Multimeric MD-2 as an LPS decoy
Multimeric MD-2 as an LPS decoy
批准号:
6732625
负责人:
FABIO C RE
金额:
$2.24万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-04-15 至 2004-05-31
关键词:
CD14 moleculeHeLa cellsantibodybiochemistrybiophysicschemical bindingclinical researchcytokinedendritic cellshuman tissueintermolecular interactionlaboratory rabbitlipopolysaccharidesmacrophagemonocyteprotein biosynthesisprotein purificationprotein structuresite directed mutagenesissurface antigenstoll like receptor
中文摘要
描述(由申请人提供):多聚体MD-2作为脂多糖诱饵革兰氏阴性菌脂多糖(LPS)的识别是由toll样受体4 (TLR4)、MD-2和CD14组成的细胞表面受体复合物介导的。MD-2是一种分泌蛋白,可与TLR4的细胞外部分相互作用,并能直接与LPS结合。MD-2既以单体形式存在,也以二硫化物连接的多聚体形式存在。我们发现只有MD-2单体与TLR4结合。此外,只有MD-2单体对表达TLR4的细胞系具有LPS响应性。因此,单体MD-2在LPS识别中是TLR4的功能伙伴,而多聚体MD-2的功能尚不清楚。目前的拨款提案将测试假设,即MD-2多聚体可以作为LPS诱饵。为了证明这一特性,我们必须证明多聚体MD-2,尽管它不能结合TLR4并赋予LPS响应性,但仍然能够结合LPS。具体来说,我们将:1。采用生物化学和生物物理方法检测MD-2多聚体直接结合LPS的能力。我们还将使用定点诱变技术来确定MD-2中负责LPS识别的区域2。分析在人树突状细胞、内皮细胞和表达TLR4/MD-2的细胞系中加入纯化的MD-2多聚体是否能抑制它们对LPS的反应。3. 研究促炎和抗炎刺激对MD-2表达和多聚体形成的调控。这些研究将增强我们对脂多糖识别和细胞活化的分子方面的理解,并将描述抑制脂多糖作用的机制,这些机制可能被用于治疗干预。
英文摘要
DESCRIPTION (provided by applicant): Multimeric MD-2 as an LPS decoy Recognition of Gram-negative bacteria lipopolysaccharide (LPS) is mediated by a cell surface receptor complex constituted by Toll-like receptor 4 (TLR4), MD-2, and CD14. MD-2 is a secreted protein that interacts with the extracellular portion of TLR4 and that is able to bind directly to LPS. MD-2 exists in both monomeric form and as disulfide-linked multimer. We found that only MD-2 monomer binds to TLR4. Moreover, only MD-2 monomer confers LPS responsiveness to TLR4 expressing cell lines. Thus, monomeric MD-2 is a functional partner of TLR4 in LPS recognition while the function of MD-2 multimer remains unclear. The present grant proposal will test the hypothesis that MD-2 multimer can act as an LPS decoy. In order to demonstrate this property we will have to prove that multimeric MD-2, despite its inability to bind to TLR4 and confer LPS responsiveness, is still able to bind LPS. Specifically we will: 1. Test MD-2 multimer's ability to directly bind LPS using biochemical and biophysical methods. We will also use site-directed mutagenesis to identify the region of MD-2 that is responsible for LPS recognition 2. Analyze whether addition of purified MD-2 multimer to cultures of human dendritic cells, endothelial cells, and TLR4/MD-2 expressing cell lines inhibits their responses to LPS. 3. Study the regulation of MD-2's expression and multimer formation by pro-inflammatory and antiinflammatory stimuli. These studies will augment our understanding of the molecular aspects of LPS recognition and cell activation and will characterize mechanisms to inhibit LPS action that might be exploited for therapeutic intervention.
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