Cleary Jennifer A, Doherty William, Evans Paul, Malthouse J Paul G
School of Biomolecular and Biomedical Science, Centre for Synthesis and Chemical Biology, Conway Institute, University College Dublin, Dublin 4, Ireland.
School of Chemistry and Chemical Biology, Centre for Synthesis and Chemical Biology, Conway Institute, University College Dublin, Dublin 4, Ireland.
Biochim Biophys Acta. 2014 Jun;1844(6):1119-27. doi: 10.1016/j.bbapap.2014.03.008. Epub 2014 Mar 21.
The aldehyde inhibitor Z-Ala-Ala-Phe-CHO has been synthesized and shown by (13)C-NMR to react with the active site serine hydroxyl group of alpha-chymotrypsin to form two diastereomeric hemiacetals. For both hemiacetals oxyanion formation occurs with a pKa value of ~7 showing that chymotrypsin reduces the oxyanion pKa values by ~5.6 pKa units and stabilizes the oxyanions of both diastereoisomers by ~32kJmol(-1). As pH has only a small effect on binding we conclude that oxyanion formation does not have a significant effect on binding the aldehyde inhibitor. By comparing the binding of Z-Ala-Ala-Phe-CHO with that of Z-Ala-Ala-Phe-H we estimate that the aldehyde group increases binding ~100 fold. At pH7.2 the effective molarity of the active site serine hydroxy group is ~6000 which is ~7× less effective than with the corresponding glyoxal inhibitor. Using (1)H-NMR we have shown that at both 4 and 25°C the histidine pKa is ~7.3 in free chymotrypsin and it is raised to ~8 when Z-Ala-Ala-Phe-CHO is bound. We conclude that oxyanion formation only has a minor role in raising the histidine pKa and that the aldehyde hydrogen must be replaced by a larger group to raise the histidine pKa>10 and give stereospecific formation of tetrahedral intermediates. The results show that a large increase in the pKa of the active site histidine is not needed for the active site serine hydroxyl group to have an effective molarity of 6000.
醛抑制剂Z - Ala - Ala - Phe - CHO已被合成,并且通过(13)C - NMR表明它与α-胰凝乳蛋白酶的活性位点丝氨酸羟基反应形成两种非对映异构的半缩醛。对于这两种半缩醛,氧负离子的形成发生时的pKa值约为7,这表明胰凝乳蛋白酶使氧负离子的pKa值降低了约5.6个pKa单位,并使两种非对映异构体的氧负离子稳定了约32kJmol(-1)。由于pH对结合的影响很小,我们得出结论,氧负离子的形成对醛抑制剂的结合没有显著影响。通过比较Z - Ala - Ala - Phe - CHO与Z - Ala - Ala - Phe - H的结合情况,我们估计醛基使结合增加了约100倍。在pH7.2时,活性位点丝氨酸羟基的有效摩尔浓度约为6000,这比相应的乙二醛抑制剂的效率低约7倍。使用(1)H - NMR我们表明,在4°C和25°C时,游离胰凝乳蛋白酶中组氨酸的pKa约为7.3,当结合Z - Ala - Ala - Phe - CHO时,其升高到约8。我们得出结论,氧负离子的形成在提高组氨酸pKa方面仅起次要作用,并且醛氢必须被更大的基团取代才能使组氨酸pKa>10并立体特异性地形成四面体中间体。结果表明,活性位点丝氨酸羟基具有6000的有效摩尔浓度时,活性位点组氨酸的pKa不需要大幅增加。