Liu Mei, Wu Mei, Zhou Shiquan, Gao Peng, Lu Tao, Wang Rixin, Shi Ge, Liao Zhi
Laboratory of Marine Living and Molecular Engineering, College of Marine Science, Zhejiang Ocean University, Zhoushan 316000, China.
Sheng Wu Gong Cheng Xue Bao. 2010 Apr;26(4):550-6.
As a key role in mussel defense system, Mytilin is an important antibacterial peptide isolated from the mussel serum. The structural and functional researches on Mytilin showed that the fragment connecting two beta-sheets in a stable beta-hairpin structure was probably required for antimicrobial activity. To elucidate the structural features and the antimicrobial activity of this fragment, we re-designed and synthesized two peptides corresponding to the main mimic structures of Mytilin-1 from Mytilus coruscus, we named these two peptides Mytilin Derived Peptide-1 and Mytilin Derived Peptide-2, respectively. Using a liquid growth inhibition assay, we evaluated their activity towards Gram-positive, Gram-negative bacteria and fungus. The results showed that both peptides can inhibit the growth of Gram-positive, Gram-negative bacteria and fungus. Besides, these two peptides showed high stability in heat water and human serum. These works laid the foundation for further research on the molecular mechanism of Mytilin and for further exploitation of antibacterial peptides with lower molecular mass and more stable structure.
作为贻贝防御系统中的关键角色,贻贝素是一种从贻贝血清中分离出的重要抗菌肽。对贻贝素的结构和功能研究表明,在稳定的β-发夹结构中连接两个β-折叠的片段可能是抗菌活性所必需的。为了阐明该片段的结构特征和抗菌活性,我们重新设计并合成了两种对应于皱纹盘鲍贻贝素-1主要模拟结构的肽,我们分别将这两种肽命名为贻贝素衍生肽-1和贻贝素衍生肽-2。通过液体生长抑制试验,我们评估了它们对革兰氏阳性菌、革兰氏阴性菌和真菌的活性。结果表明,这两种肽都能抑制革兰氏阳性菌、革兰氏阴性菌和真菌的生长。此外,这两种肽在热水和人血清中表现出高稳定性。这些工作为进一步研究贻贝素的分子机制以及进一步开发具有更低分子量和更稳定结构的抗菌肽奠定了基础。