具有增强lps结合和中和活性的Sushi3肽串联重复序列。

Changgui Li, Miang Lon Patricia Ng, Yong Zhu, Bow Ho, Jeak Ling Ding
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引用次数: 19

摘要

内毒素,又称脂多糖(LPS),是革兰氏阴性细菌感染引起脓毒性休克的主要介质。化学合成的S3肽,来源于limus凝血级联的内毒素敏感丝氨酸蛋白酶因子C的Sushi3结构域,先前已被证明可以结合和中和LPS活性。为了大规模生产该肽并模仿其他病原体识别分子,构建了S3基因的串联多聚体并在大肠杆菌中表达。通过阴离子交换纯化S3的重组四聚体(rS3-4mer),并将其消化为单体(rS3-1mer)。rS3-4mer和rS3-1mer通过基于elisa的方法和表面等离子体共振对其结合LPS的能力进行了功能分析。LAL抑制和tnfalpha释放试验表明,rS3-1 mer与合成的S3肽一样能有效中和LPS活性,而rS3-4mer对LPS诱导活性的抑制作用更强。两种重组肽对人体细胞均表现出低细胞毒性和无溶血活性。这表明重组寿司肽在检测、去除内毒素和/或抗内毒素方面具有潜在的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tandem repeats of Sushi3 peptide with enhanced LPS-binding and -neutralizing activities.

Endotoxin, also known as lipopolysaccharide (LPS), is the major mediator of septic shock due to Gram-negative bacterial infection. Chemically synthesized S3 peptide, derived from Sushi3 domain of Factor C, which is the endotoxin-sensitive serine protease of the limulus coagulation cascade, was previously shown to bind and neutralize LPS activity. For large-scale production of this peptide and to mimick other pathogen-recognizing molecules, tandem multimers of the S3 gene were constructed and expressed in Escherichia coli. The recombinant tetramer of S3 (rS3-4mer) was purified by anion exchange and digested into monomers (rS3-1mer). Both the rS3-4mer and rS3-1mer were functionally analyzed for their ability to bind LPS by an ELISA-based method and surface plasmon resonance. The LAL inhibition and TNFalpha-release test showed that rS3-1 mer can neutralize the LPS activity as effectively as the synthetic S3 peptide, while rS3-4mer displays an enhanced inhibitory effect on LPS-induced activities. Both recombinant peptides exhibited low cytotoxicity and no haemolytic activity on human cells. This evidence suggests that the recombinant sushi peptides have potential use for the detection, removal of endotoxin and/or anti-endotoxin strategies.

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