Regulation of mRNA Turnover in Trypanosomes
Regulation of mRNA Turnover in Trypanosomes
批准号:
7323228
负责人:
Vivian Bellofatto
金额:
$25.31万
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-12-01 至 2009-11-30
关键词:
AddressAfricanAfrican TrypanosomiasisAreaBiochemicalBiological ModelsCell-Free SystemCellsCentral AmericaCessation of lifeChagas DiseaseComplexCutaneousDatabasesDeveloped CountriesDeveloping CountriesDevelopmentDiseaseDissectionEast IndianElementsEnzymesEukaryotaEukaryotic CellExcisionGenesGeneticGenomeGenomicsGuanosineHumanHuman BitesInfectionInsectaKnock-outLaboratoriesLeishmaniasisLeptomonasLife Cycle StagesMammalsMessenger RNAMetabolic PathwayMiddle EastMolecular GeneticsNuclearOrganismOrthologous GeneParasitesPathway interactionsPatternPhosphodiesterase IPoly(A) TailPost-Transcriptional RegulationProtein OverexpressionProteinsPurposeRNARNA InterferenceRateReactionRegulationRewardsRoleSystemTherapeuticTranscriptTranscriptional RegulationTreatment CostTrypanosomaTrypanosoma brucei bruceiTrypanosomiasisTsetse FliesVisceral LeishmaniasisWorkWorld Health OrganizationYeastsbaseburden of illnessdecapping enzymedisability-adjusted life yearsin vivomRNA DecaymRNA ExpressionmRNA StabilitymRNA Transcript DegradationmRNA decappingnucleaseprotein purificationresearch studytool
中文摘要
描述(由申请人提供):
锥虫病和利什曼病是全世界发展中国家的主要疾病。在这些地区,目前有10万人感染了锥虫。人类疾病包括非洲锥虫病(“昏睡病”)、恰加斯病(在南美洲和中美洲地区流行)和皮肤、粘膜皮肤和内脏利什曼病(在中东和印度次大陆部分地区流行)。非洲锥虫病通过携带布氏锥虫亚种的采采蝇的叮咬传播给人类。据世界卫生组织估计,疾病负担为205万个残疾调整寿命年。治疗费用很高,未经治疗的感染通常会导致死亡。然而,锥虫之间有许多共同的代谢途径,这些途径与人类的途径有很大的不同,可以用来开发比目前可用的更有效的治疗方法。通过观察锥虫在人类和昆虫宿主中以不同的形式出现,提出了一种可能的治疗方法。在生命周期的不同阶段,这些不同的形式可能反映了mRNA稳定性的差异。这项建议的目的是为了了解mRNAs在锥虫体内是如何代谢的。在这些寄生虫中,似乎没有对稳定水平的mRNA进行转录调控。因此,同一生命周期形式中不同mRNAs之间存在的mRNA稳定性差异可能部分是由不同的mRNA衰变所调节的。不同生命周期形式之间的mRNA表达模式的差异也可能部分地受到不同的mRNA周转的控制。我们建议鉴定和表征两种重要的酶活性,这两种活性在mRNA衰变中起重要作用。我们的目标是:(1)从锥虫体内分离和克隆脱氢酶;(2)从锥体中分离和克隆脱烯基核酸酶;(3)评估脱氢酶和脱烯基酶在体内mRNA转换中的作用。我们最近开发了一种无细胞系统,能够胜任这两种酶的活性。这项工作是我们提出的实验计划的关键第一步。
英文摘要
DESCRIPTION (provided by applicant):
Trypanosomiasis and Leishmaniasis are major diseases in developing countries throughout the world. In these areas 100,000 people are currently infected with trypanosomes. Human illness includes African trypanosomiasis ("sleeping sickness"), Chagas' disease (endemic in regions of South and Central America) and cutaneous, mucocutaneous and visceral Leishmaniasis (endemic in parts of the Middle East and the Indian Subcontinent). African trypanosomiasis is spread to humans by the bite of tsetse flies that harbor the Trypanosoma brucei subspecies. The disease burden is estimated by the World Health Organization to be 2.05 million Disability Adjusted Life Years. The cost of treatment is high, and untreated infection usually results in death. However, trypanosomatids share many metabolic pathways among themselves that differ enough from human pathways to be exploited in the development of therapeutics that are more efficacious than those currently available. One possible therapeutic approach is suggested by the observation that trypanosomatids occur in different forms in their human and insect hosts. These differing forms at various stages of the life cycle may reflect differences in mRNA stability. The purpose of this proposal is to gain an understanding of how mRNAs are metabolized in trypanosomes. There appears to be little transcriptional regulation of steady state levels mRNA in these parasites. Therefore, the differences in mRNA stability that exist among different mRNAs in one life cycle form may be regulated, in part, by differential mRNA decay. Differences in mRNA expression patterns among the different life cycle forms is also likely to be controlled, in part, by differential mRNA turnover. We propose to identify and characterize two crucial enzymatic activities important in mRNA decay. Our aims are (1) to purify and clone the decapping enzyme from trypanosomes; (2) to purify and clone the deadenylating nuclease from trypanosomes; and (3) to assess the roles of the decapping enzyme and deadenylase in mRNA turnover in vivo. We have recently developed a cell-free system that is competent for both of these enzymatic activities. This work is a key first step in our proposed experimental plan.
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会议论文
Novel Notch regulation in KSHV reactivation
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批准号:10198741
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资助金额:$19.63万
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依托单位:
Location: Its role in protein-RNA contact during trypanosome gene regulation
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批准号:8660641
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资助金额:$19.88万
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批准号:7936247
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财政年份:2009
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负责人:Vivian Bellofatto
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依托单位:
Regulation of mRNA Turnover in Trypanosomes
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资助金额:$4.41万
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Regulation of mRNA Turnover in Trypanosomes
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批准号:6989746
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资助金额:$26.57万
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Regulation of mRNA Turnover in Trypanosomes
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依托单位:
Regulation of mRNA Turnover in Trypanosomes
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批准号:7148699
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资助金额:$25.8万
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负责人:Vivian Bellofatto
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依托单位:
Regulation of mRNA Turnover in Trypanosomes
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依托单位:
ANALYSIS OF TRYPANOSOME MRNA SYNTHESIS BY GENE TRANSFER
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资助金额:$6.86万
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财政年份:1993
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依托单位:
TRYPANOSOME MRNA SYNTHESIS BY GENE TRANSFER
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批准号:2065015
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资助金额:$24.38万
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财政年份:1991
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ANALYSIS OF TRYPANOSOME MRNA SYNTHESIS BY GENE TRANSFER
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Analysis of Trypanosome mRNA Synthesis by Gene Transfer
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批准号:7390320
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资助金额:$46.35万
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财政年份:1991
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负责人:Vivian Bellofatto
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依托单位:
Analysis of Trypanosome mRNA Synthesis by Gene Transfer
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批准号:7195705
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资助金额:$46.69万
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财政年份:1991
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负责人:Vivian Bellofatto
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依托单位:
TRYPANOSOME MRNA SYNTHESIS BY GENE TRANSFER
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批准号:6557340
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项目类别:
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资助金额:$3.99万
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财政年份:1991
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依托单位:
Analysis of Trypanosome mRNA Synthesis by Gene Transfer
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海外基金