Structure Function Correlation of G-Proteins
Structure Function Correlation of G-Proteins
批准号:
0003872
负责人:
Arieh Warshel
金额:
$33.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-07-01 至 2005-06-30
中文摘要
WARSHELMCB-0003872 GTP结合蛋白在几乎所有活生物体的细胞功能调节中发挥重要作用,并控制信号转导过程。 获得这些蛋白质作用的详细分子图像是现代分子生物学的重要挑战。G蛋白的研究经历了一场“结构革命”,新结构的G蛋白及其与相应的辅助蛋白和/或过渡态类似物的复合物迅速出现。 这为阐明这些蛋白质作用的详细分子机制提供了一个独特的机会。在过去的几年里,将酶的结构与其功能联系起来的计算机模拟方法已经发展起来。 这些方法在研究Ras催化的反应中是非常有用的。 特别是,模拟表明GTP而不是Gln 61是Ras酶促机制中的实际基础。 这一点现在被广泛认为是G蛋白和相关系统作用的可能机制。 先前的研究还导致发现GTdR反应的速率常数和g-磷酸的pKa之间的线性自由能关系(LFER)。 这份《森林环境报告》为GTP作为基础提案提供了实验支持。 先前的研究表明差距通过结合两种效应来运作。 首先,它通过主要使用Arg 789的过渡态的直接静电稳定作用。 第二,它通过将Ras“推”到催化构型而间接起作用。 这些模拟研究导致了目前的项目,该项目利用了G蛋白结构研究的巨大进展。 在这个项目中,将在以下方面作出努力。(i)将对磷酸盐水解的潜在表面进行验证和改进。 计算和观察到的LFER,同位素效应和活化熵将进行比较。 水辅助过渡态的稳定性,包括相应的熵的贡献也将被检查。 这一努力将有助于解决机械问题,并在精制EVB表面的G蛋白的研究。(ii)将研究GAP对Ras的激活,重点是Gln 61和Gly 12等突变的影响。 这些研究将检查这些残基是否直接起作用或通过稳定Ras的催化构型起作用。(iii)将进行不同G蛋白的作用的比较研究,重点是transducin,EF-Tu和Ras。将再现这些蛋白质中GTdR反应的相对速率。这些研究将确定它们是否使用共同的机制。(iv)虽然G蛋白和TS类似物的复合物提供的结构信息可能非常有用,但其解释并不简单,因为这些分子的电荷分布与实际TS的电荷分布之间的关系相当不清楚。 因此,从头算和EVB计算将被用来提取的G-蛋白与TS类似物的可用晶体结构提供的信息。
英文摘要
WARSHELMCB-0003872GTP-binding proteins play an important role in the regulation of cellular functions in virtually all living organisms, and control signal transduction processes. Obtaining detailed molecular pictures of the actions of these proteins is an important challenge to modern molecular biology. The studies of G-proteins underwent a "structural revolution" where new structures of G-proteins and their complexes with the corresponding accessory proteins and/or transition state analogues are rapidly emerging. This offers a unique opportunity for elucidating the detailed molecular mechanisms of the action of these proteins.In the past years, computer simulation approaches that correlate the structures of enzymes with their functions have been developed. These methods were found to be very useful in the studies of the reaction catalyzed by Ras. In particular, the simulations suggested that the GTP, rather than Gln61, is the actual base in the enzymatic mechanism of Ras. This is now widely accepted as the likely mechanism for the action of G-proteins and related systems. The previous studies also led to the finding of a Linear Free Energy Relationship (LFER) between the rate constant of the GTPase reaction and the pKa of the g-phosphate. This LFER has given experimental support to the GTP as a base proposal. The previous studies demonstrated that the GAP operates by combining two effects. First, it acts by a direct electrostatic stabilization of the transition state using primarily Arg789. Second, it acts indirectly by "pushing" Ras to a catalytic configuration. These simulation studies lead to the current project that exploits the enormous progress in structural studies of G-proteins. In this project, the efforts will be in the following directions.(i) The potential surfaces for phosphate hydrolysis will be validated and refined. The calculated and observed LFER, isotope effects and activation entropies will be compared. The stability of water-assisted transition states, including the corresponding entropic contribution will also be examined. This effort will help in resolving mechanistic problems and in refining EVB surfaces for studies of G-proteins.(ii) The activation of Ras by GAP will be studied, with a focus on the effect of mutations such as Gln61 and Gly12. These studies will examine whether these residues act directly or by stabilizing the catalytic configuration of Ras.(iii) A comparative study of the action of different G-proteins will be conducted, focusing on transducin, EF-Tu, and Ras. The relative rates of the GTPase reaction in these proteins will be reproduced. These studies will determine whether or not they use a common mechanism.(iv) Although the structural information offered by complexes of G-proteins and TS analogues is potentially very useful, its interpretation is not straightforward because the relationship between the charge distribution of these molecules and that of the actual TS is rather unclear. Thus ab initio and EVB calculations will be used to extract the information offered by the available crystal structures of G-proteins with TS analogues.
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会议论文
Computer Simulations of G-proteins and Molecular Machines
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批准号:2142727
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项目类别:Standard Grant
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资助金额:$150.0万
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财政年份:2022
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负责人:Arieh Warshel
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依托单位:
Computer Simulations of G-proteins and Molecular Machines
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批准号:1707167
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项目类别:Standard Grant
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资助金额:$100.0万
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财政年份:2017
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负责人:Arieh Warshel
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依托单位:
Structure Function Correlation of G-Proteins
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批准号:1243719
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项目类别:Continuing Grant
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资助金额:$87.33万
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财政年份:2013
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负责人:Arieh Warshel
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依托单位:
Structure Function Correlation of G-Proteins
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批准号:0836400
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项目类别:Continuing Grant
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资助金额:$74.52万
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财政年份:2009
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负责人:Arieh Warshel
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依托单位:
Structure Function Correlation of G-Proteins
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批准号:0342276
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项目类别:Continuing Grant
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资助金额:$56.5万
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财政年份:2004
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负责人:Arieh Warshel
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依托单位:
Structure Function Correlation of G-Proteins
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批准号:9808638
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项目类别:Continuing Grant
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资助金额:$33.0万
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财政年份:1998
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负责人:Arieh Warshel
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依托单位:
Hydrophobic and Hydrophilic Forces in Membrane and Globular Proteins (Part II)
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批准号:8519194
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项目类别:Continuing Grant
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资助金额:$15.28万
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财政年份:1985
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负责人:Arieh Warshel
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依托单位:
Theoretical Studies of the Primary Event in the Visual Process
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批准号:8303385
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项目类别:Continuing Grant
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资助金额:$13.5万
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财政年份:1983
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负责人:Arieh Warshel
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依托单位:
国内基金
海外基金
原生动物四膜虫生殖小核(germline nucleus)体功能(somatic function)的分子基础研究
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批准号:31872221
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项目类别:面上项目
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资助金额:60.0万元
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批准年份:2018
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负责人:熊杰
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依托单位: