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Intragenic antimicrobial peptides (IAPs) from human proteins with potent antimicrobial and anti-inflammatory activity

机译:具有有效抗微生物和抗炎活性的人蛋白质中的基因内抗微生物肽(IAP)

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摘要

Following the treads of our previous works on the unveiling of bioactive peptides encrypted in plant proteins from diverse species, the present manuscript reports the occurrence of four proof-of-concept intragenic antimicrobial peptides in human proteins, named Hs IAPs. These IAPs were prospected using the software Kamal, synthesized by solid phase chemistry, and had their interactions with model phospholipid vesicles investigated by differential scanning calorimetry and circular dichroism. Their antimicrobial activity against bacteria, yeasts and filamentous fungi was determined, along with their cytotoxicity towards erythrocytes. Our data demonstrates that Hs IAPs are capable to bind model membranes while attaining α-helical structure, and to inhibit the growth of microorganisms at concentrations as low as 1μM. Hs02, a novel sixteen residue long internal peptide (KWAVRIIRKFIKGFIS-NH2) derived from the unconventional myosin 1h protein, was further investigated in its capacity to inhibit lipopolysaccharide-induced release of TNF-α in murine macrophages. Hs02 presented potent anti-inflammatory activity, inhibiting the release of TNF-α in LPS-primed cells at the lowest assayed concentration, 0.1 μM. A three-dimensional solution structure of Hs02 bound to DPC micelles was determined by Nuclear Magnetic Resonance. Our work exemplifies how the human genome can be mined for molecules with biotechnological potential in human health and demonstrates that IAPs are actual alternatives to antimicrobial peptides as pharmaceutical agents or in their many other putative applications.
机译:继我们先前的工作揭开序幕,揭开了来自不同物种的植物蛋白中加密的生物活性肽的面纱后,本手稿报道了人类蛋白中出现了四种概念验证基因内抗菌肽,称为Hs IAP。这些IAP使用Kamal软件进行固相化学合成,并通过差示扫描量热法和圆二色性研究与模型磷脂囊泡的相互作用。确定了它们对细菌,酵母和丝状真菌的抗菌活性,以及​​它们对红细胞的细胞毒性。我们的数据表明,Hs IAPs能够结合模型膜,同时获得α-螺旋结构,并能以低至1μM的浓度抑制微生物的生长。 Hs02是一种新的16残基长的内部肽( KWAVRIIRKFIKGFIS-NH2 ),它是从非常规的肌球蛋白1h蛋白衍生而来的,其在抑制脂多糖诱导的鼠巨噬细胞中TNF-α释放的能力方面得到了进一步研究。 Hs02表现出强大的抗炎活性,在最低的检测浓度0.1μM下可抑制LPS引发的细胞中TNF-α的释放。通过核磁共振确定与DPC胶束结合的HsO 2的三维溶液结构。我们的工作举例说明了如何从人类基因组中挖掘具有对人类健康具有生物技术潜力的分子,并证明了IAP是抗菌肽作为药物或在其许多其他推定应用中的实际替代品。

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