Centre for Cellular and Molecular Biology, Council of Scientific and Industrial Research, Uppal Road, Hyderabad 500 007, India.
J Phys Chem B. 2012 Sep 13;116(36):11056-64. doi: 10.1021/jp304846f. Epub 2012 Aug 30.
The linear ion channel peptide gramicidin serves as an excellent prototype for monitoring the organization, dynamics, and function of membrane-spanning channels. The tryptophan residues in gramicidin channels are crucial for establishing and maintaining the structure and function of the channel in the membrane bilayer. In order to address the basis of differential importance of tryptophan residues in the gramicidin channel, we monitored the effects of pairwise substitution of two of the four gramicidin tryptophans, the inner pair (Trp-9 and -11) and the outer pair (Trp-13 and -15), using a combination of steady state and time-resolved fluorescence approaches and circular dichroism spectroscopy. We show here that these double tryptophan gramicidin analogues adopt different conformations in membranes, suggesting that the conformational preference of double tryptophan gramicidin analogues is dictated by the positions of the tryptophans in the sequence. These results assume significance in the context of recent observations that the inner pair of tryptophans (Trp-9 and -11) is more important for gramicidin channel formation and channel conductance. These results could be potentially useful in analyzing the effect of tryptophan substitution on the functioning of ion channels and membrane proteins.
线性离子通道肽短杆菌肽可用作监测跨膜通道的组织、动力学和功能的极好原型。短杆菌肽通道中的色氨酸残基对于在膜双层中建立和维持通道的结构和功能至关重要。为了解释短杆菌肽通道中色氨酸残基的差异重要性的基础,我们使用稳态和时间分辨荧光方法和圆二色性光谱学组合,监测了两种四个短杆菌肽色氨酸(内部对(Trp-9 和 -11)和外部对(Trp-13 和 -15))的成对替换的影响。我们在这里表明,这些双色氨酸短杆菌肽类似物在膜中采用不同的构象,这表明双色氨酸短杆菌肽类似物的构象偏好由序列中色氨酸的位置决定。这些结果在最近观察到的内部色氨酸对(Trp-9 和 -11)对短杆菌肽通道形成和通道电导更重要的情况下具有重要意义。这些结果在分析色氨酸取代对离子通道和膜蛋白功能的影响方面可能具有潜在的用途。