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寿司肽与铜绿假单胞菌内毒素相互作用的分子机制。

The molecular mechanism of interaction between sushi peptide and Pseudomonas endotoxin.

作者信息

Li Peng, Sun Miao, Wohland Thorsten, Ho Bow, Ding Jeak Ling

机构信息

Department of Biological Sciences, National University of Singapore, Singapore.

出版信息

Cell Mol Immunol. 2006 Feb;3(1):21-8.

Abstract

Septic shock is caused by Gram-negative bacterial infection. Lipopolysaccharide (LPS) is the bioactive molecule present on the outer membrane of the Gram-negative bacteria. It is generally thought that LPS interacts with sensors on the host cell membrane to activate the intracellular signaling pathway resulting in the overproduction of cytokines such as TNF-alpha. This causes inflammation and ultimately, septic shock. Lipid A is the pharmacophore of the LPS molecule. Thus, developing bio-molecules which are capable of binding LPS at high affinity, especially to the lipid A moiety is an efficient way to neutralize the LPS toxicity. Factor C, a serine protease in the horseshoe crab ameobocytes, is sensitive to trace levels of LPS. We have derived Sushi peptides from the LPS-binding domains of Factor C. Our earlier study showed that the Sushi peptides inhibit LPS-induced septic shock in mice. Here, we demonstrate that the molecular interaction between LPS and Sushi 1 peptide is supported by the hydrophobic interaction between the lipid tail of LPS and Sushi 1 peptide. Furthermore, in the presence of LPS, the peptide transitions from a random structure into an alpha-helical conformation and it disrupts LPS aggregates, hence, neutralizing the LPS toxicity.

摘要

脓毒症休克由革兰氏阴性菌感染引起。脂多糖(LPS)是革兰氏阴性菌外膜上存在的生物活性分子。一般认为,LPS与宿主细胞膜上的传感器相互作用,激活细胞内信号通路,导致细胞因子如肿瘤坏死因子-α过度产生。这会引发炎症,最终导致脓毒症休克。脂质A是LPS分子的药效基团。因此,开发能够高亲和力结合LPS,特别是结合脂质A部分的生物分子,是中和LPS毒性的有效方法。鲎变形细胞中的丝氨酸蛋白酶C因子对痕量LPS敏感。我们从C因子的LPS结合结构域中获得了寿司肽。我们早期的研究表明,寿司肽可抑制小鼠体内LPS诱导的脓毒症休克。在此,我们证明LPS与寿司1肽之间的分子相互作用由LPS的脂尾与寿司1肽之间的疏水相互作用支持。此外,在LPS存在的情况下,该肽从无规结构转变为α-螺旋构象,并破坏LPS聚集体,从而中和LPS毒性。

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