School of Life Science, Liaoning Normal University, Dalian 116081, China.
Liaoning Provincial Key Laboratory of Biotechnology and Drug Discovery, Liaoning Normal University, Dalian 116081, China.
Sci Rep. 2017 Jan 5;7:40228. doi: 10.1038/srep40228.
The natural peptide chensinin-1 doesnot exhibit its desired biological properties. In this study, the mutant MC1-1 was designed by replacing Gly in the chensinin-1 sequence with Trp. Mutants MC1-2 and MC1-3 were designed based on the MC1-1 sequence to investigate the specific role of His residues. The mutated peptides presented α-helicity in a membrane-mimetic environment and exhibited broad-spectrum antimicrobial activities; in contrast to Trp residues, His residues were dispensable for interacting with the cell membrane. The interactions between the mutant peptides and lipopolysaccharide (LPS) facilitated the ingestion of peptides by Gram-negative bacteria. The binding affinities of the peptides were similar, at approximately 10 μM, but ΔH for MC1-2 was -7.3 kcal.mol, which was 6-9 folds higher than those of MC1-1 and MC1-3, probably due to the conformational changes. All mutant peptides demonstrated the ability to inhibit LPS-induced tumour-necrosis factor-α (TNF-α) and interleukin-6 (IL-6) release from murine RAW264.7 cells. In addition, the representative peptide MC1-1showed better inhibition of serum TNF-α and IL-6 levels compared to polymyxin B (PMB), a potent binder and neutralizer of LPS as positive control in LPS-challenged mice model. These data suggest that the mutant peptides could be promising molecules for development as chensinin-based therapeutic agents against sepsis.
天然肽 chensinin-1 并不表现出其所需的生物学特性。在本研究中,通过将 chensinin-1 序列中的甘氨酸替换为色氨酸,设计了突变体 MC1-1。根据 MC1-1 序列设计了突变体 MC1-2 和 MC1-3,以研究 His 残基的特定作用。突变肽在模拟膜环境中呈现α-螺旋构象,并表现出广谱的抗菌活性;与色氨酸残基不同,His 残基对于与细胞膜相互作用不是必需的。突变肽与脂多糖 (LPS) 的相互作用促进了肽被革兰氏阴性菌摄取。肽的结合亲和力相似,约为 10 μM,但 MC1-2 的ΔH 为-7.3 kcal.mol,比 MC1-1 和 MC1-3 高 6-9 倍,可能是由于构象变化。所有突变肽都表现出抑制 LPS 诱导的肿瘤坏死因子-α (TNF-α) 和白细胞介素-6 (IL-6) 从鼠 RAW264.7 细胞释放的能力。此外,代表性肽 MC1-1 与阳性对照 LPS 挑战小鼠模型中的多粘菌素 B (PMB) 相比,能够更好地抑制血清 TNF-α 和 IL-6 水平,PMB 是 LPS 的有效结合物和中和剂。这些数据表明,突变肽可能是开发基于 chensinin 的治疗败血症药物的有前途的分子。