首页> 外文期刊>The Journal of Biochemistry >The Effects of the Side Chains of Hydrophobic Aliphatic Amino Acid Residues in an Amphipathic Polypeptide on the Formation of {alpha} Helix and Its Association.
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The Effects of the Side Chains of Hydrophobic Aliphatic Amino Acid Residues in an Amphipathic Polypeptide on the Formation of {alpha} Helix and Its Association.

机译:疏水性脂肪族氨基酸残基侧链在两亲多肽上形成{α螺旋螺旋形成及其关联的影响。

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摘要

The polypeptide alpha3, which was synthesized by us to produce an amphipathic helix structure, contains the regular three times repeated sequence (LETLAKA)(3), and alpha3 forms a fibrous assembly. To clarify how the side chains of amino acid residues affect the formation of alpha helix, Leu residues, which are located in the hydrophobic surface of an amphipathic helix, were replaced by other hydrophobic aliphatic amino acid residues systematically, and the characters of the resulting polypeptides were studied. According to the circular dichroism (CD) spectra, the Ile-substituted polypeptides formed alpha helix like alpha3. However, their helix formation ability was weaker than that of alpha3 under some conditions. The Val-substituted polypeptides formed alpha helix only under restricted condition. The Ala-substituted polypeptides did not form alpha helix under any condition. Thus, it is clear that the order of the alpha helix formation ability is as follows: Leu >/= Ile > Val > Ala. The formation of alpha helix was confirmed by Fourier Transform Infrared (FTIR) spectra. Through electron microscopic observation, it was clarified that the formation of the alpha helix structure correlates with the formation of a fibrous assembly. The amphipathic alpha helix structure would be stabilized by the formation of the fibrous assembly.
机译:由我们合成的多肽α3以产生两亲螺旋结构,含有常规的三次重复序列(Letlaka)(3),并且α3形成纤维组件。为了阐明氨基酸残基的侧链如何影响α螺旋的形成,位于两亲螺旋的疏水表面的Leu残基被系统地系统地被其他疏水性脂肪族氨基酸残基替换,以及所得多肽的特征研究过。根据圆形二色性(CD)光谱,ILE-取代的多肽形成α螺旋等α3。然而,在某些条件下,它们的螺旋形成能力弱于α3的能力。 Val-取代的多肽仅在限制条件下形成α螺旋。 ALA取代的多肽在任何条件下都没有形成α螺旋。因此,很明显,α螺旋形成能力的顺序如下:Leu> / = Ile> Val> Ala。通过傅里叶变换红外(FTIR)光谱来确认α螺旋的形成。通过电子显微镜观察,阐明了α螺旋结构的形成与纤维组件的形成相关。通过形成纤维组件来稳定两性α螺旋结构。

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