Banci L, Bertini I, Cavazza C, Felli I C, Koulougliotis D
Department of Chemistry, University of Florence, Italy.
Biochemistry. 1998 Sep 1;37(35):12320-30. doi: 10.1021/bi980885f.
Rotating frame 15N relaxation NMR experiments have been performed to study the local mobility of the oxidized and reduced forms of rat microsomal cytochrome b5, in the microsecond to millisecond time range. Measurements of rotating frame relaxation rates (R1rho) were performed as a function of the effective magnetic field amplitude by using off-resonance radio frequency irradiation. Detailed analysis of the two data sets resulted in the identification of slow motions along the backbone nitrogens for both oxidation states of the protein. The local mobility of reduced and oxidized cytochrome b5 turned out to be significantly different; 28 backbone nitrogens of the oxidized form were shown to participate in a conformational exchange process, while this number dropped to 12 in the reduced form. The correlation time, tauex, for the exchange processes could be determined for 21 and 9 backbone nitrogens for oxidized and reduced cytochrome b5, respectively, with their values ranging between 70 and 280 microseconds. The direct experimental evidence provided in this study for the larger mobility of the oxidized form of the protein is consistent with the different backbone NH solvent exchangeability recently documented for the two oxidation states [Arnesano, F., et al. (1998) Biochemistry 37, 173-184]. Our experimental observations may have significant biological implications. The differential local mobility between the two oxidation states is proposed to be an important factor controlling the molecular recognition processes in which cytochrome b5 is involved.
已进行旋转框架15N弛豫核磁共振实验,以研究大鼠微粒体细胞色素b5氧化态和还原态在微秒至毫秒时间范围内的局部流动性。通过使用非共振射频照射,测量旋转框架弛豫率(R1rho)作为有效磁场幅度的函数。对这两组数据集的详细分析导致确定了蛋白质两种氧化态沿主链氮的慢运动。结果表明,还原态和氧化态细胞色素b5的局部流动性存在显著差异;氧化态的28个主链氮参与了构象交换过程,而还原态时这一数字降至12个。对于氧化态和还原态细胞色素b5,分别可以确定21个和9个主链氮的交换过程的相关时间tauex,其值在70至280微秒之间。本研究中提供的关于蛋白质氧化态具有更大流动性的直接实验证据与最近记录的两种氧化态不同的主链NH溶剂交换性一致[Arnesano, F., 等人(1998年)《生物化学》37卷,173 - 184页]。我们的实验观察可能具有重要的生物学意义。两种氧化态之间的局部流动性差异被认为是控制细胞色素b5参与的分子识别过程的一个重要因素。