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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Conformation, pore-forming activity, and antigenicity of synthetic peptide analogues of a spiralin putative amphipathic α helix
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Conformation, pore-forming activity, and antigenicity of synthetic peptide analogues of a spiralin putative amphipathic α helix

机译:螺旋蛋白推定的两亲性α螺旋的合成肽类似物的构象,成孔活性和抗原性

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摘要

CCurrent models depict spiralin as a bitopic transmembrane protein with the transbilayer domain being an amphipathic α helix. However, though secondary structure prediction methods suggest a helical conformation for the hypothetical transmembrane segment of spiralin, no potential transmembrane helices could be detected in this protein using the method of Von Heijne (Von Heijne, G. (1992) J. Mol. Biol. 225, 487–494). Therefore, we have reconsidered the spiralin topological model by investigating the properties of the chemically synthesized peptides SM-BC3 (LNAVNTYATLAKAVLDAIQN-NH2) and SC-R8A2 (LNAVNTYATLASAVLEAIKN-NH2), corresponding to the hypothetical transmembrane segments of spiralins of two distinct spiroplasma species. The hydrophobic moment plot method suggests that these spiralin amino acid stretches are class G amphipathic α helices (i.e., helices localized on the surface of a globular protein domain). Circular dichroism spectra showed that both peptides have little ordered structure in aqueous solutions but adopt a mainly helical conformation in the presence of 25% trifluoroethanol or in detergent micelles (up to 74% α helix). Both peptides formed concentration- and voltage-dependent pores in planar lipid bilayers with a unitary conductance of 130 pS in 1 M KCl and with mean numbers of monomers per conducting aggregates of 6 for SC-R8A2 and 9 for SM-BC3. However, the two peptides displayed a haemolytic activity only at high concentrations ( 250 μM) and reacted with antibodies raised against membrane-bound spiralin. Together with previously published results, these data suggest that spiralin is a monotopic membrane protein anchored at the surface of the spiroplasma cell and that the 20-residue amphipathic segment is most probably a class G helix containing a B-cell epitope.
机译:C当前模型将螺旋蛋白描述为双位跨膜蛋白,其中跨双分子层结构域是两亲性α螺旋。然而,尽管二级结构预测方法表明螺旋蛋白的假定跨膜区段具有螺旋构象,但是使用Von Heijne(Von Heijne,G.(1992)J.Mol.Biol。 225,487–494)。因此,我们通过研究化学合成的肽SM-BC3(LNAVNTYATLAKAVLDAIQN-NH2)和SC-R8A2(LNAVNTYATLASAVLEAIKN-NH2)的性质来重新考虑了螺旋蛋白的拓扑模型,这对应于两个不同螺旋体物种的螺旋蛋白的假设跨膜片段。疏水矩图法表明,这些螺旋蛋白氨基酸序列是G类两亲性α螺旋(即位于球形蛋白结构域表面上的螺旋)。圆二色性光谱显示,两种肽在水溶液中几乎没有有序结构,但在25%三氟乙醇或去污剂胶束(最高74%α螺旋)中,主要采用螺旋构象。两种肽均在平面脂质双层中形成浓度和电压相关的孔,在1 M KCl中的单位电导为130 pS,SC-R8A2的每个导电聚集体的平均单体数为6,而SM-BC3的平均导电单体数为9。但是,这两种肽仅在高浓度(250μM)时才显示溶血活性,并与针对膜结合螺旋蛋白的抗体反应。与先前发表的结果一起,这些数据表明螺旋蛋白是锚定在螺旋体细胞表面的单分子膜蛋白,具有20个残基的两亲性片段很可能是包含B细胞表位的G类螺旋。

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