Otting G, Liepinsh E, Wüthrich K
Institut für Molekularbiologie und Biophysik, Eidgenössische Technische Hochschule-Hönggerberg, Zürich, Switzerland.
Biochemistry. 1993 Apr 13;32(14):3571-82. doi: 10.1021/bi00065a008.
Two conformational isomers were observed in the 1H nuclear magnetic resonance (NMR) spectra of the basic pancreatic trypsin inhibitor (BPTI) and of a mutant protein with Gly 36 replaced by Ser, BPTI(G36S). The less abundant isomer differs from the major conformation by different chirality of the Cys 14-Cys 38 disulfide bond. In BPTI, the population of the minor conformer increases from about 1.5% at 4 degrees C to 8% at 68 degrees C. In BPTI(G36S), the population of the minor conformation is about 15% of the total protein, so that a detailed structural study was technically feasible; a trend toward increasing population of the minor conformer at higher temperatures was observed also for this mutant protein. The activation parameters for the exchange between the two conformations were measured in the temperature range 4-68 degrees C, using uniformly 15N-enriched protein samples. Below room temperature the exchange rate of the disulfide flip follows an Arrhenius-type temperature dependence, with negative activation entropy in both proteins. At higher temperatures the exchange rates are governed by a different set of activation parameters, which are similar to those for the ring flips of Tyr 35 about the C beta-C gamma bond. Although the equilibrium enthalpy and entropy were found to be largely temperature independent, the activation entropy changes sign and is positive at higher temperatures. These results suggest that, above room temperature, the disulfide flips are coupled to the same protein structure fluctuations as the ring flips of Tyr 35.
在碱性胰蛋白酶抑制剂(BPTI)以及半胱氨酸36被丝氨酸取代的突变蛋白BPTI(G36S)的核磁共振氢谱(1H NMR)中观察到了两种构象异构体。丰度较低的异构体与主要构象的不同之处在于Cys 14-Cys 38二硫键具有不同的手性。在BPTI中,次要构象异构体的比例从4℃时的约1.5%增加到68℃时的8%。在BPTI(G36S)中,次要构象的比例约占总蛋白的15%,因此进行详细的结构研究在技术上是可行的;对于这种突变蛋白,在较高温度下也观察到次要构象异构体比例增加的趋势。使用均匀富集15N的蛋白质样品,在4-68℃温度范围内测量了两种构象之间交换的活化参数。在室温以下,二硫键翻转的交换速率遵循阿伦尼乌斯型温度依赖性,两种蛋白质的活化熵均为负。在较高温度下,交换速率受另一组活化参数的控制,这与Tyr 35围绕Cβ-Cγ键的环翻转的活化参数相似。尽管发现平衡焓和熵在很大程度上与温度无关,但活化熵在较高温度下改变符号并变为正值。这些结果表明,在室温以上,二硫键翻转与Tyr 35的环翻转耦合到相同的蛋白质结构波动。