Functions and mechanisms of M. tuberculosis S/T kinases
Functions and mechanisms of M. tuberculosis S/T kinases
批准号:
7010036
负责人:
THOMAS C ALBER
金额:
$25.25万
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-03-01 至 2009-02-28
关键词:
Mycobacterium tuberculosisX ray crystallographybacterial geneticsbacterial proteinsbioinformaticsbiological signal transductionbiophysicsenzyme activityenzyme substratehigh performance liquid chromatographymetabolismmolecular dynamicspolymerase chain reactionprotein purificationprotein structure functionserine threonine protein kinase
中文摘要
描述(由申请人提供):该计划的长期目标是了解最近在结核分枝杆菌(Mtb)中发现的丝氨酸/苏氨酸蛋白激酶(STPKs)的功能。这种致病菌是结核病(TB)的病原体,感染着世界三分之一的人口。结核病每年导致300多万人死亡,比任何其他传染病都多。尽管在蛋白激酶和磷酸酶方面做了大量的工作,但对Mtb STPKs和单个Mtb Ser/Thr磷酸酶(PPP)的作用知之甚少。需要研究确定这些酶的特定生物学功能,以了解环境信号如何调节Mtb代谢。
我们将主要集中在生化、生物物理、结构和遗传方法上,主要研究四种Mtb蛋白。这项研究有四个具体目标:
1.确定两种Mtb跨膜受体激酶的信号基础。
2.明确PounB激酶在OFF和ON状态之间的转换机制。
3.发现Mtb STPKs的蛋白质底物。
4.明确细胞内信号转导途径,重点是单个线粒体丝氨酸/苏氨酸磷酸酶,PPP。
我们的初步研究确立了这些目标的可行性。我们对Mtb蛋白激酶结构域的生化和结构研究表明,原核和真核STPKs具有非常保守的三维结构和共同的调控和底物识别机制。我们确定了细菌STPK感受域和细菌丝氨酸/苏氨酸磷酸酶的第一晶体结构。我们已经确定了PuncB激酶的活性和非活性状态。我们提出的对PnuB和PPP底物的探索将开始定义这些蛋白质的功能。由于激酶信号在细胞生理中的核心作用,STPKs作为药物靶点的日益受到关注,以及结核病对全球健康的影响,我们提出的研究将对分子生物学和医学具有很高的意义。
英文摘要
DESCRIPTION (provided by applicant): The long-term goal of this proposed program is to understand the functions of Ser/Thr protein kinases (STPKs) recently discovered in Mycobacterium tuberculosis (Mtb). This pathogenic bacterium, which is the causative agent of tuberculosis (TB), infects one third of the world's population. TB kills over 3 million people annually, more than any other infectious disease. Despite the large amount of work on protein kinases and phosphatases, little is known about the roles of the Mtb STPKs and the single Mtb Ser/Thr phosphatase, Ppp. Research to define the specific biological functions of these enzymes is needed to know how environmental signals regulate Mtb metabolism.
We will focus biochemical, biophysical, structural and genetic methods principally on four Mtb proteins. This research has four specific aims:
1. Define the basis for signaling in two Mtb transmembrane receptor kinases.
2. Define the mechanism of PknB kinase switching between off and on states.
3. Discover protein substrates of Mtb STPKs.
4. Define the intracellular signaling pathways, focusing on the single Mtb Ser/Thr phosphatase, Ppp.
Our preliminary studies established the feasibility of these aims. Our biochemical and structural work on the kinase domain of Mtb PknB showed that the prokaryotic and eukaryotic STPKs share a remarkably conserved three-dimensional structure and universal mechanisms of regulation and substrate recognition. We determined the first crystal structures of a bacterial STPK sensor domain and bacterial Ser/Thr phosphatase. We have set the stage to define the active and inactive states of the PknB kinase. Our proposed exploration of the substrates of PknB and Ppp will begin to define the functions of these proteins. Because of the central roles of kinase signaling in cellular physiology, the increasing focus on STPKs as pharmaceutical targets, and the worldwide health impact of TB, our proposed studies will have high significance for molecular biology and medicine.
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会议论文
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依托单位:
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