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Brain Endothelial Cell Receptor for Escherichia coli

Brain Endothelial Cell Receptor for Escherichia coli
大肠杆菌脑内皮细胞受体
批准号:
8878982
负责人:
MARK E DAVIS
金额:
$44.77万
依托单位国家:
美国
项目类别:
财政年份:
1997
资助国家:
美国
项目状态:
已结题
起止时间:
1997-01-01 至 2018-06-30

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中文摘要
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DESCRIPTION (provided by applicant): Escherichia coli K1 is the most common cause of meningitis in neonates. Ineffectiveness of antibiotic therapy over the last few decades and the emergence of antibiotic resistant E. coli strains imply that there is a great unmet need for new methods of treatment and prevention. Incomplete understanding of the mechanisms involved at every step of pathogenesis is attributed to this poor outcome. For example, the mechanisms by which E. coli K1 enters the human brain microvascular endothelial cells (HBMEC) that constitute the BBB and disrupts tight junctions (TJs) are poorly understood. We have established that outer membrane protein A (OmpA) of E. coli interacts with endothelial cell gp96 (Ecgp); a receptor specifically expressed on HBMEC, to invade and disrupt the TJs. The importance of OmpA-Ecgp interaction is further supported by our findings that 1) E. coli strains that either lack OmpA or express non-functional OmpA do not induce meningitis in a newborn mouse or rat model and 2) Mice in which Ecgp expression was suppressed were resistant to E. coli infection. Intriguingly, OmpA interaction with Ecgp triggers the production of nitric oxide (NO) due to iNOS activation and thereby enhances the expression of the receptor to allow the bacteria to invade more efficiently. In agreement, iNOS-/- mice are resistant to E. coli infection and also administration of an iNOS specific inhibitor, aminoguanidine (AG), during high-grade bacteremia prevented the occurrence of meningitis. Novel computer modeling methods were utilized to study the interaction of OmpA and Ecgp and to identify small molecule inhibitors that prevent the E. coli invasion of HBMEC. Three small molecules exhibited more than 80% inhibition of E. coli invasion in HBMEC both in vitro and in vivo. Our studies have also revealed that Ecgp interaction with Robo4 at the HBMEC membrane increases upon infection with E. coli. Further, a GTPase activating protein, IQGAP1, which binds both actin and b-catenin, appears to play a role in the invasion process. IQGAP1 is a client protein for Stat3, which was shown to be associated with Ecgp, indicating that IQGAP1 might be relaying Ecgp mediated signals to induce E. coli invasion. Thus, our hypothesis is that the interaction of OmpA and Ecgp is fundamental to initiate signaling events that induce E. coli invasion and increased permeability of the BBB. In Aim 1, we propose to define the binding domains of Ecgp that orchestrate the interaction of Ecgp/Robo4 with OmpA. Next, to understand whether Ecgp interaction with Robo4 contributes to signaling events to induce NO production and thereby modulating IQGAP1 association with b-CAT to dislodge it from TJs will be tested in Aim 2. Then, in Aim 3 we will modify the antagonists for higher inhibition efficiency and couple them to nanoparticles, which will carry a load of iNOS inhibitors to deliver to brain to prevent E. coli induced meningitis in newborn rats. Translational medicine is the outcome of this application in which studies of basic biology and applied technology to develop new strategies of prevention will be integrated.
期刊论文(9)
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科研奖励(0)
会议论文
DOI: 10.1039/c5mb00352k
发表时间: 2015-10
期刊: Molecular bioSystems
影响因子: --
作者: [R. D. Teo;Sijia S. Dong;Z. Gross;H. Gray;W. Goddard]
通讯作者: R. D. Teo;Sijia S. Dong;Z. Gross;H. Gray;W. Goddard
Molecular basis for dramatic changes in cannabinoid CB1 G protein-coupled receptor activation upon single and double point mutations.
单点和双点突变后大麻素 CB1 G 蛋白偶联受体激活发生巨大变化的分子基础。
DOI: 10.1002/pro.2192
发表时间: 2013
期刊: Protein science : a publication of the Protein Society
影响因子: --
作者: [Scott,CaitlinE, Abrol,Ravinder, Ahn,KwangH, Kendall,DebraA, Goddard3rd,WilliamA]
通讯作者: Goddard3rd,WilliamA
Computational Prediction and Biochemical Analyses of New Inverse Agonists for the CB1 Receptor.
CB1 受体新型反向激动剂的计算预测和生化分析。
DOI: 10.1021/acs.jcim.5b00581
发表时间: 2016
期刊: Journal of chemical information and modeling
影响因子: 5.6
作者: [Scott,CaitlinE, Ahn,KwangH, Graf,StevenT, Goddard3rd,WilliamA, Kendall,DebraA, Abrol,Ravinder]
通讯作者: Abrol,Ravinder
Conformational and Thermodynamic Landscape of GPCR Activation from Theory and Computation.
从理论和计算来看 GPCR 激活的构象和热力学景观。
DOI: 10.1016/j.bpj.2016.04.028
发表时间: 2016
期刊: Biophysical journal
影响因子: 3.4
作者: [Dong,SijiaS, Goddard3rd,WilliamA, Abrol,Ravinder]
通讯作者: Abrol,Ravinder
6
    Project 1: Targeted Nanoparticle Therapeutics for Treating Intracranial Disease
    A Novel Method of Nanoparticle Delivery to Brain by Targeting Ec-gp96
    In Vivo Pharmacodynamics of RNAi-based Cancer Therapies
    A Novel Method of Nanoparticle Delivery to Brain by Targeting Ec-gp96
    海外基金