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牛胰蛋白酶抑制剂与胰蛋白酶原的结合:光谱学和体积研究。

Binding of bovine pancreatic trypsin inhibitor to trypsinogen: spectroscopic and volumetric studies.

作者信息

Filfil Rana, Ratavosi Arin, Chalikian Tigran V

机构信息

Department of Pharmaceutical Sciences, Leslie Dan Faculty of Pharmacy, University of Toronto, 19 Russell Street, Toronto, Ontario M5S 2S2, Canada.

出版信息

Biochemistry. 2004 Feb 10;43(5):1315-22. doi: 10.1021/bi030188+.

Abstract

We have investigated the binding of bovine pancreatic trypsin inhibitor (BPTI) to bovine trypsinogen by combining ultrasonic velocimetry, high precision densimetry, and fluorescence spectroscopy. We report the changes in volume, adiabatic compressibility, van't Hoff enthalpy, entropy, and free energy that accompany the association of the two proteins at 25 degrees C and pH 8.0. We have used the measured changes in volume and compressibility in conjunction with available structural data to characterize the binding-induced changes in the hydration properties and intrinsic packing of the two proteins. Our estimate reveals that 110 +/- 40 water molecules become released to the bulk from the hydration shells of BPTI and trypsinogen. Furthermore, we find that the intrinsic coefficient of adiabatic compressibility of the two proteins decreases by 14 +/- 2%, which is suggestive of the binding-induced rigidification of the proteins' interior. BPTI-trypsinogen association is an entropy-driven event which proceeds with an unfavorable change in enthalpy. The favorable change in entropy results from partial compensation between two predominant terms. Namely, a large favorable change in hydrational entropy slightly prevails over a close in magnitude but opposite in sign change in configurational entropy. The reduction in configurational entropy and, consequently, protein dynamics is consistent with the observed decrease in intrinsic compressibility. In general, results of this work emphasize the vital role that water plays in modulating protein recognition events.

摘要

我们通过结合超声测速法、高精度密度测定法和荧光光谱法,研究了牛胰蛋白酶抑制剂(BPTI)与牛胰蛋白酶原的结合。我们报告了在25摄氏度和pH 8.0条件下,两种蛋白质结合时体积、绝热压缩性、范特霍夫焓、熵和自由能的变化。我们利用测量得到的体积和压缩性变化,结合现有的结构数据,来描述两种蛋白质结合诱导的水化性质和内在堆积的变化。我们的估计表明,有110±40个水分子从BPTI和胰蛋白酶原的水化层释放到本体中。此外,我们发现两种蛋白质的绝热压缩性固有系数降低了14±2%,这表明蛋白质内部因结合而变得刚性化。BPTI-胰蛋白酶原结合是一个由熵驱动的过程,其焓变不利。熵的有利变化源于两个主要项之间的部分补偿。也就是说,水化熵的大幅有利变化略超过构型熵中大小相近但符号相反的变化。构型熵的降低以及随之而来的蛋白质动力学变化与观察到的固有压缩性降低一致。总的来说,这项工作的结果强调了水在调节蛋白质识别事件中所起的关键作用。

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