Protein Architecture and Remodeling in DNA Transposition and DNA Protection
DNA 转座和 DNA 保护中的蛋白质结构和重塑
基本信息
- 批准号:7413437
- 负责人:
- 金额:$ 28.84万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:1993
- 资助国家:美国
- 起止时间:1993-05-01 至 2010-04-30
- 项目状态:已结题
- 来源:
- 关键词:ATP HydrolysisATP phosphohydrolaseAdaptor Signaling ProteinAffinityArchitectureAreaBacteriophage muBindingBinding ProteinsBiochemical GeneticsCell physiologyCellsComplexConditionDNADNA BindingDNA DamageDNA RepairDisruptionEndopeptidasesEnzymesFamilyFuture GenerationsGeneticGenetic RecombinationGenomeGoalsGrantHealthLifeMalignant NeoplasmsMechanicsMediatingMethodsModelingN-acetylglucosamine-1-phosphodiester alpha-N-acetylglucosaminidaseN-terminalPeptide HydrolasesPeptide Signal SequencesPeptidesPhasePositioning AttributeProcessProteinsProteolysisProteomeProteomicsReactionRecyclingRoleSourceSpecificityStressSyndromeTestingTransposaseWorkdesignenvironmental changeexperienceinterestoxidationprotein structurerepairedresearch studyresponseunfoldase
项目摘要
Higher-order protein-DNA complexes both orchestrate and catalyze many of life's most central processes.
Genetic recombination and DMAprotection, processes essential for maintaining the integrity of the genome
for future generations, are especially rich in their use of protein-DNA superstructures. A key feature of these
complexes is that they are often exceedingly stable, such that ATP-dependent protein-unfolding enzymes
and proteases may be required to remodel, dismantle, destroy or recycle the component proteins. The
focus of this project is to understand how protein complexes are recognized for remodeling or destruction by
proteins of the Clp/Hsp100 ATPase family. Clp/Hsp100 proteins are a subfamily of the AAA+ enzymes that
use ATP-hydrolysis to perform mechanical work on their substrates. The first specific goal is to understand
how the protein-unfolding enzyme CIpX recognizes the protein-DNA complex that promotes DNA
transposition of phage Mu. Experiments to elucidate the peptide signals within the transposase responsible
for recognition are proposed. Furthermore, we will test a model in which asymmetric features of the
complex guide the unfolding activity of CIpX to one specific transposase subunit, and thereby generate a
new -less stable-complex with a unique architecture. The second goal is to elucidate how the DNA-
protection protein Dps is recognized by CIpX and how this recognition is tuned to changing environmental
conditions. The role of peptide signals, adaptor proteins and DNA in recognition of Dps will be investigated.
Finally, proteomic experiments designed to achieve a global view of the role of ATP-dependent protein
unfoldases/proteases are proposed. These experiments will give a proteome-wide view of the roles of
specific adaptor proteins and peptide binding domains in substrate choice by AAA+ enzymes. Cellular
mechanisms that protect the genome from damage, and promote the faithful repair of damaged DNA are
critical to health and survival, as dramatically demonstrated by the numerous cancer syndromes associated
with the genetic disruption of these cellular processes. Protein remodeling and destruction byAAA+
enzymes is a critical yet poorly understood aspect of the strategies used by cells to both interpret and
protect their genomes.
高阶蛋白质-DNA 复合物协调并催化许多生命最核心的过程。
基因重组和 DMA 保护,对于维持基因组完整性至关重要的过程
对于后代来说,他们对蛋白质-DNA 上层结构的使用尤其丰富。这些的一个关键特征
复合物的特点是它们通常非常稳定,因此 ATP 依赖性蛋白质解折叠酶
可能需要蛋白酶来重塑、分解、破坏或回收蛋白质成分。这
该项目的重点是了解蛋白质复合物如何被识别以进行重塑或破坏
Clp/Hsp100 ATPase 家族的蛋白质。 Clp/Hsp100 蛋白是 AAA+ 酶的一个亚家族,
使用 ATP 水解对其底物进行机械功。第一个具体目标是了解
蛋白质解折叠酶 CIpX 如何识别促进 DNA 的蛋白质-DNA 复合物
噬菌体Mu的转座。阐明转座酶内肽信号的实验
提出了认可建议。此外,我们将测试一个模型,其中的不对称特征
复合物将 CIpX 的解折叠活性引导至一个特定的转座酶亚基,从而产生
具有独特架构的新的不稳定综合体。第二个目标是阐明DNA如何-
CIpX 识别保护蛋白 Dps 以及如何调整这种识别以适应不断变化的环境
状况。将研究肽信号、接头蛋白和 DNA 在 Dps 识别中的作用。
最后,蛋白质组学实验旨在全面了解 ATP 依赖性蛋白质的作用
建议使用解折叠酶/蛋白酶。这些实验将为蛋白质组的作用提供一个全面的视角。
AAA+ 酶的底物选择中的特定接头蛋白和肽结合域。蜂窝网络
保护基因组免受损伤并促进受损 DNA 忠实修复的机制是
对健康和生存至关重要,众多与之相关的癌症综合症充分证明了这一点
这些细胞过程的遗传破坏。 AAA+ 的蛋白质重塑和破坏
酶是细胞用来解释和解释策略的一个关键但人们知之甚少的方面。
保护他们的基因组。
项目成果
期刊论文数量(0)
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会议论文数量(0)
专利数量(0)
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{{ truncateString('TANIA A BAKER', 18)}}的其他基金
Macromolecular interactions controlling the ALA synthases, keystone enzymes that initiate heme biosynthesis
控制 ALA 合成酶(启动血红素生物合成的关键酶)的大分子相互作用
- 批准号:
9752583 - 财政年份:2017
- 资助金额:
$ 28.84万 - 项目类别:
Macromolecular interactions controlling the ALA synthases, keystone enzymes that initiate heme biosynthesis
控制 ALA 合成酶(启动血红素生物合成的关键酶)的大分子相互作用
- 批准号:
10214597 - 财政年份:2017
- 资助金额:
$ 28.84万 - 项目类别:
BASIS OF SUBSTRATE SELECTION BY BACTERIAL ADAPTOR PROTEINS
细菌衔接蛋白选择底物的基础
- 批准号:
8169213 - 财政年份:2010
- 资助金额:
$ 28.84万 - 项目类别:
ADAPTOR-PROTEIN MEDIATED RECOGNITION AND REGULATION OF PROTEIN DEGRADATION
接头蛋白介导的蛋白质降解的识别和调节
- 批准号:
7955083 - 财政年份:2009
- 资助金额:
$ 28.84万 - 项目类别:
STRUCTURE AND FUNCTION OF THE CLPXP ATP-DEPENDENT PROTEASE
CLPXP ATP 依赖性蛋白酶的结构和功能
- 批准号:
7721201 - 财政年份:2008
- 资助金额:
$ 28.84万 - 项目类别:
STRUCTURE AND FUNCTION OF THE CLPXP ATP-DEPENDENT PROTEASE
CLPXP ATP 依赖性蛋白酶的结构和功能
- 批准号:
7369492 - 财政年份:2005
- 资助金额:
$ 28.84万 - 项目类别:
STRUCTURE AND FUNCTION OF THE CLPXP ATP-DEPENDENT PROTEASE
CLPXP ATP 依赖性蛋白酶的结构和功能
- 批准号:
7182916 - 财政年份:2005
- 资助金额:
$ 28.84万 - 项目类别:
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