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Oxford Genetics/pSF-TEF1-COOH-FXa-BetaGal-6His (OG2005) C-terminal 6 His and BetaGal dual tag yeast plasmid/OG2005/1 Ea188bio精品生物—专注于实验室精品爆款的电商平台 - 蚂蚁淘旗下精选188款生物医学科研用品
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Oxford Genetics/pSF-TEF1-COOH-FXa-BetaGal-6His (OG2005) C-terminal 6 His and BetaGal dual tag yeast plasmid/OG2005/1 Ea

PlasmidInfo:

PlasmidInformation

ProductName:pSF-TEF1-COOH-FXa-BetaGal-6His

ProductCode:OG2005

Size(bp):9888bp

BacterialAntibioticSelection:KanR

OriginandCompatibility:pUChighcopyderivedfrompBR322

BacterialCopyNumber:500-700percell

Promoter:YeastElongationFactorAlpha-1(TEF-1)promoter

PlasmidPurpose:

Thisplasmidisdesignedtoexpresstaggedproteinsinyeastcells(Saccharomycescerevisiae).TheplasmidcontainsanauxotrophicUracilselectionexpressioncassette(URA3)thatallowsforthepositiveselectionofyeastthataredeficientintheURA3gene(YEL021W).ThisistypicallyachievedbygrowingtheyeastinminimalmediathatisreconstitutedwiththeessentialaminoacidsandnucleotidesbutexcludingUracil.

AbouttheCleavageTag:

Thisplasmidalsoencodesaproteasecleavagesitethatisdesignedtobepositionedbetweenyourgeneofinterestandthetagtoallowtheremovalofthetagfollowingproteinpurificationorisolation.ThisplasmidcontainsaFXacleavagetag.Theproteinsequenceofthecleavagetagis:IEGR?.ItcleavesaftertheArgresiduebutcanalsocleavelessfrequentlyatsecondarybasicsites.ItsmostcommonsecondarycleavesiteisbetweentheGlyandArgresiduesalthoughthefrequencyoftheseeventsisproteinspecific.

Formoreinformationonwhichcleavagetagtouseseeourcleavagetagguide.

PromoterExpressionLevel:

ThisplasmidcontainstheYeastElongationFactorAlphapromoter(TEF1).Thisisthestrongestoftheyeastpromotersthatwesell.Itisaconstitutivepromoterandrequiresnoinduction.IfyouareinterestedinweakerpromoterslevelsthanwealsostockplasmidsthatcontainthefollowingpromotersinorderofdecreasingstrengthTPI(strong)ADHI(medium)STE5(weak).WealsostockGalactoseinducIBLepromoterplasmidsifinducibleexpressionisrequired.Pleasecontactusforfurtherinformation.

AboutthePeptideTag:

Thisplasmidcontainsac-terminalBetaGalactosidasereportertagthatcanbefusedtoageneofinteresttoallowproteindetection.

ThisplasmidalsocontainsasecondaryHexa-Histidine(6His)tagproteintag.Thesequenceofthistagis:HHHHHH

Weprovidearangeofdualpeptidetagplasmids.ThisisbecausesomepeptidetagsprovidespecificBIOLOGicalproperties(e.gsmallmoleculeaffinitynewepitopessolubilityorproteinsecretion)thatarenotprovidedbyothers.

SequenceandMap:

OtherInfo:

TranscriptionTermination:

Thisplasmidcontainsthreealternativetranscriptionterminatorsformammalianbacterialandbacteriophage(T7)expression.Thismeansthatonlythepromoterneedstobechangedtoaltertheexpressionsystemyouareusing.Wesellmultiplepromotersthatcanbeusedineachofthesesystems.Thepresenceofeachterminatordoesnotreduceexpressioninthealternativesystems.

Cloning:

MakingProteinFusions:

ThisplasmidhasbeendesignedtoallowthreetypesofcloningintothemainMCStojoinacodingsequencewiththetag.

SnapFusionCloning:

IfyouwouldliketofuseyourcodingsequencetothetagwithminimaladditionalbasesyoucanuseourSnapFusiontechnology.ThisprocessinvolvesamplifyingyourgenebyPCRtoaddspecificrestrictionsitesontotheends.WhenthesesitesarecuttheyproduceanoverhangthatiscompatiblewiththisplasmidcutwithBseRIorBsgI.

Toinsertyourgene:


1:Amplifyyourgenewithprimersdesignedusingthisspreadsheet
2:CuttheplasmidwitheitherBseRIorBsgI.*
3:Cutyourgenewiththeenzymeyouaddedusingthespreadsheet(anyofAcuIBpmIBpuEIBseRIBsgIEciI).
4:ClonethegeneintotheplasmidusingDNAligase.

UsingthismethodwithanN-terminaltagplasmidwillresultinthetagcodingsequenceimmediatelyfollowedbyyourgenesATGstartcodonatthejoin.Thisresultsinaseamlessfusionofthetwosequenceswithnoextrabasesbeingadded.UsingthismethodonC-terminaltagplasmidswillconvertyourgenesstopcodonintoaTAC(TyrY)codonfollowedbytheplasmidtagcodingsequence.Thisresultsinnoextrabasesbetweenyourgeneandthetag.Seethediagrambelowformoreinformation.

*PleasenotethatinsectexpressionplasmidscannotbecutwithBsgIonlyBseRIbecauseofunavoidableconflictingsitesinthebackbone.AlsoYeastplasmidscanonlybecutwithBsgInotBseRIbecauseofconflictingsitesinthebackbone.

Usingthistechniquewillcreateagenefragmentthatcanbeligatedintoanyorour>1500peptideandreportertagplasmids.Ifyouuseoneoftheothertechniquesbelow(GibsonInFusionSeamlessorLIC)youwillneednewprimersforeveryvectoryoucloneintobecausethearmsofhomologywillchangeaccordingtothetagplasmidyouarecloninginto.

Ifyoufindthatyourgenesequencehassitesinitthatmakeusingthiscloningstrategydifficultyoucanstilluseoneofthealternativemethodsbelow(e.g.standardcloningorGibsoncloning).

OpenthePrimerDesignTooltohelpyoudesignprimersforcloningyourgeneinourSnapFusiontechnique.

StandardEnzymes:

Ifyouarenotconcernedaboutleavingafewextrabasesbetweenthetagcodingsequenceandyourgeneyoucancloneyourgeneintothevectorusingstandardcloningrestrictionenzymes.Thisstrategywillrequireyoutochoosewhichenzymesyouwanttousetocloneyourgene.

OpenthePrimerDesignToolwhichprovidesprimerswithdifferentenzymechoicespositioningyourgeneasclosetothetagaspossibleineachcase.Pleasenotethatstandardenzymeswillalwaysleaveadditionalnucleotidesbetweenyourgeneandthetagbutusingthespreadsheetwillensurethetagandgeneareinframe.

Gibsoncloning/InfusionHD/GeneArtSeamless/LigaseIndependentCloning(LIC)Methods:

ThesecloningtechniquesusereagentssoldbyothercompaniesandallowyoutofusesequencestogetherusingenzymesthatchewbacktheDNAtoleaveoverlappingends/overhangs.ThesubsequentmethodofjoiningtheDNAdependsonthekitused.Touseoneofthesetechniquesyoucaneitherdesignyourownprimersoryoucanusethespreadsheetbelowtohelpwiththedesign.

OpenthePrimerDesignTooltohelpyoudesignprimersforcloningyourgeneusingGibsonassemblyInfusionHDGeneArtSeamlesscloningorLigaseIndependentCloning(LIC)techniques.

IPStatus:

IntellectualPropertyStatus

ThisproductispartofourSnapFastplasmidrange,formoreinformationontheIntellectualpropertystatusofthisplasmidpleaseclickhere

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