Oakley M G, Kim P S
Department of Biology, Massachusetts Institute of Technology, Cambridge 02142, USA.
Biochemistry. 1997 Mar 4;36(9):2544-9. doi: 10.1021/bi962391t.
The alpha-helices of coiled-coil proteins are predominantly parallel, in contrast to the general preference for an antiparallel orientation of interacting alpha-helices found in globular proteins. One intriguing exception is the antiparallel, two-stranded coiled coil comprising the long helical arm of the bacterial seryl tRNA synthetases (SRS). A recombinant 82-residue peptide corresponding to the helical arm of Escherichia coli SRS folds into a stable, monomeric, helical structure in the absence of the rest of the protein, as shown by circular dichroism (CD) and equilibrium sedimentation centrifugation. However, peptides corresponding to the individual helices of SRS are unstructured at neutral pH and do not associate appreciably at total peptide concentrations up to 100 microM. Covalent attachment of the the two peptides through a nonnatural, disulfide-containing linker restores structure and allows study of variants in which the individual helices are constrained to interact in either an antiparallel or a parallel orientation. We find that the antiparallel species are substantially more helical and more stable to thermal denaturation than their parallel counterpart. Thus, the SRS helical arm is an autonomously folding unit, and, unlike most other coiled coils, has an intrinsic preference for an antiparallel orientation of its constituent helices.
卷曲螺旋蛋白的α螺旋主要是平行的,这与球状蛋白中相互作用的α螺旋通常倾向于反平行方向形成对比。一个有趣的例外是由细菌丝氨酰tRNA合成酶(SRS)的长螺旋臂组成的反平行双链卷曲螺旋。如圆二色性(CD)和平衡沉降离心所示,对应于大肠杆菌SRS螺旋臂的一个82个残基的重组肽在没有蛋白质其余部分的情况下折叠成稳定的单体螺旋结构。然而,对应于SRS单个螺旋的肽在中性pH下是无结构的,并且在总肽浓度高达100μM时不会明显缔合。通过含非天然二硫键的接头将这两个肽共价连接可恢复结构,并允许研究单个螺旋被限制以反平行或平行方向相互作用的变体。我们发现,与平行对应物相比,反平行物种的螺旋性更强,对热变性更稳定。因此,SRS螺旋臂是一个自主折叠单元,并且与大多数其他卷曲螺旋不同,其组成螺旋具有内在的反平行方向偏好。