Characterization of the Cyclic Di-GMP Signaling System of Vibrio cholerae
Characterization of the Cyclic Di-GMP Signaling System of Vibrio cholerae
批准号:
8073284
负责人:
CHRISTOPHER M WATERS
金额:
$0.5万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-06-28 至 2010-09-30
关键词:
Antibiotic TherapyAwardBacteriaBacterial InfectionsBehaviorBioinformaticsChemicalsCholeraControl GroupsCuesDevelopmentDiseaseEnvironmentFacultyGene ExpressionGenesGenetic ScreeningGenetic TranscriptionGrantHealthInstructionIntracellular Second MessengerLaboratoriesLeadLigandsLinkMicrobial BiofilmsMutagenesisN-terminalNaturePopulation ControlPositioning AttributePostdoctoral FellowProcessProteinsResearchResearch PersonnelResearch Project GrantsRoentgen RaysScreening procedureSecond Messenger SystemsSensorySignal TransductionSignaling MoleculeSystemTranscription CoactivatorVibrio choleraeVirulenceWaterWorkX-Ray Crystallographybasegraduate studentmembermutantnovelnovel therapeutic interventionpandemic diseasepathogenprogramspromoterquorum sensingresponse
中文摘要
描述(由申请人提供):霍乱弧菌是全球健康大流行性霍乱的病原体,使用群体感应(QS)和环二GMP(c-diGMP)来调节生物膜形成和毒力。QS是细菌分泌小的化学信号来计数其在群体中的数量并相应地控制群体行为的过程。c-diGMP是最近发现的在细菌中普遍存在的第二信使细胞内信号分子。我最近在霍乱弧菌中发现了QS和c-diGMP之间的新联系。为了回答一些关于c-diGMP的基本问题,并进一步了解其与QS的联系,本研究提出:目的1。识别转录组件耦合c-diGMP基因表达的改变,使用遗传筛选;目的2。使用生物信息学和高通量化学筛选鉴定霍乱弧菌中GGDEF/EAL蛋白的特异性配体;和Aim 3.利用X射线晶体学确定GGDEF和EAL蛋白的信号识别如何调节酶活性。由于QS和c-diGMP都控制着霍乱弧菌和许多其他细菌病原体的毒力,我希望这项工作能够为治疗细菌性疾病带来新的治疗方法。“细菌能感知多种小的化学信号,以适应和响应环境。这些化学信号通常控制细菌引起疾病的能力。我在霍乱弧菌的研究旨在揭示这些信号的性质,以及细菌如何对它们做出反应,以开发治疗细菌感染的新治疗方法。相关性(参见说明):K22研究学者发展奖将使我能够支持我的实验室成员(研究生,技术人员和/或博士后)在我的新教师职位的头两年。这将使我能够开发研究项目,将形成一个或多个R 01赠款的基础。
英文摘要
DESCRIPTION (provided by applicant): Vibrio cholerae, the causative agent of the worldwide health pandemic cholera, uses both quorum sensing (QS) and cyclic di-GMP (c-diGMP) to regulate biofilm formation and virulence. QS is a process by which bacteria secrete small, chemical signals to count their numbers in a population and control group behavior accordingly. c-diGMP is a recently discovered second messenger intracellular signaling molecule ubiquitous in bacteria. I have recently discovered a novel connection between QS and c-diGMP in V. cholerae. To answer some of the fundamental question about c-diGMP, and further understand its connection to QS, this research proposes to: Aim 1. Identify the transcriptional components that couple c-diGMP to alterations in gene expression using genetic screens; Aim 2. Identify specific ligands of GGDEF/EAL proteins in V. cholerae using bioinformatics and a high-throughput chemical screen; and Aim 3. Utilize X-ray crystallography to determine how signal recognition by GGDEF and EAL proteins modulates enzymatic activity. As both QS and c-diGMP control virulence in V. cholerae and numerous other bacteria pathogens, it is my hope that this work could lead to novel therapeutic approaches for the treatment of bacterial disease. ' Bacteria sense multiple small chemical signals to adapt and respond to their environment. These chemical signals are often control the ability of bacteria to cause disease. My research in Vibrio cholerae seeks to unravel the nature of these signals, and how bacteria respond to them, to develop novel therapeutic approaches to treat bacterial infections. RELEVANCE (See instructions): The K22 Research Scholar Development Award will allow me to support members of my laboratory (graduate students, technician, and/or post-docs) during the first two years of my new faculty position. This will allow me to develop research projects that will form the basis of one or more R01 grants.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
DOI:
10.21769/bioprotoc.1394
发表时间:
2015-01
期刊:
Bio-protocol
影响因子:
0.8
作者:
[Disha Srivastava;C. Waters]
通讯作者:
Disha Srivastava;C. Waters
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