Remodeling of ribosome function by MazF toxins
Remodeling of ribosome function by MazF toxins
批准号:
9244396
负责人:
NANCY ANN WOYCHIK
金额:
$26.68万
依托单位国家:
美国
项目类别:
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-12-01 至 2018-11-30
关键词:
5&apos Untranslated RegionsAIDS/HIV problemAntitoxinsAttenuatedBacteriaCause of DeathCell physiologyCharacteristicsCleaved cellConsensus SequenceDataDevelopmentDiseaseEndoribonucleasesEngineeringEscherichia coliExhibitsGenesGenomeGoalsGrowthHIVHumanImmuneImmune responseImmune systemIn VitroIncubatedIndividualInfectionLinkLongitudinal StudiesMass Spectrum AnalysisMessenger RNAMethodologyMolecularMolecular ProfilingMycobacterium tuberculosisOperonOrganismOrthologous GenePaperPhenotypeProtein BiosynthesisProteinsProteomePurinesPyrimidineRNARecombinantsRecruitment ActivityReportingRibosomal RNARibosomesRoleSignal TransductionSpecificityStressSystemTestingTherapeuticTimeToxinTranscriptTranslatingTranslationsTuberculosisVirulentalpha Toxinantimicrobialassaultbasebiological adaptation to stresscell growthdifferential expressionkillingslatent infectionparalogous geneprotein complexprotein expressionresponsetherapeutic developmenttooltraittranscriptome sequencingtranslation assaytuberculosis treatment
中文摘要
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英文摘要
Project Summary
Mycobacterium tuberculosis (Mtb) has adapted to survive a wide range of assaults—from our immune
response to antimicrobial therapeutics—intended to eradicate the organism. However, the molecular switches
that enable Mtb to endure these stresses, slow replication or become dormant as a latent tuberculosis infection
(LTBI) are not known. Emerging studies on the molecular underpinnings of stress survival in Escherichia coli
generally point to a major role for TA systems, which are operons comprising adjacent genes encoding two
small (~10 kDa) proteins, a toxin and its cognate antitoxin that inhibits toxin activity in the TA protein-protein
complex. Because the Mtb genome harbors an unusual abundance of TA systems (>80) relative to E. coli and
other bacteria, their expression has been implicated in Mtb stress survival and/or the switch to the non-
replicating persistent state characteristic of LTBI. While indirect evidence linking TA toxins to stress exposure
in Mtb is accumulating, we do not have a clear understanding of the phenotypic switches triggered by these
stresses or their downstream effects. The goal of this R21 proposal is to test our hypothesis that some of the
Mtb MazF toxins may influence cell physiology by generating stress ribosomes that preferentially translate
leaderless Mtb transcripts thought to encode proteins pivotal for stress survival and establishment of LTBI.
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会议论文
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海外基金