首页> 外文期刊>The Journal of biological chemistry >Conformational Flexibility Determines Selectivity and Antibacterial, Antiplasmodial, and Anticancer Potency of Cationic α-Helical Peptides
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Conformational Flexibility Determines Selectivity and Antibacterial, Antiplasmodial, and Anticancer Potency of Cationic α-Helical Peptides

机译:构象灵活性确定阳离子α-螺旋肽的选择性和抗菌,抗癌和抗癌效力

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We used a combination of fluorescence, circular dichroism (CD), and NMR spectroscopies in conjunction with size exclusion chromatography to help rationalize the relative antibacterial, antiplasmodial, and cytotoxic activities of a series of proline-free and proline-containing model antimicrobial peptides (AMPs) in terms of their structural properties. When compared with proline-free analogs, proline-containing peptides had greater activity against Gram-negative bacteria, two mammalian cancer cell lines, and intraerythrocytic Plasmodium falciparum, which they were capable of killing without causing hemolysis. In contrast, incorporation of proline did not have a consistent effect on peptide activity against Mycobacterium tuberculosis. In membrane-mimicking environments, structures with high α-helix content were adopted by both proline-free and proline-containing peptides. In solution, AMPs generally adopted disordered structures unless their sequences comprised more hydrophobic amino acids or until coordinating phosphate ions were added. Proline-containing peptides resisted ordering induced by either method. The roles of the angle subtended by positively charged amino acids and the positioning of the proline residues were also investigated. Careful positioning of proline residues in AMP sequences is required to enable the peptide to resist ordering and maintain optimal antibacterial activity, whereas varying the angle subtended by positively charged amino acids can attenuate hemolytic potential albeit with a modest reduction in potency. Maintaining conformational flexibility improves AMP potency and selectivity toward bacterial, plasmodial, and cancerous cells while enabling the targeting of intracellular pathogens.
机译:我们使用荧光,圆形二色性(CD)和NMR光谱的组合,与尺寸排阻色谱相结合,以帮助合理化一系列无脯氨酸和脯氨酸模型抗微生物肽(AMPS的相对抗菌,抗癌症和细胞毒性活性) )在其结构性方面。与无脯氨酸类似物相比,含有脯氨酸的肽对革兰氏阴性细菌,两种哺乳动物癌细胞系和鼻内小细胞疟原虫进行更大的活性,它们能够在不引起溶血的情况下杀死。相比之下,脯氨酸的掺入对肽活性对结核分枝杆菌的肽活性没有一致的影响。在膜模拟环境中,通过脯氨酸和含脯氨酸肽采用具有高α-螺旋含量的结构。在溶液中,除非它们的序列包含更多疏水性氨基酸或加入磷酸根离子,否则AMP通常采用无序的结构。含有脯氨酸的肽抵抗通过任一方法诱导的排序。还研究了角度下调的角度的作用以及脯氨酸残基的定位。需要仔细定位在放大器序列中的脯氨酸残基能够使肽能够抵抗排序并保持最佳的抗菌活性,而改变通过带正电荷的氨基酸的角度可以衰减溶血性潜力效力。保持构象的灵活性可提高AMP效力和对细菌,疟原虫和癌细胞的选择性,同时能够靶向细胞内病原体。

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