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PROTEIN-PROTEIN INTERACTIONS IN MEMBRANE RECEPTORS

PROTEIN-PROTEIN INTERACTIONS IN MEMBRANE RECEPTORS
膜受体中的蛋白质-蛋白质相互作用
批准号:
3245213
负责人:
GIOVANNA F AMES
金额:
$5.54万
依托单位国家:
美国
项目类别:
财政年份:
1991
资助国家:
美国
项目状态:
已结题
起止时间:
1991-06-01 至 1994-05-31

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中文摘要
翻译
建议研究膜之间相互作用的性质。 运输蛋白和可溶性蛋白,利用定点定位 诱变、生化技术和基因抑制分析。 作为模型使用的系统是原核生物主动运输系统, 组氨酸周质通透酶。该模型系统提供以下功能 优点:它具有复杂的结构(三种膜结合蛋白 加上两个可溶的底物结合受体),所有五个的基因 蛋白质已经被克隆。并获得它们的序列,这些蛋白质可以 很容易被过度生产,可溶性蛋白质已经被提纯并 结晶后,膜结合的蛋白质形成一种复合体,可以 溶解并重组为蛋白脂质体,几个交联体 方法已经被开发出来,最后,但最重要的是,遗传 已经开发出选择抑制基因突变的方法。 后者是一个强大的工具,它为这个特定的系统提供了 在真核细胞研究中通常不具备的优势。遗传 抑制允许选择和分析互补突变, 因此更容易产生两个相互作用的蛋白质表面的图像。 拟议的工作将建立一个重要的基础,以便开展工作 未来研究膜结合蛋白之间的相互作用, 它们更难分析。 这一示范制度将有助于建立 这些类型的相互作用可以外推到真核生物 系统,特别是蛋白质激素-受体的相互作用,其中 快速的基因抑制分析是不可能的。
英文摘要
It is proposed to study the nature of the interactions between membrane transport proteins and soluble proteins, making use of site-directed mutagenesis, biochemical techniques, and genetic suppression analysis. The system used as a model is a prokaryotic active transport system, the histidine periplasmic permease. This model system offers the following advantages: it has a complex structure (three membrane-bound proteins plus two soluble substrate-binding receptors), the genes for all five proteins have been cloned. and their sequences obtained, the proteins can be easily overproduced, the soluble proteins have been purified and crystallized, the membrane-bound proteins form a complex that can be solubilized and reconstituted into proteoliposomes, several crosslinking methods have been developed, and finally, but most importantly, genetic methods for the selection of suppressor mutations have been developed. The latter are a powerful tool that gives this particular system an advantage not usually available to studies in eukaryotic cells. Genetic suppression allows the selection and analysis of complementary mutations, thus yielding more readily a picture of two interacting protein surfaces. The proposed work will build an important base from which to proceed in the future to study interactions between the membrane-bound proteins, which are harder to analyze. This model system will be useful in establishing rules of conduct for these types of interaction that can be extrapolated to eukaryotic systems, such as protein hormone-receptor interactions especially, where a rapid genetic suppression analysis is not possible.
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