Malikayil J A, Lerch K, Armitage I M
Department of Molecular Biophysics and Biochemistry, Yale University School of Medicine, New Haven, Connecticut 06510.
Biochemistry. 1989 Apr 4;28(7):2991-5. doi: 10.1021/bi00433a038.
Sequential 1H NMR assignments of a metallothionein from Neurospora crassa have been accomplished by the combined use of COSY, 2QF-COSY, HOHAHA, and rotating-frame NOE experiments. All potentially observable resonances were assigned except for the epsilon-NH3 group of the C-terminal lysine. 1H NOEs, when observed in the laboratory frame and at 500-MHz spectrometer frequency, were negligible in this protein due to the inherent rotational correlation time of the molecule. This difficulty was circumvented by measuring transverse NOEs in the rotating frame under spin-locking conditions. The observed pattern of NOEs reveals a marked absence of "regular" secondary structures in the protein. Thus, the stability of this metallothionein's tertiary structure must arise primarily from its metal ligation. This appears to be a general feature of MTs since a general lack of extensive secondary structural elements was also observed in other metallothioneins.
通过联合使用COSY、2QF-COSY、HOHAHA和旋转框架NOE实验,已完成了粗糙脉孢菌金属硫蛋白的连续¹H NMR归属。除了C末端赖氨酸的ε-NH₃基团外,所有可能观察到的共振峰都已归属。由于该分子固有的旋转相关时间,在实验室框架下以500 MHz光谱仪频率观察时,¹H NOE在该蛋白质中可忽略不计。通过在自旋锁定条件下测量旋转框架中的横向NOE,克服了这一困难。观察到的NOE模式表明该蛋白质明显缺乏“规则”二级结构。因此,这种金属硫蛋白三级结构的稳定性必定主要源于其金属配位。这似乎是金属硫蛋白的一个普遍特征,因为在其他金属硫蛋白中也观察到普遍缺乏广泛的二级结构元件。