Javadpour M M, Eilers M, Groesbeek M, Smith S O
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06520-8114, USA.
Biophys J. 1999 Sep;77(3):1609-18. doi: 10.1016/S0006-3495(99)77009-8.
The nature and distribution of amino acids in the helix interfaces of four polytopic membrane proteins (cytochrome c oxidase, bacteriorhodopsin, the photosynthetic reaction center of Rhodobacter sphaeroides, and the potassium channel of Streptomyces lividans) are studied to address the role of glycine in transmembrane helix packing. In contrast to soluble proteins where glycine is a noted helix breaker, the backbone dihedral angles of glycine in transmembrane helices largely fall in the standard alpha-helical region of a Ramachandran plot. An analysis of helix packing reveals that glycine residues in the transmembrane region of these proteins are predominantly oriented toward helix-helix interfaces and have a high occurrence at helix crossing points. Moreover, packing voids are generally not formed at the position of glycine in folded protein structures. This suggests that transmembrane glycine residues mediate helix-helix interactions in polytopic membrane proteins in a fashion similar to that seen in oligomers of membrane proteins with single membrane-spanning helices. The picture that emerges is one where glycine residues serve as molecular notches for orienting multiple helices in a folded protein complex.
研究了四种多跨膜蛋白(细胞色素c氧化酶、细菌视紫红质、球形红杆菌的光合反应中心和变铅青链霉菌的钾通道)螺旋界面中氨基酸的性质和分布,以探讨甘氨酸在跨膜螺旋堆积中的作用。与可溶性蛋白中甘氨酸是著名的螺旋破坏者不同,跨膜螺旋中甘氨酸的主链二面角大多落在拉氏图的标准α螺旋区域内。对螺旋堆积的分析表明,这些蛋白跨膜区域中的甘氨酸残基主要朝向螺旋-螺旋界面,并且在螺旋交叉点处出现频率很高。此外,在折叠的蛋白质结构中,甘氨酸位置通常不会形成堆积空隙。这表明跨膜甘氨酸残基以类似于单跨膜螺旋膜蛋白寡聚体中的方式介导多跨膜蛋白中的螺旋-螺旋相互作用。呈现出的情况是,甘氨酸残基作为分子缺口,用于在折叠的蛋白质复合物中定向多个螺旋。