




版權(quán)說明:本文檔由用戶提供并上傳,收益歸屬內(nèi)容提供方,若內(nèi)容存在侵權(quán),請進行舉報或認領(lǐng)
文檔簡介
StrategiesforStudying
MicrobialPathogenesisBIOL533Lecture4MedicalMicrobiologyBIOL5331StrategiesforStudying
MicrobReporterGeneFusionsOperonfusion:transcriptionalPromoterfromforeigngeneTranslationalsequencefromreportergeneBIOL5332ReporterGeneFusionsOperonfuReporterGeneFusionsGenefusion:translationalPromoterandtranslationalsignalfromforeigngeneInitiationsignal/+NH2codingsequenceTranslationalsignalalsofromreportergeneInitiationsequenceandpartofNH2sequenceofreportergenemissing,butCOOHregionstillpresentTwocodingsequencesmustbeinframeBIOL5333ReporterGeneFusionsGenefusiTechniqueUsetransposonvectorcontaininglacfusionCarriespromoterlesslacZgeneandselectableantibioticmarkerSelectionforantibioticmarkergeneratessetofrandominsertionsinchromosomeColoniescarryingtransposonscreenedforexpressionunderconditionstestedBIOL5334TechniqueUsetransposonvectorForeignGeneExpressionAssayforproductionofβgalHighertemperature+—ironetc.LocateunknowngeneBIOL5335ForeignGeneExpressionAssayflacZFusionUsedtofindregulatorygenesthatcontrolexpressionofvirulencegenelacZfusionstrainismutagenized(chemicaloranothertransposon)ResultingcoloniesscreenedforaberrantregulationBIOL5336lacZFusionUsedtofindregulalacZFusionAberrantregulation:ColoniesarenotLac+inpresenceofinducingconditionsLossofactivatorColoniesareLac+underbothinducingandnon-inducingconditionsLossofrepressorBIOL5337lacZFusionAberrantregulationlacZFusionGenetaggedbytransposoncanbeclonedSegmentofDNAadjacenttotransposon:Canbeusedashybridizationprobetoclonewild-typelocusCanalsobeclonedbycomplementationClonedDNAcanbesequencedBIOL5338lacZFusionGenetaggedbytranphoAGeneFusionsVirulencegenesaresmallsubsetoftotalgenes,sorandommutagenesiswillaffectmanymorenon-virulencegenesWaytooptimizenumberofvirulencegenemutationstakesadvantageoffactthatmostvirulencegenesareonbacterialsurfaceorexcretedintomediumBIOL5339phoAGeneFusionsVirulencegenphoAGeneFusionsTranslationalproteinfusionAlkalinephosphataseisexpressedonlyinperiplasmForeigngeneproducthastobeexpressedoutsideofcytoplasmInvector,signalsequencemutationsblockexportofalkalinephosphataseandrenderitinactiveBIOL53310phoAGeneFusionsTranslationalphoAGeneFusionsExportandactivityrestoredbyfusinginframearestrictionfragmenttotruncatedphoAgene;i.e.,lackingsignalsequencesNoAUGstartcodonNoribosomebindingsiteRestrictionfragmenthasportionsofNH2-terminalgenesencodingsignalsequencesofheterologousproteins,suchasOmpForLamBBIOL53311phoAGeneFusionsExportandacTnphoATransposonCreatedTnphoAthatrandomlyinsertsphoAintotargetgenesHybridproteinsdisplayalkalinephosphataseactivityonlyiftargetgeneencodesaperiplasmicoutermembraneorextracellularproteinBIOL53312TnphoATransposonCreatedTnphoTnphoATransposonUseTnphoA:StudytopologyofinnermembraneproteinsβgalfusionsexpressedonlyincytoplasmIdentifygenesthatencodeexportproteinsExportedproteinsrepresentmajorclassofvirulencefactorsNumberofadditionaldeliverysystemsRememberanalysisofGroismanandHeffronBIOL53313TnphoATransposonUseTnphoA:BIAnalysisofVirulenceStudyTnphoAmutantsofS.typhimuriumidentifiedasPho+onL-agarplatesTestedforvirulencebyoralinfectionofBALB/CmiceFound15/150Pho+mutantswereavirulent9/15weredefectiveinLPSbiosynthesisNonehadinsertionsinvirulenceplasmidBIOL53314AnalysisofVirulenceStudyTnpAnalysisofVirulenceConclusion:samecaveatsasapplytonormaltransposonmutagenesis:ButuseofTnphoAlimitsidentificationofrandominsertionstothoseaffectingcellenvelopefactorsBIOL53315AnalysisofVirulenceConclusioAnalysisofVirulenceDisadvantage:Limitsselectiontogenesexpressedin S.typhimuriumonL-agarGenesexpressedatlowlevelsorrepressedonL-agarplateswouldbemissedBIOL53316AnalysisofVirulenceDisadvantAnalysisofVirulenceExpressionproblemmayexplainwhy9/15Pho+avirulentmutantstrainswereLPS—ratherthanbeingdefectiveinothervirulencegenesBIOL53317AnalysisofVirulenceExpressioAnalysisofVirulenceTnphoAnarrows,butdoesn’tsolvealldetectionproblemsWhiledisruptinggene,theTnphoAmutationsproducealkalinephosphatasehybridproteinsCouldbephenotypenotduetolossofgene,butpresenceofdeleterioushybridprotein;Therefore,tobesuremutationinvirulencegene,mustconductothergeneticanalysesBIOL53318AnalysisofVirulenceTnphoAnaInVivoExpressionTechnologyMahanet.al.,1993.Science259:686-688Basedongenethat,whenmutated,causesorganismtobeattenuatedUsedSalmonellatyphimuriumΔpurA—lacZYbothlackpromoter (insuicideplasmid)BIOL53319InVivoExpressionTechnologyMInVivoExpressionTechnologySau3AdigestedchromosomalDNAelectroporatedSalmonellaPurA—strainInjectedintomicetwiceAftereach3daysharvestspleenPlateonartificialmediatodetectLac—strainsBIOL53320InVivoExpressionTechnologySInVivoExpressionTechnologyBasedsolelyonfactthativigenesarehighlyexpressedinanimaltissues,butarenotexpressedinlabmediaSelectionstrategy:BacterialstrainwithmutationthatattenuatedgrowthinvivoComplementedbyoperonfusionstosameattenuatedgeneBIOL53321InVivoExpressionTechnologyBInVivoExpressionTechnologyCriteriaforIVETsystem:FusionsinsinglechromosomalcopyNoplasmidcomplicationsFusionsconstructedwithoutdisruptionofgeneLossofgenecouldbelethaltobacteriumMonitoredbothinanimalandonlabmediaBIOL53322InVivoExpressionTechnologyCpIVETVectorpIVET1plasmidSuicidevectorReplicationdependentonPireplicationproteinSalmonelladoesnotproducePromoterlesspurAgeneandlacZoperonCanmonitorlevelortranscriptionofentireoperonUniquecloningsite5’topurAgeneClonerandomfragmentsofDNAblageneallowsplasmidtobeselectedBIOL53323pIVETVectorpIVET1plasmidBIOLpIVETVectorConstructionofclonesCloneSau3AfragmentsintovectorPutfragmentpoolintoPurAdeletionstrainofSalmonella(—Pireplicationprotein)SelectionforApRplasmid:integratesathomologousSalmonellageneNonaturallacZgeneDeletedpurAgeneBIOL53324pIVETVectorConstructionofclpIVETVectorClonesofinterestProductofplasmidintegrationgeneratesaduplicationOnepromoterdrivespurAlacZwhileotherdriveswild-typecopyofvirulencegeneIntegrateatunknowngenebecausepurAandlacZarefromE.coli;notenoughhomologytoSalmonellaBIOL53325pIVETVectorClonesofinterestPropertiesofClonesTosurviveandpropagateinhost:purAlacZfusionhastobeexpressedatsufficientleveltoovercomedeletionofpurAIfgeneofinterestcodesforvirulencefactor,thenexpressionalsorequiredforinfectionMonitorexpressioninanimalandlabbymeasuringβgalfromstrainsthatsurvivethreedaysandarerecoveredfromspleenBIOL53326PropertiesofClonesTosurviveAnalysisofVirulenceToidentifygenescodeforvirulence,junctionsoffusionsclonedandsequencedPreparedinactivatedgenesAnyeffectonpathogenesis?Transposoninsertionsin3/5genesBALB/CmiceinfectedorallyhaveincreasedLD50(200to20,000fold)Therefore,IVETselectsforvirulenceAlso,miceimmunizedwith1mutantwereprotectedwhenchallengedwithwild-typeBIOL53327AnalysisofVirulenceToidentiIdentityofGenesResults:Mostgenesfoundsofararehousekeepinggenes,perhapsbecauseofscreeningconditionsScreenedonlyforexpressionofgenesonaerobicmedia,butmostbodypartsareanaerobicCrudeapproach;atbest,identifiesasetofgenesthatareexpressedatsomepointofinfectionBIOL53328IdentityofGenesResults:BIOLIdentityofGenespheSThimAoperonencodes2suphenylalanylt-RNAsynthetaseand1suhostintegrationfactor(IHF)AntisenseRfbO-antigensynthesisO-antigensynthesismutantsattenuated-orally,butvirulentIProuteMutationsthatincreaseLD50doaffectvirulenceBIOL53329IdentityofGenespheSThimAopProsandConsDetailedanalysisofgenesandgeneproductsexpressedinanimalnecessarytodeterminewhereandwhenduringinfectionthegenewasexpressedMoreseriousproblem—focusesontranscriptionalregulationBIOL53330ProsandConsDetailedanalysisProsandConsGenesthatareregulatedoractivatedpost-transcriptionallywillbemissedAlso,manygenesexpressedonlabmediamaybeimportantinvivoIfsomeaspectofinvitrogrowthconditionissimilaroridenticaltoinvivocondition(e.g.,37°C),certaingenesmaybediscardedBIOL53331ProsandConsGenesthatarereResearchStrategyTogetmaximalvariabilityingenesselected,usedifferent:ReportergenesInfectionmodelsinvitrogrowthconditionsLikelythatinfectionbydifferentroutesorhostscharacterizedbyuniqueH-PinteractionsleadtodifferentgenesBIOL53332ResearchStrategyTogetmaximaAnalysisofVirulenceHeithoffet.al.,1999(Mahan’sgroup)Previouslyfoundover100differentgenes25%unidentifiedAllaffectvirulenceLookedatregulationofgenesinintestine,liver,andspleen,plusculturedmurinemacrophageBIOL53333AnalysisofVirulenceHeithoffAnalysisofVirulenceRegulationinresponsetoMg+2,pH,andFeproceededsameasinvitroatapproximatelythesamelevelsNottrueinspleen;hastobedifferentsignalsThinkthatresponsetoMg+2andpHcorrelateswithassumingmacrophageexistenceBIOL53334AnalysisofVirulenceRegulatioUsesExpectedtoprovideAgforvaccineGenesexpressedonlyinvivoAssistinconstructionlive-attenuatedvaccines(inactivatedgenes)AlsocanestablishinvivoregulatedexpressionofheterologousAginlivevaccinesBIOL53335UsesExpectedtoprovideAgforUsesIdentificationofivigenesallowsdetectionofchangesinmetabolism,generegulation,andcellsurfacepropertiesduringgrowthinanimaltissuesAllowsnewantimicrobialtargetstobeidentifiedBIOL53336UsesIdentificationofivigeneLecture4Questions?Comments?Assignments...BIOL53337Lecture4Questions?BIOL53337StrategiesforStudying
MicrobialPathogenesisBIOL533Lecture4MedicalMicrobiologyBIOL53338StrategiesforStudying
MicrobReporterGeneFusionsOperonfusion:transcriptionalPromoterfromforeigngeneTranslationalsequencefromreportergeneBIOL53339ReporterGeneFusionsOperonfuReporterGeneFusionsGenefusion:translationalPromoterandtranslationalsignalfromforeigngeneInitiationsignal/+NH2codingsequenceTranslationalsignalalsofromreportergeneInitiationsequenceandpartofNH2sequenceofreportergenemissing,butCOOHregionstillpresentTwocodingsequencesmustbeinframeBIOL53340ReporterGeneFusionsGenefusiTechniqueUsetransposonvectorcontaininglacfusionCarriespromoterlesslacZgeneandselectableantibioticmarkerSelectionforantibioticmarkergeneratessetofrandominsertionsinchromosomeColoniescarryingtransposonscreenedforexpressionunderconditionstestedBIOL53341TechniqueUsetransposonvectorForeignGeneExpressionAssayforproductionofβgalHighertemperature+—ironetc.LocateunknowngeneBIOL53342ForeignGeneExpressionAssayflacZFusionUsedtofindregulatorygenesthatcontrolexpressionofvirulencegenelacZfusionstrainismutagenized(chemicaloranothertransposon)ResultingcoloniesscreenedforaberrantregulationBIOL53343lacZFusionUsedtofindregulalacZFusionAberrantregulation:ColoniesarenotLac+inpresenceofinducingconditionsLossofactivatorColoniesareLac+underbothinducingandnon-inducingconditionsLossofrepressorBIOL53344lacZFusionAberrantregulationlacZFusionGenetaggedbytransposoncanbeclonedSegmentofDNAadjacenttotransposon:Canbeusedashybridizationprobetoclonewild-typelocusCanalsobeclonedbycomplementationClonedDNAcanbesequencedBIOL53345lacZFusionGenetaggedbytranphoAGeneFusionsVirulencegenesaresmallsubsetoftotalgenes,sorandommutagenesiswillaffectmanymorenon-virulencegenesWaytooptimizenumberofvirulencegenemutationstakesadvantageoffactthatmostvirulencegenesareonbacterialsurfaceorexcretedintomediumBIOL53346phoAGeneFusionsVirulencegenphoAGeneFusionsTranslationalproteinfusionAlkalinephosphataseisexpressedonlyinperiplasmForeigngeneproducthastobeexpressedoutsideofcytoplasmInvector,signalsequencemutationsblockexportofalkalinephosphataseandrenderitinactiveBIOL53347phoAGeneFusionsTranslationalphoAGeneFusionsExportandactivityrestoredbyfusinginframearestrictionfragmenttotruncatedphoAgene;i.e.,lackingsignalsequencesNoAUGstartcodonNoribosomebindingsiteRestrictionfragmenthasportionsofNH2-terminalgenesencodingsignalsequencesofheterologousproteins,suchasOmpForLamBBIOL53348phoAGeneFusionsExportandacTnphoATransposonCreatedTnphoAthatrandomlyinsertsphoAintotargetgenesHybridproteinsdisplayalkalinephosphataseactivityonlyiftargetgeneencodesaperiplasmicoutermembraneorextracellularproteinBIOL53349TnphoATransposonCreatedTnphoTnphoATransposonUseTnphoA:StudytopologyofinnermembraneproteinsβgalfusionsexpressedonlyincytoplasmIdentifygenesthatencodeexportproteinsExportedproteinsrepresentmajorclassofvirulencefactorsNumberofadditionaldeliverysystemsRememberanalysisofGroismanandHeffronBIOL53350TnphoATransposonUseTnphoA:BIAnalysisofVirulenceStudyTnphoAmutantsofS.typhimuriumidentifiedasPho+onL-agarplatesTestedforvirulencebyoralinfectionofBALB/CmiceFound15/150Pho+mutantswereavirulent9/15weredefectiveinLPSbiosynthesisNonehadinsertionsinvirulenceplasmidBIOL53351AnalysisofVirulenceStudyTnpAnalysisofVirulenceConclusion:samecaveatsasapplytonormaltransposonmutagenesis:ButuseofTnphoAlimitsidentificationofrandominsertionstothoseaffectingcellenvelopefactorsBIOL53352AnalysisofVirulenceConclusioAnalysisofVirulenceDisadvantage:Limitsselectiontogenesexpressedin S.typhimuriumonL-agarGenesexpressedatlowlevelsorrepressedonL-agarplateswouldbemissedBIOL53353AnalysisofVirulenceDisadvantAnalysisofVirulenceExpressionproblemmayexplainwhy9/15Pho+avirulentmutantstrainswereLPS—ratherthanbeingdefectiveinothervirulencegenesBIOL53354AnalysisofVirulenceExpressioAnalysisofVirulenceTnphoAnarrows,butdoesn’tsolvealldetectionproblemsWhiledisruptinggene,theTnphoAmutationsproducealkalinephosphatasehybridproteinsCouldbephenotypenotduetolossofgene,butpresenceofdeleterioushybridprotein;Therefore,tobesuremutationinvirulencegene,mustconductothergeneticanalysesBIOL53355AnalysisofVirulenceTnphoAnaInVivoExpressionTechnologyMahanet.al.,1993.Science259:686-688Basedongenethat,whenmutated,causesorganismtobeattenuatedUsedSalmonellatyphimuriumΔpurA—lacZYbothlackpromoter (insuicideplasmid)BIOL53356InVivoExpressionTechnologyMInVivoExpressionTechnologySau3AdigestedchromosomalDNAelectroporatedSalmonellaPurA—strainInjectedintomicetwiceAftereach3daysharvestspleenPlateonartificialmediatodetectLac—strainsBIOL53357InVivoExpressionTechnologySInVivoExpressionTechnologyBasedsolelyonfactthativigenesarehighlyexpressedinanimaltissues,butarenotexpressedinlabmediaSelectionstrategy:BacterialstrainwithmutationthatattenuatedgrowthinvivoComplementedbyoperonfusionstosameattenuatedgeneBIOL53358InVivoExpressionTechnologyBInVivoExpressionTechnologyCriteriaforIVETsystem:FusionsinsinglechromosomalcopyNoplasmidcomplicationsFusionsconstructedwithoutdisruptionofgeneLossofgenecouldbelethaltobacteriumMonitoredbothinanimalandonlabmediaBIOL53359InVivoExpressionTechnologyCpIVETVectorpIVET1plasmidSuicidevectorReplicationdependentonPireplicationproteinSalmonelladoesnotproducePromoterlesspurAgeneandlacZoperonCanmonitorlevelortranscriptionofentireoperonUniquecloningsite5’topurAgeneClonerandomfragmentsofDNAblageneallowsplasmidtobeselectedBIOL53360pIVETVectorpIVET1plasmidBIOLpIVETVectorConstructionofclonesCloneSau3AfragmentsintovectorPutfragmentpoolintoPurAdeletionstrainofSalmonella(—Pireplicationprotein)SelectionforApRplasmid:integratesathomologousSalmonellageneNonaturallacZgeneDeletedpurAgeneBIOL53361pIVETVectorConstructionofclpIVETVectorClonesofinterestProductofplasmidintegrationgeneratesaduplicationOnepromoterdrivespurAlacZwhileotherdriveswild-typecopyofvirulencegeneIntegrateatunknowngenebecausepurAandlacZarefromE.coli;notenoughhomologytoSalmonellaBIOL53362pIVETVectorClonesofinterestPropertiesofClonesTosurviveandpropagateinhost:purAlacZfusionhastobeexpressedatsufficientleveltoovercomedeletionofpurAIfgeneofinterestcodesforvirulencefactor,thenexpressionalsorequiredforinfectionMonitorexpressioninanimalandlabbymeasuringβgalfromstrainsthatsurvivethreedaysandarerecoveredfromspleenBIOL53363PropertiesofClonesTosurviveAnalysisofVirulenceToidentifygenescodeforvirulence,junctionsoffusionsclonedandsequencedPreparedinactivatedgenesAnyeffectonpathogenesis?Transposoninsertionsin3/5genesBALB/CmiceinfectedorallyhaveincreasedLD50(200to20,000fold)Therefore,IVETselectsforvirulenceAlso,miceimmunizedwith1mutantwereprotectedwhenchallengedwithwild-typeBIOL53364AnalysisofVirulenceToidentiIdentityofGenesResults:Mostgenesfoundsofararehousekeepinggenes,perhapsbecauseofscreeningconditionsScreenedonlyforexpressionofgenesonaerobicmedia,butmostbodypartsareanaerobicCrudeapproach;atbest,identifiesasetofgenesthatareexpressedatsomepointofinfectionBIOL53365IdentityofGenesResults:BIOLIdentityofGenespheSThimAoperonencodes2suphenylalanylt-RNAsynthetaseand1suhostintegrationfactor(IHF)AntisenseRfbO-antigensynthesisO-antigensynthesismutantsattenuated-orally,butvirulentIProuteMutationsthatincreaseLD50doaffectvirulenceBIOL5
溫馨提示
- 1. 本站所有資源如無特殊說明,都需要本地電腦安裝OFFICE2007和PDF閱讀器。圖紙軟件為CAD,CAXA,PROE,UG,SolidWorks等.壓縮文件請下載最新的WinRAR軟件解壓。
- 2. 本站的文檔不包含任何第三方提供的附件圖紙等,如果需要附件,請聯(lián)系上傳者。文件的所有權(quán)益歸上傳用戶所有。
- 3. 本站RAR壓縮包中若帶圖紙,網(wǎng)頁內(nèi)容里面會有圖紙預(yù)覽,若沒有圖紙預(yù)覽就沒有圖紙。
- 4. 未經(jīng)權(quán)益所有人同意不得將文件中的內(nèi)容挪作商業(yè)或盈利用途。
- 5. 人人文庫網(wǎng)僅提供信息存儲空間,僅對用戶上傳內(nèi)容的表現(xiàn)方式做保護處理,對用戶上傳分享的文檔內(nèi)容本身不做任何修改或編輯,并不能對任何下載內(nèi)容負責(zé)。
- 6. 下載文件中如有侵權(quán)或不適當(dāng)內(nèi)容,請與我們聯(lián)系,我們立即糾正。
- 7. 本站不保證下載資源的準確性、安全性和完整性, 同時也不承擔(dān)用戶因使用這些下載資源對自己和他人造成任何形式的傷害或損失。
最新文檔
- 【正版授權(quán)】 ISO 16840-13:2021/Amd 1:2025 EN Wheelchair seating - Part 13: Determination of the lateral stability property of a seat cushion - Amendment 1
- 儲氣瓶施工方案
- 橋加寬施工方案
- 河道防水混凝土施工方案
- 新房硬裝施工方案
- TSHJNXH 0015-2024 綠色低碳壓縮空氣站評價導(dǎo)則
- 2025年度模具開模與模具租賃服務(wù)合同模板
- 二零二五年度文化演出居間代理協(xié)議
- 二零二五年度奶制品企業(yè)社會責(zé)任履行協(xié)議
- 二零二五年度足浴養(yǎng)生品牌授權(quán)及經(jīng)營管理權(quán)轉(zhuǎn)讓合同
- 第四單元《紙的前世今生》第一課時(說課稿)-2023-2024學(xué)年五年級下冊綜合實踐活動粵教版
- 四川省綿陽市2025屆高三第二次診斷性考試英語試題(含答案無聽力原文及音頻)
- 醫(yī)學(xué)實驗室風(fēng)險評估報告-臨床實驗室風(fēng)險評估-可復(fù)制
- 2022年教資筆試科目三高中數(shù)學(xué)講義
- 八大員-勞務(wù)員??荚囶}與答案
- 2024危重癥患兒管飼喂養(yǎng)護理-中華護理學(xué)會團體標準課件
- 《《中央企業(yè)合規(guī)管理辦法》解讀》課件
- 脫硫自動化控制-洞察分析
- 醫(yī)務(wù)人員醫(yī)德醫(yī)風(fēng)培訓(xùn)
- 人教版初中歷史八上-第2課 第二次鴉片戰(zhàn)爭
- 2025年中考語文專題復(fù)習(xí):寫作技巧 課件
評論
0/150
提交評論