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ResearchInterestsInMyGroupEtiology,Mechanism,Diagnosis,PreventionandTreatmentofBirthDefects,CardiovascularDiseases,BreastCancer,etc.1
RegulationofGeneExpressioninProkaryotes
RegulationofGeneExpressioninEukaryotesDNABasedInformationTechnologyWhatI’llTalkAbout2345ProkaryotesEukaryotes1.Nucleolus;2.Nucleus;3.Ribosome;4.Vesicle;5.Roughendoplasmicreticulum;6.Golgiapparatus;7.Cytoskeleton;8.Smoothendoplasmicreticulum;9.Mitochondrion;10.Vacuole;11.Cytosol;12.Lysosome;13.Centriole6GeneralPrinciplesofGeneExpressionRegulationTheCentralDogmaofMolecularBiologyGeneticinformationfromDNAtoRNAtoProtein.GeneExpression:cellsandvirusesturntheinformationongenesintogeneproducts,whichareproteinsorRNAs.
GeneRegulation:Controlanddeterminewhichgenesareswitchedonandoff,andwhen,howlong,andtowhatextentthegenesareexpressed.7GeneTypesHousekeepingGene
istypicallyaconstitutivegenethatisrequiredforthemaintenanceofbasalcellularfunction,andarefoundinallhumancellsRegulatedGenesaregeneswhoseactivityiscontrolledinresponsetotheneedsofacellororganismsInducibleGenesaregenesturnedoninabacteriumorcellbyasubstance,suchaslactoseoralcoholdehydrogenase.8SevenprocessesthataffectGeneExpression910RegulationofGeneExpressioninProkaryotes11CouplingofTranscriptionandTranslationinBacteria12mRNAIsTranscribed,TranslatedAndDegradedSimultaneouslyinBacteria13GeneClusterAgeneclusterisasetoftwoormoregenesthatservetoencodeforthesameorsimilarproductswhichnecessarytoperformcoordinatedfunction.Becausepopulationsfromacommonancestortendtopossessthesamevarietiesofgeneclusters,theyareusefulfortracingbackrecentevolutionaryhistory.1415OperonsofBacteria
Inbacteria,genesareclusteredintooperons(操縱子).Anoperonisafunctioningunitofkeynucleotidesequencesincludinganoperator,acommonpromoter,andoneormorestructuralgenes,whichiscontrolledasaunittoproducemRNAintheprocessoftranscription.16TranscriptionunitPromoterisaregulatoryregionofDNAlocatedupstreamofagene,providingacontrolpointforregulatedgenetranscription17ConsensusSequenceforManyE.coliPromotersOptimalPromoterT80A95T45A60A50T96T82G78A65C54A9518TypicalE.coliPromoters19GeneExpressionIsRegulatedbyDNA-BindingProteins
Transcriptionfactor(sequence-specificDNAbindingfactor)isaproteinthatbindstospecificsequencesofDNAandtherebycontrolsthetransfer(ortranscription)ofgeneticinformationfromDNAtoRNA.RNApolymeraseTATAbindingproteinGeneralTranscriptionFactorSpecificTranscriptionFactor20TranscriptionbyRNAPolymeraseinE.coli.21TranscriptionInitiationandElongationbyE.coliRNAPolymerase.22CombineofSpecificProteinandDNAControlstheStartofTranscription23
DNA-bindingdomain(DBD):attachtospecificsequencesofDNA.
Trans-activatingdomain(TAD):containbindingsitesforotherproteins.glutamine-richactivationdomainsproline-richactivationdomainsacidicactivationdomains
Signalsensingdomain(SSD)(ligandbindingdomain)whichsensesexternalsignalsandinresponsetransmitthesesignalstotherestofthetranscriptioncomplexresultinginupordownregulationofgeneexpression.StructureofTranscriptionFactors24HTHiscomposedoftwoαhelicesjoinedbyashortstrandofaminoacids,whichrecognizesandbindstoDNA.OneαhelicesbindstothemajorgrooveofDNA.TheotherαhelixstabilizestheinteractionbetweenproteinandDNA.lacrepressor,CAP,trprepressor,λrepressorhaveHTHmotif.Helix-Turn-Helix(HTH)
25ZincFingerAzincfingerconsistsoftwoantiparallelβstrands,andanαhelix.Thezincioniscrucialforthestability.ZincfingerinteractwiththemajorgrooveofDNAinwhichcasethezincfingersarearrangedaroundtheDNAstrandinsuchawaythattheα-helixofeachfingercontactstheDNA,forminganalmostcontinuousstretchofα-helicesaroundtheDNAmolecule.26cis-actingelement
BAGeneCodingsequenceInitiationPointTrans-actingfactorTranscriptionfactorTFAcis-elementisaregionofDNAorRNAthatregulatestheexpressionofgeneslocatedonthatsamestrand.cis-regulatoryelement
A
transcriptionfactorisaproteinthatbindstospecificsequencesofDNAandtherebycontrolsthetranscriptionofgeneticinformationfromDNAtoRNA.27cGeneaGeneTransregulationCCisregulationmRNA
CProteinCbARNAProteinAA
trans-actingfactorStructuralgene28LactosemetabolisminE.coli29RegAreaCatabolitegeneactivatorprotein(CAP)bindingsitePromoterOperator
StructureGenez:
β-galactosidase
y:
permease
a:transacetylase
zyaOPDNAIIgeneLacOperonLacoperonisrequiredforthetransportandmetabolismoflactoseinE.coli.Lacoperonisregulatedbyglucoseandlactose.Lacoperonisoftenusedastheexampleofprokaryoticgeneregulation.terminator30RepressorgenemRNARepressorProteinIDNAzyaOPpolWithoutlactoseLacOperonIsBlockedByRepressorProtein31mRNARepressorProteinLactoseIDNAzyaOPpolInitiateTranscriptionmRNALactoseAllolactoseβ-galactosidaseLactoseOperonOpensByInducerGalactose32LacOperonHasAWeakPromoter33GlucoseLevelsControlTheLacOperon34++++TranscriptioncAMPishigh,withoutglucose
cAMPislowandhaveglucoseZYAOPDNACAPCAPCAPCAPCAPCAPCAPCAPbindingsite35mRNALowgalactoseGlucoselowcAMPhighGlucosehighcAMPlowRNA-polOOOOIINotranscriptionNotranscriptionLowtranscriptionHighgalactose36RegulationofAraOperon
AraOperoncontainsthreedifferentgenesthatcodeforthreeenzymesneededtoconvertarabinosetoxylulose-5-phosphate.AfourthgenecodesforaraCthatregulateathestructuralgenes.37WhenAraCproteinisdepleted,thearaCgeneistranscribedfromitsownpromoter.Whenarabinoselevelsarelowandglucoselevelshigh,AraCproteinbindstobotharaIandaraO2andbringsthesesitestogethertoformaDNAloop.Theoperonisrepressedinthisstate.AraCproteinalsobindstoara01,repressingfurthersynthesisofAraC.Whenarabinoseispresentandglucoseconcentrationislow,AraCproteinbindsarabinoseandchangesconformationtobecomeanactivator.TheDNAloopisopened,andtheAraCproteinactsinconcertwithCAP-cAMPtofacilitatetranscription.38PrincipalofTrpOperonTrpoperonpromotestheproductionoftryptophanwhenitisn'tpresentintheenvironment.3940TranscriptionalAttenuationintrpOperon41Trp
HighTrpLowTrpmRNAEDCBAOPtrpRRegAreaStructureGeneRNAPolyRNAPoly?PrincipalofTrpOperon42UUUU……UUUU……RegulationArea
StructureGene
trpROPLeaderSeq
AttenuaterAreaUUUU……LeadermRNA1234AttenuaterstructureTerminalcode14aaleaderpeptideAbilitytoformhair-spin:
Seq1/2>Seq2/3>Seq3/4trpcodes
UUUU……MechanismofAttenuation
The3-4structureisatranscriptionterminationsequence,onceitforms,RNApolymerasewilldisassociatefromDNAandtranscriptionwillnotoccur.43UUUU……34UUUU3’34RibosomeLeaderPeptide
LeadermRNAHighTrp125’trpcode
AttenuateristerminaterLeaderDNA
UUUU3’RNAPoly44UUUU……342423UUUU……Ribosome15’trpcode
StructuregeneLeaderDNA
RNAPolyLowTrpTranscriptionSeq3&4can’tformattenuaterLeadermRNA
LeaderPeptide45CooperationofDNAInverstionandRepressionSalmonella46InitiatingTranslationinBacteria47EveryopenreadframehasainitiationcodeAUGandShine-Dalgarno(SD)sequence(AGGAGG)whichhelpsrecruitthe
ribosome
tothemRNAtoinitiate
proteinsynthesis
byaligningtheribosomewiththestartcodon.SDsequence,distancetotranslationinitiationanditslocationaffecttheefficiencyofTranslationInitiation.RegulationofProkaryoticGeneExpressionatTranslationLevel485¢3¢ErythromycinMethylasemRNA1234SDSD(A)NoErythromycinEndingCode1234SDNoTranslation2LeaderPeptide34SDEryrTranslation5¢3¢1234SDSDLeaderPeptideCodingRegion(B)Erythromycin1234SD234SDEryrTranslationRegulationofErythromcinMethylasemRNA49StabilityofmRNADeterminetheAmountofTranslateProduct50
RegulationofmRNAinterferingcomplementaryRNA(micRNA)ontheosmoticpressureinE.ColiHypotonicityHypertonicityOmpRompFgeneONOmpFprotein3'mRNA5'ompCgeneTurnOffONONOFF3'5'micRNA5'3'5'3'3'5'ompCmRNAOmpCAllostericOmpROFFPromoter3'micFgeneOFF3'5'5'3'OmpCProteinTurnOffPromotermicRNAParticipateintheRegulationofProteinSynthesis51SmallRNAintheRegulationofTranslationTn10TransposasemRNA3¢5¢5¢3¢RepressorRNApOUTOriginateTranscript3¢5¢5¢3¢pIN+1+1pOUTpIN5¢3¢3¢5¢3¢5¢5¢3¢3¢5¢5¢3¢+15¢3¢3¢5¢OriginateTranscriptTn10TransposasemRNARepressorRNATranslationInitiationSite52RegulationofGeneExpressioninLambdaPhage
53LysisorLysogen?5455
Exision(Xis):managesexcisionandinsertionofphagegenomeintothehost'sgenome.Intergrate(Int):managesinsertionofphagegenomeintothehost'sgenomeAttached(Att):pointofactionofIntandXisinintegrationandexcisionofthephagegenomeintothehost'sgenomeStructureofLambdaPhagecI:TranscriptioninhibitorcII:Transcriptionactivator
cIII:ProtectscIIfromdegradationbyproteasescro:Controlofrepressor'soperatorN:Antiterminator5657cIIreachesahighconcentrationandturningoncI.cIturnsoffcroandotherearlygeneexpression.PLis
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