酵母单杂交系统及其实验操作课件.pptx
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- 酵母 杂交 系统 及其 实验 操作 课件
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1、I.IntroductionII.Yeast Molecular TechniquesIII.Constructing a Reporter Vector for One-Hybrid AnalysisIV.Generating a cDNA LibraryV.Constructing&Screening a One-Hybrid LibraryVI.Analyzing Positive InteractionsYeast one hybrid systemI.Introduction oOne-Hybrid System provides an in vivo genetic assay u
2、sed for isolating novel genes encoding proteins that bind to a target,cis-acting regulatory elementoProtein-DNA interactionI.INTRODUCTIONThe differences between yeast one&two hybridII.Yeast Molecular TechniquesYeast strainsA.GenotypesB.PhenotypesII.Yeast Molecular TechniquesYeast strain:Y187(MAT)Can
3、t synthesis His、Leu、Trp by itself。YeastIncubateYeast selection medium-His or-Leu or-TrpYeast cant growth on selection mediumII.Yeast Molecular TechniquesYeast strainsC.Mating type compatibilitiesoY187(MAT)can mate with AH109,HF7c,CG-1945,Y190,or SFY526(all MATa).D.Reporter genesGAL1 UASGAL TATALac Z
4、II.Yeast Molecular TechniquesYeast strainsE.Leaky HIS3 expressiono3-AT:3-amino-1,2,4-triazole is a competitive inhibitor of the yeast HIS3 protein(His3p).3-AT is used to inhibit low levels of His3p expressed in a leaky manner and thus to suppress background growth on SD medium lacking histidine.oSom
5、e yeast strains have relatively high basal levels of His3p.II.Yeast Molecular TechniquesMain difference between yeast and E.coli cultureYeastE.Coli46 days16 hoursYeastE.Coli3037YeastE.ColiYPDLBoIncubation timeoIncubation temperatureoCulture mediumPick individual colonies.To 2%glucosesterile(40%stock
6、 solution)coli cultureIntroductionSD/-Leu SD/-Trp SD/-Leu/-Trp SD/-Leu/-Trp/-His+120mM 3-AT10 l 10X BD Advantage 2 PCR Buffer0mM 20mM 40mM 60mMHeat shock for 15 min in a 42C water bath.Constructing&Screening One-Hybrid LibrariesBackground HIS3 Expression of ICEr2Yeast strainsGenerating a cDNA Librar
7、yGood Laboratory Practices1 mg of carrier DNA.How BD SMART cDNA Synthesis and Amplification WorksSD/-Leu SD/-Trp SD/-Leu/-Trp SD/-Leu/-Trp/-His+120mM 3-ATReporter genesFigure 3.SD/-Leu SD/-Trp SD/-Leu/-Trp SD/-Leu/-Trp/-His+120mM 3-ATConstructing a Reporter Vector for One-Hybrid AnalysisTo optimize
8、the 3-AT concentration in your selection medium:Use the lowest concentration of 3-AT that,after one week,allows only small(1 mm)colonies to grow.Too much 3-AT in the medium can kill freshly transformed cells.YEAST MEDIAA.YPD(YPDA)mediumo20 g/L Difco peptoneo10 g/L Yeast extracto20 g/L Agar(for plate
9、s only)o(To 0.003%0.2%adenine hemisulfate Solution)opH to 6.5 oTo 2%glucosesterile(40%stock solution)II.Yeast Molecular TechniquesYEAST MEDIA B.SD medium(1L)o6.7 g Yeast nitrogen base without amino acidso20 g Agar(for plates only)o850 ml H2OopH to 5.8 o100 ml of the appropriate sterile 10X Dropout S
10、olutiono3-AT(1 M 3-AT stock solution)oTo 2%glucosesterile(40%stock solution)II.Yeast Molecular TechniquesC.10X Dropout(DO)Solution Nutrient 10X Concentration L-Adenine hemisulfate salt 200 mg/L L-Arginine HCl 200 mg/L L-Histidine HCl monohydrate 200 mg/L L-Isoleucine 300 mg/L L-Leucine 1000 mg/L L-L
11、ysine HCl 300 mg/L L-Methionine 200 mg/L L-Phenylalanine 500 mg/L L-Threonine 2000 mg/L L-Tryptophan 200 mg/L L-Tyrosine 300 mg/L L-Uracil 200 mg/L L-Valine 1500 mg/LAutoclaveII.Yeast Molecular TechniquesYEAST MEDIASuppliedo10 g Leu DO Supplement(to measure the transformation efficiency of the libra
12、ry plasmid)o10 g Trp DO Supplement(to measure the transformation efficiency of the reporter plasmid)o10 g Leu/Trp DO Supplement(to measure the number of clones screened)o10 g His/Leu/Trp DO Supplement(select for one-hybrid interactions)UnsuppliedoHis/Trp DO Supplement(to measure a pHIS2 reporter pla
13、smid for background growth)II.Yeast Molecular TechniquesPreparation of Competent Yeast CellsLiAc Method1.Inoculate one colony(4 weeks old,23 mm in diameter)into 3 ml of YPDA medium in a sterile,15-ml centrifuge tube.2.Incubate at 30C with shaking for 8 hr.3.Transfer 5 l of the culture to a 250-ml fl
14、ask containing 50 ml of YPDA.4.Incubate at 30C with shaking at 230250 rpm for 1620 hr.The OD600 should reach 0.150.3.5.Centrifuge the cells at 700 x g for 5 min at room temperature.6.Discard the supernatant and resuspend the cell pellet in 100 ml of YPDA.7.Incubate at 30C for 35 hr(OD600=0.40.5).8.C
15、entrifuge the cells at 700 x g for 5 min at room temperature.9.Discard the supernatant and resuspend the cell pellet in 60 ml of sterile,deionized H2O.10.Centrifuge the cells at 700 x g for 5 min at room temperature.11.Discard the supernatant and resuspend the cells in 3 ml of 1.1X TE/LiAc Solution.
16、12.Split the resuspension between two 1.5-ml microcentrifuge tubes(1.5 ml per tube).13.Centrifuge each tube at high speed for 15 sec.14.Discard the supernatant and resuspend each pellet in 600 l of 1.1X TE/LiAc Solution.oNote:1.Competent cells should be used for transformation immediately following
17、preparation;however,if necessary they can be stored at room temperature for a few hours without significantly affecting the competency.o2.on iceSmall-scale LiAc Yeast Transformation Procedure12.Add 0.1 mg of plasmid DNA and 0.1 mg of herring testes carrier DNA to a fresh 1.5-ml tube and mix.13.Add 0
18、.1 ml of yeast competent cells to each tube and mix well by vortexing.14.Add 0.6 ml of sterile PEG/LiAc solution to each tube and vortex at high speed for 10 sec to mix.15.Incubate at 30C for 30 min with shaking at 200 rpm.16.Add 70 ml of DMSO.Mix well by gentle inversion.Do not vortex.17.Heat shock
19、 for 15 min in a 42C water bath.18.Chill cells on ice for 12 min.19.Centrifuge cells for 5 sec at 14,000 rpm at room temperature.Remove the supernatant.20.Resuspend cells in 0.5 ml of sterile 1X TE buffer.21.Plate 100 ml on each SD agar plate that will select for the desired transformants.To ensure
20、thatyou will obtain a plate with well-separated colonies,also spread 100 ml of a 1:1000,1:100,and1:10 dilution on 100-mm SD agar plates.These will also provide controls for(co)transformation efficiency.22.Incubate plates,up-side-down,at 30C until colonies appear.Notes:oFor simultaneous cotransformat
21、ion,use 0.1 mg of each plasmid,in addition to the 0.1 mg of carrier DNA.ocarrier DNA.oV1/5oGlassoAiro30II.Yeast Molecular TechniquesTroubleshooting of Yeast TransformationoTransformation efficiency:104 cfu/mg(single type of plasmid);103cfu/mg(two types of plasmids)1.Suboptimal plasmid preparationoUs
22、ing more(up to 0.5 mg)of the plasmid DNAoCheck the purity of the DNA and,if necessary,repurify it by ethanol2.Suboptimal carrier DNAoIf transformation efficiencies are declining in successive experiments,the carrier DNA may be renaturing.Reboil the carrier DNA for 20 min,and then chill it quickly in
23、 an ice-water bath.Troubleshooting of Yeast Transformation3.Suboptimal yeast competent cellsoInoculate with a fresh colonyoCheck the liquid medium to make sure it was made correctlyoThe addition of adenine hemisulfate to YPD(in Steps E.3 and E.5)will enhance the growth of yeast strains that contain
24、the ade2-101 mutation.oCheck the concentration of the resuspended competent cells.If the cell concentration is 1 x 109/ml,spin the cells down again(at 1,000 x g for 5 min)and resuspend them in a smaller volume of 1X TE/LiAc bufferoPrepare all reagents using sterile,deionized,distilled wateroSD plate
25、:2-4d at RT or 3h at 30III.Constructing a Reporter Vector for One-Hybrid AnalysisOne-Hybrid System provides an in vivo genetic assay used for isolating novel genes encoding proteins that bind to a target,cis-acting regulatory elementLeaky HIS3 expression100 l Total volumeSD/-Leu SD/-Trp SD/-Leu/-Trp
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