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首页> 外文期刊>Biochemistry >pH and urea dependence of amide hydrogen-deuterium exchange rates in the #beta#-trefoil protein hisactophilin
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pH and urea dependence of amide hydrogen-deuterium exchange rates in the #beta#-trefoil protein hisactophilin

机译:pH和尿素依赖性#beta#-三叶蛋白组织亲脂蛋白中酰胺氢-氘交换速率

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摘要

Amide hydrogen/deuterium exchange rates were measured as a function of pH and urea for 37 slowly exchanging amides in the #beta#-trefoil protein hisactophilin. The rank order of exchange rates is generally maintained under different solution conditions, and trends in the pH and urea dependence of exchange rates are correlated with the rank order of exchange rates. The observed trends are consistent with the expected behavior for exchange of different amides via global and/or local unfolding. Anlaysis of the pH dependence of exchange in terms of rate constants for structural opening and closing reveals a wide range of rates in different parts of the hisactophilin structure. The slowest exchanging amides have the slowest opening and closing rates. Many of the slowest exchanging amides are located in trefoil 2, but there are also some slow exchanging amides in trefoils 1 and 3. Slow exchangers tend to be near the interface between the #beta#-barrel and the #beta#-hairpin triplet portions of this single-domain structure. The pattern of exchange behaviour in hisactophilin is similar to that observed previously in interleukin-1#beta#, indicating that exchange properties may be conserved among #beta#-trefoil proteins. Comparisons of opening and closing rates in hisactophilin with rates obtained for other proteins reveal clear trends for opening rates; however, trends in closing rates are less apparent, perhaps due to inaccuracies in the values used for intrinsic exchange rates in the data fitting. On the basis of the pH and urea dependence of exchange rates and optical measurements of stability and folding, EX2 is the main exchange mechanism in hisactophilin, but there is also evidence for varying levels of EX1 exchanges at low and high pH and high urea concentrations. Equilibrium intermediates in which subglobal portions of structure are cooperatively disrupted are not apparent from analysis of the urea dependence of exchange rates. There is, however, a strong correlation between the Gibbs free energy of opening and the denaturant dependence of opening for all amides, which suggests exchange from a continuum of states with different levels of structure. Intermediates are not very prominent either in equilibrium exchange experiments or in quenched-flow kinetic studies; hence, hisactophilin may not form partially folded states as readily as IL-1#beta# and other #beta#-trefoil proteins.
机译:测定#beta#-三叶蛋白组织亲脂蛋白中37种缓慢交换酰胺的酰胺氢/氘交换速率与pH和尿素的关系。通常在不同的溶液条件下维持汇率的排名次序,并且汇率的pH和尿素依赖性的趋势与汇率的排名次序相关。观察到的趋势与通过全局和/或局部展开交换不同酰胺的预期行为一致。根据结构打开和关闭的速率常数对交换的pH依赖性进行的分析揭示,在嗜木菌素结构的不同部分速率变化很大。交换最慢的酰胺的开合速率最慢。许多最慢的交换酰胺位于三叶草2中,但在三叶草1和3中也有一些慢交换的酰胺。缓慢的交换剂往往靠近#beta#-桶和#beta#-发夹三联体之间的界面。这种单域结构。组织亲脂蛋白中的交换行为模式与先前在白介素-1#beta#中观察到的模式相似,表明交换特性在#beta#-三叶蛋白之间可能是保守的。将组蛋白的打开和关闭速度与其他蛋白质的打开和关闭速度进行比较,发现打开速度的趋势很明显。但是,收盘率趋势不太明显,这可能是由于数据拟合中用于固有汇率的值不准确所致。根据pH和尿素的交换速率依赖性以及稳定性和折叠的光学测量结果,EX2是亲脂蛋白中的主要交换机制,但也有证据表明,在低pH和高pH以及高尿素浓度下,EX1交换的水平有所不同。通过分析尿素对汇率的依赖性,看不到其中亚整体结构被协同破坏的平衡中间体。但是,所有酰胺的吉布斯自由能与打开的变性依赖关系之间都具有很强的相关性,这表明来自具有不同结构水平的连续状态的交换。中间体在平衡交换实验或急流动力学研究中都不是很突出。因此,组亲脂蛋白可能不像IL-1#beta#和其他#beta#-三叶蛋白那样容易形成部分折叠状态。

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