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链长对合成α-螺旋卷曲螺旋形成及稳定性的影响

Effect of chain length on the formation and stability of synthetic alpha-helical coiled coils.

作者信息

Su J Y, Hodges R S, Kay C M

机构信息

Department of Biochemistry, University of Alberta, Edmonton, Canada.

出版信息

Biochemistry. 1994 Dec 27;33(51):15501-10. doi: 10.1021/bi00255a032.

Abstract

A series of polypeptides containing 9, 12, 16, 19, 23, 26, 30, 33, and 35 amino acid residues was designed to investigate the effects of peptide chain length on the formation and stability of two-stranded alpha-helical dimers or coiled coils. These peptides were synthesized by the solid-phase method, purified by reversed-phase high-performance liquid chromatography (RP-HPLC), and characterized by RP-HPLC, amino acid composition analysis, and mass spectrometry. The amphipathic alpha-helical peptides were designed to dimerize by interchain hydrophobic interactions at positions a and d and interchain salt bridges between lysine and glutamic acid residues at positions e and g of the repeating heptad sequence of Glu-Ile-Glu-Ala-Leu-Lys-Ala (g-a-b-c-d-e-f). The ability of these peptides to form alpha-helical structures in the presence and absence of a helix-inducing reagent (trifluoroethanol) was monitored by circular dichroism spectroscopy. The helicity of the peptides increased with increasing chain length in a cooperative manner. A minimum of three heptads corresponding to six helical turns was required for a peptide to adopt the two-stranded alpha-helical coiled coil conformation in aqueous medium. The increased stability of the peptides as a result of an increase in hydrophobic interactions (chain length) was demonstrated by the shift in the transitions of the guanidine hydrochloride (Gdn.HCl) denaturation and thermal unfolding profiles. The concentrations of denaturant (Gdn.HCl) required to achieve 50% denaturation are 3.2, 4.9, 6.9, and 7.5 M for peptides 23r, 26r, 30r, and 33r, respectively, in aqueous medium. However, the effect of a chain length increase on coiled-coil stability was not additive. The melting temperature, Tm, at which 50% of the helicity is lost, increased by 34 degrees C in changing the peptide chain length from 23 to 26; however, that shift was only 14 degrees C when the chain length was increased from 30 to 33 residues. These results are consistent with a chain length dependent cooperative folding of the peptides into coiled coils.

摘要

设计了一系列含有9、12、16、19、23、26、30、33和35个氨基酸残基的多肽,以研究肽链长度对双链α-螺旋二聚体或卷曲螺旋的形成和稳定性的影响。这些肽通过固相法合成,通过反相高效液相色谱(RP-HPLC)纯化,并通过RP-HPLC、氨基酸组成分析和质谱进行表征。两亲性α-螺旋肽被设计为通过在a和d位置的链间疏水相互作用以及在重复七肽序列Glu-Ile-Glu-Ala-Leu-Lys-Ala(g-a-b-c-d-e-f)的e和g位置的赖氨酸和谷氨酸残基之间的链间盐桥进行二聚化。通过圆二色光谱监测这些肽在存在和不存在螺旋诱导剂(三氟乙醇)的情况下形成α-螺旋结构的能力。肽的螺旋度以协同方式随着链长度的增加而增加。在水性介质中,肽要采用双链α-螺旋卷曲螺旋构象,至少需要三个对应于六个螺旋圈的七肽。盐酸胍(Gdn.HCl)变性和热解折叠曲线转变的变化证明了由于疏水相互作用(链长度)增加导致肽稳定性的提高。在水性介质中,对于肽23r、26r、30r和33r,达到50%变性所需的变性剂(Gdn.HCl)浓度分别为3.2、4.9、6.9和7.5 M。然而,链长度增加对卷曲螺旋稳定性的影响不是累加的。在将肽链长度从23改变为26时,50%螺旋度丧失时的解链温度Tm升高了34℃;然而,当链长度从30增加到33个残基时,该变化仅为14℃。这些结果与肽链长度依赖性协同折叠成卷曲螺旋一致。

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