首页> 美国卫生研究院文献>Biochemical Journal >Hydrogen-bonding in enzyme catalysis. Fourier-transform infrared detection of ground-state electronic strain in acyl-chymotrypsins and analysis of the kinetic consequences.
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Hydrogen-bonding in enzyme catalysis. Fourier-transform infrared detection of ground-state electronic strain in acyl-chymotrypsins and analysis of the kinetic consequences.

机译:氢键在酶催化中。酰基胰凝乳蛋白酶中基态电子菌株的傅立叶变换红外检测和动力学结果分析。

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摘要

I.r. difference spectra are presented for 3-(indol-3-yl)acryloyl-, cinnamoyl-, 3-(5-methylthien-2-yl)acryloyl-, dehydrocinnamoyl- and dihydrocinnamoyl-chymotrypsins at low pH, where the acyl-enzymes are catalytically inactive. At least two absorption bands are seen in each case in the ester carbonyl stretching region of the spectrum. Cinnamoyl-chymotrypsin substituted at the carbonyl carbon atom with 13C was prepared. A difference spectrum in which 13C-substituted acyl-enzyme was subtracted from [12C]acyl-enzyme shows two bands in the ester carbonyl region and thus confirms the assignment of the features to the single ester carbonyl group. The frequencies of the ester carbonyl bands are interpreted in terms of differential hydrogen-bonding. In each case a lower-frequency relatively narrow band is assigned to a productive potentially reactive binding mode in which the carbonyl oxygen atom is inserted in the oxyanion hole of the enzyme active centre. The higher-frequency band, which is broader, is assigned to a non-productive binding mode in each case, where a water molecule bridges from the carbonyl oxygen atom to His-57; this mode is equivalent to the crystallographically determined structure of 3-(indol-3-yl)acryloyl-chymotrypsin, i.e. the Henderson structure. A difference spectrum of dihydrocinnamoyl-chymotrypsin taken at higher pH shows resolution of a feature centred upon 1731 cm-1, which is assigned to a non-bonded conformer in which the carbonyl oxygen atom is not hydrogen-bonded. Perturbation of the protein spectrum in the presence of acyl groups is interpreted in terms of enhanced structural rigidity. It is reported that the ester carbonyl region of the difference spectrum of cinnamoyl-subtilisin is complicated by overlap of features that arise from protein perturbation. Measurements of carbonyl absorption frequencies in a number of solvents of the methyl esters of the acyl groups used to make acyl-enzymes have permitted determination of the apparent dielectric constants experienced by carbonyl groups in the enzyme active centre as well as a discussion of the effects of polarity. The ester carbonyl bond strengths of the various conformations were estimated by using simple harmonic oscillator theory and an empirical relation between the force constants and bond strengths. The fractional bond breaking induced by hydrogen-bonding was used to calculate rate enhancement factors by using absolute reaction rate theory.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:I.r.给出了低pH下3-(吲哚-3-基)丙烯酰基-,肉桂酰基-,3-(5-甲基噻吩-2-基)丙烯酰基-,脱氢肉桂酰基-和二氢肉桂酰基-胰凝乳蛋白酶的差异光谱,其中酰基酶为无催化活性。在光谱的酯羰基拉伸区域中分别观察到至少两个吸收带。制备在羰基碳原子上被13 C取代的肉桂酰基-胰凝乳蛋白酶。从[12C]酰基酶减去13C取代的酰基酶的差谱显示出在酯羰基区域中的两个谱带,因此证实了特征被分配给单个酯羰基。酯羰基带的频率用氢键差来解释。在每种情况下,较低频率的较窄带被分配给生产性潜在的反应性结合模式,其中羰基氧原子被插入酶活性中心的氧阴离子孔中。在每种情况下,较高的频带被分配给非生产性结合模式,其中水分子从羰基氧原子桥接到His-57;这种模式相当于3-(吲哚-3-基)丙烯酰基-胰凝乳蛋白酶的晶体学确定的结构,即亨德森结构。在较高pH下获得的二氢肉桂酰-胰凝乳蛋白酶的差异光谱显示了以1731 cm-1为中心的特征的分辨率,该特征分配给未键合的构象异构体,其中羰基氧原子未与氢键结合。在存在酰基的情况下,蛋白质光谱的扰动是根据增强的结构刚度来解释的。据报道,肉桂酰基-枯草杆菌蛋白酶差异光谱的酯羰基区由于蛋白质扰动引起的特征重叠而变得复杂。对用于制备酰基酶的酰基甲酯的多种溶剂中羰基吸收频率的测量,可以确定酶活性中心中羰基所经历的表观介电常数,并讨论了极性。通过使用简单的谐振子理论和力常数与键强度之间的经验关系,可以估算出各种构型的酯羰基键强度。通过绝对反应速率理论,使用氢键引起的分数键断裂来计算速率增强因子。(摘要截短为400字)

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