Malashkevich Vladimir N, Higgins Chelsea D, Almo Steven C, Lai Jonathan R
Department of Biochemistry, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, NY, 10461.
Biopolymers. 2015 May;104(3):178-85. doi: 10.1002/bip.22631.
The coiled-coil is one of the most ubiquitous and well studied protein structural motifs. Significant effort has been devoted to dissecting subtle variations of the typical heptad repeat sequence pattern that can designate larger topological features such as relative α-helical orientation and oligomer size. Here we report the X-ray structure of a model coiled-coil peptide, HA2-Del-L2seM, which forms an unanticipated core antiparallel dimer with potential sites for discrete higher-order multimerization (trimer or tetramer). In the X-ray structure, a third, partially-ordered α-helix is weakly associated with the antiparallel dimer and analytical ultracentrifugation experiments indicate the peptide forms a well-defined tetramer in solution. The HA2-Del-L2seM sequence is closely related to a parent model peptide, HA2-Del, which we previously reported adopts a parallel trimer; HA2-Del-L2seM differs by only hydrophobic leucine to selenomethione mutations and thus this subtle difference is sufficient to switch both relative α-helical topology and number of α-helices participating in the coiled-coil. Comparison of the X-ray structures of HA2-Del-L2seM (reported here) with the HA2-Del parent (reported previously) reveals novel interactions involving the selenomethionine residues that promote antiparallel coiled-coil configuration and preclude parallel trimer formation. These novel atomic insights are instructive for understanding subtle features that can affect coiled-coil topology and provide additional information for design of antiparallel coiled-coils.
卷曲螺旋是最普遍且研究充分的蛋白质结构基序之一。人们已投入大量精力来剖析典型七肽重复序列模式的细微变化,这些变化可决定更大的拓扑特征,如相对α螺旋取向和寡聚体大小。在此,我们报告了一种模型卷曲螺旋肽HA2-Del-L2seM的X射线结构,它形成了一个意想不到的核心反平行二聚体,具有离散高阶多聚化(三聚体或四聚体)的潜在位点。在X射线结构中,第三条部分有序的α螺旋与反平行二聚体弱相关,分析超速离心实验表明该肽在溶液中形成了明确的四聚体。HA2-Del-L2seM序列与母体模型肽HA2-Del密切相关,我们之前报道HA2-Del采用平行三聚体;HA2-Del-L2seM仅因疏水亮氨酸突变为硒代甲硫氨酸而有所不同,因此这种细微差异足以改变相对α螺旋拓扑结构以及参与卷曲螺旋的α螺旋数量。将HA2-Del-L2seM(本文报道)与HA2-Del母体(先前报道)的X射线结构进行比较,揭示了涉及硒代甲硫氨酸残基的新型相互作用,这些相互作用促进了反平行卷曲螺旋构型并阻止了平行三聚体的形成。这些新的原子层面见解有助于理解可影响卷曲螺旋拓扑结构的细微特征,并为反平行卷曲螺旋的设计提供更多信息。