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Effects of chain length of an amphipathic polypeptide carrying the repeated amino acid sequence (LETLAKA)n on α-helix and fibrous assembly formation

机译:具有重复氨基酸序列(LETLAKA)n的两亲性多肽链长对α-螺旋和纤维装配形成的影响

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摘要

Polypeptide α3 (21 residues), with three repeats of a seven-amino-acid sequence (LETLAKA)_3, forms an amphipathic α-helix and a long fibrous assembly. Here, we investigated the ability of α3-series polypeptides (with 14-42 residues) of various chain lengths to form α-helices and fibrous assemblies. Polypeptide α2 (14 residues), with two same-sequence repeats, did not form an α-helix, but polypeptide α2L (15 residues; α2 with one additional leucine residue on its carboxyl terminal) did form an α-helix and fibrous assembly. Fibrous assembly formation was associated with polypeptides at least as long as polypeptide α2L and with five leucine residues, indicating that the C-terminal leucine has a critical element for stabilization of α-helix and fibril formation. In contrast, polypeptides α5 (35 residues) and α6 (42 residues) aggregated easily, although they formed α-helices. A 15-35-residue chain was required for fibrous assembly formation. Electron microscopy and X-ray fiber diffraction showed that the thinnest fibrous assemblies of polypeptides were about 20 ? and had periodicities coincident with the length of the α-helix in a longitudinal direction. These results indicated that the α-helix structures were orientated along the fibrous axis and assembled into a bundle. Furthermore, the width and length of fibrous assemblies changed with changes in the pH value, resulting in variations in the charged states of the residues. Our results suggest that the formation of fibrous assemblies of amphipathic α-helices is due to the assembly of bundles via the hydrophobic faces of the helices and extension with hydrophobic noncovalent bonds containing a leucine.
机译:具有7个氨基酸序列(LETLAKA)_3的三个重复的多肽α3(21个残基)形成两亲性α-螺旋和长纤维状装配体。在这里,我们研究了各种链长的α3系列多肽(具有14-42个残基)形成α螺旋和纤维装配体的能力。具有两个相同序列重复的多肽α2(14个残基)没有形成α-螺旋,但是多肽α2L(15个残基;在羧基末端带有一个亮氨酸残基的α2)确实形成了α-螺旋和纤维状组件。至少与多肽α2L一样长的纤维装配体形成与多肽有关,并与五个亮氨酸残基相关,这表明C末端亮氨酸具有稳定α-螺旋和原纤维形成的关键元件。相反,尽管多肽α5(35个残基)和α6(42个残基)形成α-螺旋,但它们容易聚集。形成纤维组件需要15-35个残基链。电子显微镜和X射线纤维衍射表明,最薄的多肽纤维集合体约为20μm。并且具有与α-螺旋在长度方向上的长度一致的周期性。这些结果表明,α-螺旋结构沿纤维轴取向并组装成束。此外,纤维组件的宽度和长度随着pH值的变化而变化,导致残留物的带电状态变化。我们的结果表明,两亲性α-螺旋的纤维集合体的形成是由于通过螺旋的疏水面组装了束,并延伸了含有亮氨酸的疏水非共价键。

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