Institute of Biotechnology, Beijing 100071, China.
J Inorg Biochem. 2011 Jan;105(1):52-7. doi: 10.1016/j.jinorgbio.2010.10.002. Epub 2010 Oct 8.
We have previously elucidated a new paradigm for the metal ion-induced helix-helix assembly in the natural γ-carboxyglutamic acid (Gla)-containing class of conantokin (con) peptides, typified by con-G and a variant of con-T, con-T[K7Gla], independent of the hydrophobic effect. In these "metallo-zipper" structures, Gla residues spaced at i, i+4, i+7, i+11 intervals, which is similar to the arrangement of a and d residues in typical heptads of coiled-coils, coordinate with Ca(2+) and form specific antiparallel helical dimers. In order to evaluate the common role of Gla residues in peptide self-assembly, we extend herein the same Gla arrangement to designed peptides: NH(2)-(γLSγEAK)(3)-CONH(2) (peptide 1) and NH(2)-γLSγEAKγLSγQANγLSγKAE-CONH(2) (peptide 2). Peptide 1 and peptide 2 exhibit no helicity alone, but undergo structural transitions to helical conformations in the presence of a variety of divalent cations. Sedimentation equilibrium ultracentrifugation analyses showed that peptide 1 and peptide 2 form helical dimers in the presence of Ca(2+), but not Mg(2+). Folding and thiol-disulfide rearrangement assays with Cys-containing peptide variants indicated that the helical dimers are mixtures of antiparallel and parallel dimers, which is different from the strict antiparallel strand orientations of con-G and con-T[K7γGla] dimers. These findings suggest that the Gla arrangement, i, i+4, i+7, i+11, i+14, plays a key role in helix formation, without a strict adherence to strand orientation of the helical dimer.
我们之前已经阐明了一个新的模式,即在天然γ-羧基谷氨酸(Gla)含有类 Conantokin(Con)肽中,金属离子诱导的螺旋-螺旋组装,由 Con-G 和 Con-T 的一个变体 Con-T[K7Gla]代表,与疏水性无关。在这些“金属拉链”结构中,Gla 残基间隔为 i、i+4、i+7、i+11 个位置,类似于典型的卷曲螺旋中 a 和 d 残基的排列,与 Ca(2+)配位并形成特定的反平行螺旋二聚体。为了评估 Gla 残基在肽自组装中的共同作用,我们在此将相同的 Gla 排列扩展到设计的肽中:NH(2)-(γLSγEAK)(3)-CONH(2)(肽 1)和 NH(2)-γLSγEAKγLSγQANγLSγKAE-CONH(2)(肽 2)。肽 1 和肽 2 单独没有螺旋结构,但在存在各种二价阳离子时会发生结构转变为螺旋构象。沉降平衡超速离心分析表明,肽 1 和肽 2 在 Ca(2+)存在下形成螺旋二聚体,但在 Mg(2+)存在下则不形成。含半胱氨酸肽变体的折叠和巯基-二硫键重排实验表明,螺旋二聚体是反平行和平行二聚体的混合物,与 Con-G 和 Con-T[K7γGla]二聚体严格的反平行链取向不同。这些发现表明,Gla 排列 i、i+4、i+7、i+11、i+14 在螺旋形成中起着关键作用,而不需要严格遵循螺旋二聚体的链取向。