The biological activity of metal ion-gastrin complexes
The biological activity of metal ion-gastrin complexes
批准号:
6508709
负责人:
GRAHAM S BALDWIN
金额:
$13.5万
依托单位:
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:
2002-08-01 至 2005-07-31
关键词:
amidation /deamidation binding sites calcium ion cell adhesion cell line cell migration cell proliferation chemical structure function cofactor electron spin resonance spectroscopy gastric mucosa gastrins glycine hormone receptor hormone regulation /control mechanism intestinal mucosa iron compounds laboratory mouse laboratory rabbit laboratory rat metal complex nuclear magnetic resonance spectroscopy peptide hormone biosynthesis receptor binding synthetic peptide tissue /cell culture
中文摘要
描述(申请人提供):该项目的长期目标是了解金属离子与孕激素前体多肽之间相互作用的生物学意义。本实验室的最新数据表明,孕激素衍生肽(PDP)选择性地结合2个铁离子,而重组人孕激素还与一个高亲和力的钙离子结合,结合部位不同于铁离子结合部位。该项目的具体目标是:(1)确定金属离子与PDP之间的络合物的性质和结构;(2)确定金属离子在PDP的生物活性中的作用,包括受体结合、细胞增殖和细胞迁移;以及(3)确定这些络合物在调节孕激素加工和胃肠道吸收金属离子方面的作用。该项目的健康意义在于,PDP作为正常胃和结肠粘膜的生长因子,加速胃癌和结直肠癌的发展,并可能参与铁稳态的紊乱。研究设计反映了具体目标。首先,通过荧光光谱、EPR光谱和核磁共振光谱相结合的方法确定金属离子与PDP形成的络合物的结构。这些结构将被用作设计具有单一氨基酸取代的重组和合成PPP的基础,该取代可以防止铁或钙离子的结合。其次,将比较亲本和突变的PDP与一组胃肠道细胞系结合、刺激增殖和减少黏附的能力。将通过测量细胞系、分离的隐窝和体内失效的结肠的DNA合成来评估增殖情况。黏附将通过黏附蛋白复合体的免疫化学分析以及组织培养中的迁移和伤口愈合分析来评估。第三,铁离子浓度的变化对孕激素处理的影响将在细胞系和铁状态改变的小鼠中进行测量。PDP在细胞吸收铁离子中的作用也将被确定。铁和钙离子是PDP生物活性形式的基本成分的证明将彻底改变我们对金属离子在激素功能中作用的理解。这些研究还可能揭示多肽激素在铁离子动态平衡中意想不到的作用。从长远来看,定义高亲和力的PDP-金属离子络合物受体可能会开发出治疗铁代谢紊乱和胃肠道癌症的新疗法。
英文摘要
DESCRIPTION (provided by applicant): The long-term aim of this project is to understand the biological significance of the interactions between metal ions and peptides derived from the prohormone progastrin. Recent data from this laboratory has shown that progastrin-derived peptides (PDPs) selectively bind 2 ferric ions, and that recombinant human progastrin also binds a calcium ion with high affinity, at a site distinct from the ferric ion binding site. The specific aims of the project are: (1) to define the properties and structure of the complexes between metal ions and PDPs, (2) to define the role of metal ions in the biological activities of PDPs including receptor binding, cell proliferation and cell migration, and (3) to determine the role of the complexes in modulation of progastrin processing and in metal ion uptake by the gastrointestinal tract. The health significance of the project lies in the facts that PDPs act as growth factors for the normal gastric and colonic mucosa, accelerate the development of both gastric and colorectal cancer, and may be involved in disorders of iron homeostasis. The research design mirrors the specific aims. Firstly, the structures of the complexes between metal ions and PDPs will be determined by a combination of fluorescence, EPR and NMR spectroscopy. The structures will be used as the basis for the design of recombinant and synthetic PDPs with single amino acid substitutions which prevent the binding of either ferric or calcium ions. Secondly, the ability of the parent and mutant PDPs to bind to, stimulate proliferation in, and reduce adhesion of, a panel of gastrointestinal cell lines will be compared. Proliferation will be assessed by measurement of DNA synthesis in cell lines, isolated crypts, and the defunctioned colon in vivo. Adhesion will be assessed by immunochemical analysis of adhesion protein complexes, and migration and wound healing assays in tissue culture. Thirdly, the effect of changes in ferric ion concentration on progastrin processing will be measured in cell lines and in mice with altered iron status. The role of PDPs in the cellular uptake of ferric ions will also be determined. The demonstration that ferric and calcium ions are essential components of the biologically active forms of PDPs would alter completely our understanding of the role of metal ions in hormone function. The studies may also reveal an unexpected role for peptide hormones in ferric ion homeostasis. In the longer term definition of high affinity receptors for PDP-metal ion complexes may permit the development of novel therapies for treatment of disorders of iron metabolism and of gastrointestinal cancers.
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会议论文
The biology of gastrin-ferric ion complexes
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批准号:7033598
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项目类别:
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资助金额:$16.2万
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财政年份:2002
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负责人:GRAHAM S BALDWIN
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依托单位:
The biology of gastrin-ferric ion complexes
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批准号:7648265
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项目类别:
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资助金额:$15.73万
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财政年份:2002
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负责人:GRAHAM S BALDWIN
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依托单位:
The biological activity of metal ion-gastrin complexes
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批准号:6630429
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项目类别:
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资助金额:$13.5万
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财政年份:2002
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负责人:GRAHAM S BALDWIN
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依托单位:
The biology of gastrin-ferric ion complexes
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批准号:7218671
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项目类别:
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资助金额:$15.73万
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财政年份:2002
-
负责人:GRAHAM S BALDWIN
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依托单位:
The biology of gastrin-ferric ion complexes
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批准号:7385972
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项目类别:
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资助金额:$15.73万
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财政年份:2002
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负责人:GRAHAM S BALDWIN
-
依托单位:
The biological activity of metal ion-gastrin complexes
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批准号:6781799
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项目类别:
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资助金额:$13.5万
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财政年份:2002
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负责人:GRAHAM S BALDWIN
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依托单位:
海外基金