Suppr超能文献

丝氨酸蛋白酶催化三联体中氢键强度和交换速率的质子化状态依赖性:牛胰凝乳蛋白酶原A

Protonation-state dependence of hydrogen bond strengths and exchange rates in a serine protease catalytic triad: bovine chymotrypsinogen A.

作者信息

Markley J L, Westler W M

机构信息

National Magnetic Resonance Facility at Madison, Wisconsin, USA.

出版信息

Biochemistry. 1996 Aug 27;35(34):11092-7. doi: 10.1021/bi961366k.

Abstract

Hydrogen-1 nuclear magnetic resonance spectroscopy was used to measure D/H fractionation factors and the temperature dependence of the rate of hydrogen exchange at two sites in the catalytic triad of chymotrypsinogen (hydrogen bond between aspartate-102 and histidine-57 and hydrogen bond between histidine-57 and serine-195) as a function of the protonation states of the constituent residues. Connectivities in one-dimensional spectra used to assign NMR data were collected at three pH values: pH 9, at which His-57 is neutral and Asp-102 is negatively charged; pH 3.5, at which His-57 is positively charged and Asp-102 is negatively charged; and pH 1, at which His-57 is positively charged and Asp-102 is neutral. The signal from H epsilon 2 of histidine-57 was assigned by reference to 1H-1H NOE connectivities at pH 3.5 to the previously assigned signals from the H epsilon 1 and H delta 2 of the same residue. The D/H fractionation factor, phi, for the hydrogen bond between Asp-102 and His-57 changed from phi = 2 at pH 9 to phi = 0.4 at pH 3.5. From studies of model systems, it may be concluded that a change of phi of this magnitude corresponds to a large increase in hydrogen bond strength. A signal from the hydrogen bond between Ser-195 and His-57 was detected only at the lower pH values studied. The D/H fractionation factor for this hydrogen bond was phi = 0.7 at pH 3.5, indicative of a moderately strong interaction. Data obtained at pH 1 indicate that the hydrogen bond between Asp-102 and His-57 is weakened but that the hydrogen bond between His-57 and Ser-195 persists. The results are consistent with the hypothesis that changes in hydrogen bonding strength serve to lower barriers along the reaction coordinate in the catalytic mechanism. Large pH-dependent changes were found in the activation enthalpy (delta H ++) for exchange with protons from the solvent at the hydrogen bond between aspartate-102 and histidine-57: delta H ++ was approximately 10-12 kcal.mol-1 higher at pH 3.5 than at pH 1 or 9.

摘要

利用氢-1核磁共振光谱来测量胰凝乳蛋白酶原催化三联体中两个位点(天冬氨酸-102与组氨酸-57之间的氢键以及组氨酸-57与丝氨酸-195之间的氢键)的D/H分馏因子以及氢交换速率的温度依赖性,该依赖性是组成残基质子化状态的函数。用于确定核磁共振数据的一维光谱中的连接性是在三个pH值下收集的:pH 9,此时组氨酸-57呈中性且天冬氨酸-102带负电荷;pH 3.5,此时组氨酸-57带正电荷且天冬氨酸-102带负电荷;以及pH 1,此时组氨酸-57带正电荷且天冬氨酸-102呈中性。通过参考pH 3.5下的1H-1H NOE连接性,将组氨酸-57的Hε2信号与同一残基的Hε1和Hδ2先前已确定的信号进行关联,从而确定该信号。天冬氨酸-102与组氨酸-57之间氢键的D/H分馏因子φ从pH 9时的φ = 2变为pH 3.5时的φ = 0.4。从模型系统的研究中可以得出结论,这种大小的φ变化对应于氢键强度的大幅增加。仅在研究的较低pH值下检测到了丝氨酸-195与组氨酸-57之间氢键的信号。该氢键的D/H分馏因子在pH 3.5时为φ = 0.7,表明存在中等强度的相互作用。在pH 1时获得的数据表明,天冬氨酸-102与组氨酸-57之间的氢键被削弱,但组氨酸-57与丝氨酸-195之间的氢键仍然存在。这些结果与以下假设一致,即氢键强度的变化有助于降低催化机制中反应坐标上的势垒。在天冬氨酸-102与组氨酸-57之间的氢键处,与溶剂中的质子进行交换的活化焓(ΔH‡)发现了很大的pH依赖性变化:在pH 3.5时,ΔH‡比在pH 1或9时高约10 - 12 kcal·mol-¹。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验