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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Structure-function relationships in histidine-rich antimicrobial peptides from Atlantic cod
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Structure-function relationships in histidine-rich antimicrobial peptides from Atlantic cod

机译:大西洋鳕鱼富含组氨酸的抗菌肽的结构-功能关系

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摘要

Gad-1 and Gad-2 are antimicrobial peptide (AMP) sequences encoded by paralogous genes. They are rich in histidine, which suggests that their activity might be pH-dependent. We examined their structure-function relationships with a view to learning how to improve AMP therapeutic ratios. Activity assays with Gram-negative bacteria and cancer cell lines demonstrate that Gad-2 is substantially more active at slightly acidic pH than it is at neutral pH. By contrast, the activity of Gad-1 at lower pH is similar to its activity at pH 7. Circular dichroism spectra indicate that the greater functional plasticity of Gad-2 correlates with a greater structural plasticity; Gad-2's percent helicity varies dramatically with altered pH and lipid environment. Interestingly, Gad-2's highest levels of helicity do not correspond to the conditions where it is most active. High resolution solution NMR structures were determined in SDS micelles at pH 5, conditions that induce an intermediate level of helicity in the peptides. Gad-1 is more helical than Gad-2, with both peptides exhibiting the greatest helical tendencies in their central region and lowest helicity in their N-termini. The high resolution structures suggest that maximum activity relies on the appropriate balance between an N-terminal region with mixed hydrophobic/hydrophilic structure features and an amphipathic central and C-terminal region. Taken together with previous studies, our results suggest that to improve the therapeutic ratio of AMPs, consideration should be given to including sequential histidine-pairs, keeping the overall charge of the peptide modest, and retaining a degree of structural plasticity and imperfect amphipathicity. (C) 2015 Elsevier B.V. All rights reserved.
机译:Gad-1和Gad-2是由旁系同源基因编码的抗菌肽(AMP)序列。它们富含组氨酸,表明它们的活性可能是pH依赖性的。我们研究了它们的结构-功能关系,以期学习如何提高AMP治疗率。用革兰氏阴性细菌和癌细胞系进行的活性分析表明,Gad-2在弱酸性pH值下比在中性pH值下的活性明显更高。相比之下,Gad-1在较低pH下的活性与其在pH 7下的活性相似。圆二色性光谱表明,Gad-2的功能可塑性越高,结构可塑性就越大; Gad-2的螺旋度百分比随pH和脂质环境的变化而显着变化。有趣的是,Gad-2的最高螺旋度与它最活跃的条件不符。在pH 5的条件下,在SDS胶束中确定了高分辨率的溶液NMR结构,条件是在肽中​​引起中等螺旋度。 Gad-1比Gad-2更螺旋,两种肽在其中心区域均表现出最大的螺旋趋势,而在其N末端均表现出最低的螺旋度。高分辨率结构表明最大活性取决于具有疏水/亲水混合结构特征的N端区域与两亲性中心和C端区域之间的适当平衡。结合以前的研究,我们的结果表明,要提高AMPs的治疗率,应考虑包括顺序的组氨酸对,使肽的总电荷保持适度,并保留一定程度的结构可塑性和不完美的两亲性。 (C)2015 Elsevier B.V.保留所有权利。

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