啶基二硫化物反应性探针[2-(N'-乙酰-L-苯丙氨酰氨基)乙基2'-吡啶基二硫化物[布罗克赫斯特、科维勒苏尔、奥德里斯科尔、帕特尔、昆比、萨利赫、坦普尔顿、托马斯和威伦布罗克(1987年)《生物化学杂志》244卷,173 - 181页]]反应的pH-k曲线中速率最大值的定义更明确,这表明P2 - S2相互作用显著增加了咪唑鎓离子辅助反应的过渡态数量。5. 测定了在pL 6.0时的整体动力学溶剂2H同位素效应:对于木瓜蛋白酶与2,2'-二吡啶基二硫化物的反应,为0.96(即无动力学同位素效应),对于其与仅含P1 - P2酰胺键的探针的反应,为0.75,对于其与同时含P1 - P2酰胺键和S2亚位点占据基团的探针的反应,为0.61,对于其催化N-甲氧基羰基甘氨酸4-硝基苯酯水解的kcat./Km,为0.67。(摘要截短于400字)

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