Molecular mechanisms that regulate eosinophil cytokine production
Molecular mechanisms that regulate eosinophil cytokine production
批准号:
6630928
负责人:
James S Malter
金额:
$19.62万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-01-05 至 2002-11-30
关键词:
RNA binding protein asthma cell differentiation colony stimulating factor eosinophil fibronectins gene expression genetic promoter element genetic transcription human tissue immunogenetics leukocyte activation /transformation messenger RNA posttranscriptional RNA processing tissue /cell culture transcription factor transfection tumor necrosis factor alpha
中文摘要
(申请人摘要)外周血嗜酸性粒细胞的作用机制
(PBEos)分化为基于呼吸道的效应细胞,负责
哮喘的病理生理学还知之甚少。这件事的候补调解人
过程是粒细胞巨噬细胞集落刺激因子(GM-CSF)的一种强效
嗜酸性粒细胞产生的细胞因子。BAL液中GM-CSF普遍升高
有症状的哮喘患者。在体外激活的PBEos分泌
免疫检测GM-CSF,并表达GM-CSF mRNA。PBEos还表示
细胞表面GM-CSF受体,提示GM-CSF是一种关键的
体外和体内的自分泌生长和存活因子。尽管
GM-CSF的可能功能意义,人们对其知之甚少
控制其产生和释放的分子机制(S)
嗜酸性粒细胞。最近我们发现GM-CSF mRNA的稳定性是
肿瘤坏死因子α(TNF)治疗后外周血Eos显著增强
和纤维连接蛋白或BAL来源的嗜酸性粒细胞中的过敏原
志愿者。通过酵母3杂交筛选,我们鉴定了YB-1,一个已知的核
酸结合蛋白作为GM-CSF的mRNA结合蛋白。重组YB-1
在体外与富含AU的3‘非编码区不稳定性决定因素特异性结合
GM-CSF基因的表达。将YB-1基因导入外周血嗜酸粒细胞后,YB-1基因的表达增强
体外存活3-5倍,这可被抗GM-CSF完全阻断
抗体。最后,在初步研究中,转基因YB-1稳定了下来
PBEos中GM-CSF基因的表达。因此,我们假设YB-1介导了
活化的嗜酸性粒细胞中GM-CSF mRNA的转录后调控。因此,
这个项目的目标是1)。YB-1如何提高GM-CSF的特性
PBEos中的信使核糖核酸,2).表征由肿瘤坏死因子α诱导的信号级联,以及
纤维连接蛋白使YB-1能够与GM-CSF mRNA相互作用并调节,3)。
确定YB-1是该系统中的唯一效应器还是与
调节GM-CSF mRNA的额外蛋白质组分,4)。确定是哪一个
GM-CSF转录后基因需要YB-1的结构域(S)
监管。总的来说,这些研究将阐明分子机制。
在激活的嗜酸性粒细胞中潜在的GM-CSF mRNA调控,因此,
为预防和治疗提供额外的、新的治疗靶点
哮喘的症状。
英文摘要
(Applicant's Abstract) The mechanisms by which peripheral blood eosinophils
(PBEos) differentiate into airway based, effector cells responsible for the
pathophysiology of asthma are poorly understood. A candidate mediator for this
process is granulocyte macrophage colony stimulating factor (GM-CSF), a potent
cytokine produced by eosinophils. GM-CSF is commonly elevated in the BAL fluid
of symptomatic asthmatics. PBEos which are activated in vitro secrete
immunologically detectable GM-CSF and express GM-CSF mRNA. PBEos also express
cell surface GM-CSF receptors, suggesting GM-CSF functions as a critical
autocrine growth and survival factor both in vitro and in vivo. Despite the
likely functional significance of GM-CSF, very little is known about the
molecular mechanism(s) which controls its production and release by
eosinophils. Recently we have shown that GM-CSF mRNA stability was
significantly enhanced in PBEos treated with tumor necrosis factor alpha (TNF)
and fibronectin or in BAL derived eosinophils from allergen challenged
volunteers. Using a yeast 3 hybrid screen, we identified YB-1, a known nucleic
acid binding protein as a GM-CSF mRNA binding protein. Recombinant YB-1
specifically bound in vitro to the AU-rich, 3' UTR instability determinants of
GM-CSF mRNA. When transfected into peripheral blood eosinophils, YB-1 enhanced
in vitro survival by 3-5 fold, which was completely blocked by anti-GM-CSF
antibodies. Finally, in preliminary studies, transfected YB-1 stabilized
GM-CSF mRNA in PBEos. Therefore, we hypothesize that YB-1 mediates the
post-transcriptional regulation of GM-CSF mRNA in activated eosinophils. Thus,
the aims of this project are to 1). Characterize how YB-1 increases GM-CSF
mRNA in PBEos, 2).Characterize the signaling cascades induced by TNFalpha, and
fibronectin which enable YB-1 to interact with and regulate GM-CSF mRNA, 3).
Determine if YB-1 is the sole effector in this system or interacts with
additional protein components to regulate GM-CSF mRNA, 4). Determine which
domain(s) of YB-1 is/are required for GM-CSF post-transcriptional gene
regulation. In aggregate these studies will clarify the molecular mechanisms
underlying GM-CSF mRNA regulation in activated eosinophils, and as such,
provide additional, novel therapeutic targets for the prevention and treatment
of asthma.
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会议论文
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