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首页> 外文期刊>Protein and peptide letters >Active Form of Neuroprotective Humanin, HN, and Inactive Analog, S7A-HN, are Monomeric and Disordered in Aqueous Phosphate Solution at pH 6.0; No Correlation of Solution Structure with Activity
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Active Form of Neuroprotective Humanin, HN, and Inactive Analog, S7A-HN, are Monomeric and Disordered in Aqueous Phosphate Solution at pH 6.0; No Correlation of Solution Structure with Activity

机译:神经保护性Humanin HN和非活性类似物S7A-HN的活性形式是单体的,在pH 6.0的磷酸盐水溶液中无序;溶液结构与活性无相关性

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摘要

A novel neuroprotective peptide, Humanin (HN), has a strong tendency to aggregate in phosphate-buffered saline. Here we attempted to reduce aggregation employing an aqueous phosphate solution, without NaCl, at pH 6.0 and low peptide concentrations wherever possible. Such a condition, though not fully physiological, allowed us to determine the secondary structure and molecular weight of the peptides. Comparison of a parent HN peptide, an inactive analog (S7A-HN) and a 1000-fold more active analog (S14G-HN) showed no apparent differences in the secondary structure. These peptides were all disordered over the wide range of peptide concentration. Sedimentation analysis was done only for HN and S7A-HN and showed aggregation into soluble oligomers in 20 mM phosphate at pH 6.0. Aggregation was greatly suppressed in 5 mM phosphate at the same pH in terms of aggregate size, with the formation of smaller oligomers. Sedimentation velocity experiments at 60,000 rpm in 5 mM phosphate at pH 6.0 showed that both HN and S7A-HN distributed into soluble aggregates that sedimented to the bottom of the cell and low molecular weight species that approached sedimentation equilibrium. The mass of this low molecular weight species was determined by sedimentation equilibrium to be close to monomers for both peptides. Thus, these results clearly demonstrate that the active HN and inactive S7A-HN are identical in structure and hence there is no apparent correlation between solution structure and biological activity.
机译:一种新型的神经保护肽,Humanin(HN),有很强的聚集在磷酸盐缓冲盐水中的趋势。在这里,我们尝试在pH 6.0和低肽浓度的情况下,使用不含NaCl的磷酸盐水溶液来减少聚集。这种状况尽管不是完全生理的,但使我们能够确定肽的二级结构和分子量。亲本HN肽,无活性类似物(S7A-HN)和活性高1000倍的类似物(S14G-HN)的比较显示,二级结构没有明显差异。这些肽在整个肽浓度范围内均无序。仅对HN和S7A-HN进行了沉淀分析,结果显示在pH 6.0的20 mM磷酸盐中聚集成可溶性低聚物。就聚集体大小而言,在相同pH值的5 mM磷酸盐中,聚集被大大抑制,并形成了较小的低聚物。在pH值为6.0的5 mM磷酸盐中以60,000 rpm的速度进行的沉积速度实验表明,HN和S7A-HN均分布在可溶的聚集体中,沉淀到细胞底部,而低分子量物质则达到了沉淀平衡。通过沉降平衡确定​​该低分子量物质的质量,使其与两种肽的单体均接近。因此,这些结果清楚地证明了活性HN和非活性S7A-HN在结构上是相同的,因此溶液结构与生物活性之间没有明显的相关性。

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