Institute of Fundamental Sciences, Massey University, Private Bag 11-222, Palmerston North, New Zealand.
J Struct Biol. 2010 May;170(2):364-8. doi: 10.1016/j.jsb.2009.12.006. Epub 2009 Dec 22.
The rod domain of IF molecules has been characterized as four alpha-helical coiled-coil segments (1A, 1B, 2A and 2B), three linkers (L1, L12 and L2) and a stutter at the centre of segment 2B. Two of these breaks in coiled-coil continuity (L2 and stutter) have been modelled on the basis of structural data obtained from related proteins. Subsequently, X-ray crystallographic studies on fragments of IF molecules have shown that both models were correct. The third of the breaks - L1 - was predicted to have a flexible structure, consistent with observations that the head domain can fold back over segments 1A and 1B and also unwind into separate strands. Here the structure of the fourth discontinuity (L12) has been modelled. For most IF chain types two conformations are proposed for an eight-residue motif that displays a quasi two-residue repeat based on the presence of apolar residues. In IF it is proposed that the motif will adopt an alpha-helical conformation but that in the molecule the conformation will be beta-like. Thus, assembly will result in or result from a conformational change in L12 thereby attributing L12 a more dynamic and important role in assembly than expected.
IF 分子的杆域被描述为四个α-螺旋卷曲螺旋段(1A、1B、2A 和 2B)、三个连接段(L1、L12 和 L2)和 2B 段中心的一个停顿。其中两个卷曲螺旋连续性的中断(L2 和停顿)是基于从相关蛋白质获得的结构数据建模的。随后,对 IF 分子片段的 X 射线晶体学研究表明,这两个模型都是正确的。第三个中断-L1-被预测具有灵活的结构,这与观察到的头部结构可以折叠回 1A 和 1B 段并展开成单独的链一致。这里对第四个不连续性(L12)进行了建模。对于大多数 IF 链类型,提出了一种八残基基序的两种构象,该基序基于非极性残基的存在显示出准两残基重复。在 IF 中,假设该基序将采用α-螺旋构象,但在分子中,构象将呈β样。因此,组装将导致 L12 发生构象变化,从而使 L12 在组装中发挥比预期更动态和重要的作用。