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Aids Related Nmr Research

Aids Related Nmr Research
艾滋病相关核磁共振研究
批准号:
7328081
负责人:
Robert E London
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至
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中文摘要
翻译
本项目利用核磁共振波谱技术研究HIV的分子组成和模型系统。主要研究方向为:1)HIV逆转录酶核糖核酸酶H结构域的结构、动力学和配体结合行为分析;2)模型核酸酶和聚合酶系统的研究。项目1。与大量关于蛋白酶抑制的文献相比,很少有关于核酸酶抑制的信息。我们最近确定了NucA的结构,NucA是一种蓝藻非特异性核酸酶,在许多方面与HIV逆转录酶的RNase H结构域类似。特别是,逆转录酶RNase H结构域和NucA都是序列无关的,可以降解双链底物,并且需要Mg2+才能发挥活性。因此,确定NuiA抑制NucA的分子基础可以为开发HIV RNase H活性抑制剂提供有用的见解。在过去的一年里,我们确定了NucA与其特异性抑制剂NuiA之间形成的复合物的结构。NuiA对NucA的抑制涉及一种不寻常的二价金属离子桥,它将核酸酶与其抑制剂连接起来。NuiA的c端Thr135羟基氧直接与核酸酶活性位点的催化Mg2+配位,NuiA的Glu24残基也延伸到活性位点,模拟了一个可剪切磷酸盐的电荷。NuiA残基Asp75和Trp76形成第二个相互作用位点,有助于相互作用的强度和特异性。
英文摘要
This project utilizes NMR spectroscopy to study the molecular components of HIV and model systems. The primary research areas are: 1) analysis of the structure, dynamics and ligand binding behavior of the Ribonuclease H domain of HIV reverse transcriptase, and 2) studies of model nuclease and poymerase systems. Project 1. In contrast with the extensive literature on proteinase inhibition, very little information has been available in the area of nuclease inhibition. We recently determined the structure of NucA, a cyanobacterial, non-specific nuclease that in many respects serves as an analog of the RNase H domain of HIV reverse transcriptase. In particular, both the reverese transcriptase RNase H domain and NucA are sequence-independent, degrade double stranded substrates, and require Mg2+ for activity. Hence, a determination of the molecular basis for the inhibition of NucA by NuiA could provide useful insights for the development of inhibitors of HIV RNase H activity. During the past year, we determined the structure of the complex formed between NucA and its specific inhibitor, NuiA. NucA inhibition by NuiA involves an unusual divalent metal ion bridge that connects the nuclease with its inhibitor. The C-terminal Thr135 hydroxyl oxygen of NuiA is directly coordinated with the catalytic Mg2+ of the nuclease active site, and the NuiA Glu24 residue also extends into the active site, mimicking the charge of a scissile phosphate. NuiA residues Asp75 and Trp76 form a second interaction site, contributing to the strength and specificity of the interaction. Project 2. We have continued studies of the base excision repair enzymes, DNA polymerase beta and DNA polymerase lambda, as useful model systems for understanding the behavior of HIV reverse transcriptase. During the past year, we have assigned ~ 85 % of the backbone resonances of DNA pol beta in a triply labeled sample of the enzyme complexed with double hairping DNA to mimic a gapped DNA substrate. These studies demonstrate substantial internal motion of the enzyme, primarily invoving the DNA binding residues. During the past year, we completed studies of the response of the [methyl-13C]methionine-labeled Pol ? to a DNA analog in which a thymidine isostere - difluorotoluene - was introduced into the templating base position. Upon addition of dATP to form an abortive ternary complex, the enzyme fails to show the normal conformational activation that would be observed if thymine were in the templating base position. This observation explains the failure of the enzyme to proceed with the polymerization reaction under these conditions. In order to better understand the lyase reaction catalyzed by these enzymes, we developed new approaches involving the use of [6-13C] and [5-13C] labeled lysine. This approach has allowed us to determine the pK value for the catalytically important K72 (pol beta) and K312 (pol lambda) residues, providing insight into the catalytic mechanism.
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会议论文
DYNAMIC FREQUENCY SHIFT PERTURBATIONS IN SCALAR COUPLED SPIN SYSTEMS
NMR STUDIES OF CELLULAR METABOLISM
DEVELOPMENT OF INTRACELLULAR INDICATORS AND ION TRANSPORT STUDIES
DESIGN, SYNTHESIS AND CHARACTERIZATION OF FLUORINATED HIV PROTEASE INHIBITOR
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