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通过EX1动力学研究蛋白质中的酰胺质子交换:在可变p2H和温度下对碱性胰蛋白酶抑制剂的研究

Amide proton exchange in proteins by EX1 kinetics: studies of the basic pancreatic trypsin inhibitor at variable p2H and temperature.

作者信息

Roder H, Wagner G, Wüthrich K

出版信息

Biochemistry. 1985 Dec 3;24(25):7396-407. doi: 10.1021/bi00346a055.

Abstract

With the use of one-dimensional 1H nuclear magnetic resonance, two-dimensional correlated spectroscopy, and two-dimensional nuclear Overhauser enhancement spectroscopy, the exchange mechanisms for numerous individual amide protons in the basic pancreatic trypsin inhibitor (BPTI) were investigated over a wide range of p2H and temperature. Correlated exchange under an EX1 regime was observed only for the most slowly exchanging protons in the central hydrogen bonds of the antiparallel beta-sheet and only over a narrow range of temperature and p2H, i.e., above ca. 55 degrees C and between p2H 7 and 9, where the opening rates of the structure fluctuations which promote the exchange of these protons are of the order 0.1 min-1. At p2H below 7, the exchange of this most stable group of protons is uncorrelated and is governed by an EX2 mechanism. At p2H above 9, the exchange is also uncorrelated and occurs via either EX2 or EX1 processes promoted by strictly local structure fluctuations. For all other backbone amide protons in BPTI, the exchange was found to be uncorrelated and by an EX2 mechanism under all conditions of p2H and temperature where quantitative measurements could be obtained with the methods used, i.e., for kex approximately less than 5 min-1. From these observations with BPTI it can be concluded that the amide proton exchange in globular proteins is quite generally via EX2 processes, with rare exceptions for measurements with extremely stable protons at high temperature and basic p2H. This emphasizes the need for further development of suitable concepts for the structural interpretation of EX2 amide proton exchange [Wagner, G. (1983) Q. Rev. Biophys. 16, 1-57; Wagner, G., Stassinopoulou, C. I., & Wüthrich, K. (1984) Eur. J. Biochem. 145, 431-436] and for more detailed investigations of the intrinsic exchange rates for solvent-exposed amide protons in the "open" states of a protein [Roder, H., Wagner, G., & Wüthrich, K. (1985) Biochemistry (following paper in this issue)].

摘要

利用一维¹H核磁共振、二维相关光谱和二维核Overhauser增强光谱,在较宽的p2H和温度范围内研究了碱性胰蛋白酶抑制剂(BPTI)中众多单个酰胺质子的交换机制。仅在反平行β折叠中央氢键中交换最慢的质子上观察到EX1机制下的相关交换,且仅在较窄的温度和p2H范围内,即约55℃以上以及p2H在7至9之间,此时促进这些质子交换的结构波动的开放速率约为0.1 min⁻¹。在p2H低于7时,这组最稳定质子的交换不相关,由EX2机制控制。在p2H高于9时,交换也不相关,通过严格局部结构波动促进的EX2或EX1过程发生。对于BPTI中所有其他主链酰胺质子,发现在所有p2H和温度条件下,交换都是不相关的,且在所用方法可进行定量测量的情况下(即对于kex约小于5 min⁻¹),由EX2机制控制。从对BPTI的这些观察结果可以得出结论,球状蛋白质中的酰胺质子交换通常通过EX2过程进行,在高温和碱性p2H下极稳定质子的测量中很少有例外。这强调了需要进一步发展合适的概念,用于对EX2酰胺质子交换进行结构解释[瓦格纳,G.(1983年)《生物物理学季评》16,1 - 57;瓦格纳,G.、斯塔西诺普洛,C. I.和伍特里希,K.(1984年)《欧洲生物化学杂志》145,431 - 436],以及对蛋白质“开放”状态下溶剂暴露酰胺质子的内在交换速率进行更详细的研究[罗德,H.、瓦格纳,G.和伍特里希,K.(1985年)《生物化学》(本期后续论文)]。

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