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Sample GSM215124 Query DataSets for GSM215124
Status Public on Aug 09, 2007
Title WT+perox_vs_WT
Sample type RNA
 
Channel 1
Source name WT3P
Organism Lactiplantibacillus plantarum
Characteristics Lactobacillus plantarum WCFS1+ 3.5 mM hydrogen peroxide
Extracted molecule total RNA
Extraction protocol Extraction RNA version ,1.3, Collecting cells" Quenching Buffer 66.7 mM HEPES (pH 6.5) 60%Methanol Extraction Mixture -500 µll phenol/Chloroform -30 µl10% SDS -30 µl3 M NaAc (pH 5.2) -500 mg glass-beads (75-150 µm) -400 µlTE buffer Prepare in a screw-cap tube 1.For each sample prepare a tube with Extraction Mixture 2.Harvest cells and quench them immediately in Quenching Buffer. Add 4 volumes of Quenching Buffer ( 40°C) to 1 volume of cell culture 3.Mix and store the sample at -40°C 4.Centrifuge cells at -20 C at 9000 rpm for 10 minutes (Centrifuge RC5B) 5.Discard the supernatant; keep the cell pellet cooled and work quickly to prevent condensation of water. Transfer the pellet with a pre-cooled spatula to a screw-crap tube with Extraction Mixture 6.Mix the cell pellet thoroughly with Extraction Mixture by shaking by hand 7.Freeze the tube immediately in liquid nitrogen 8.Break cells in the Savant FastPrep FP120. Three times 40 seconds at speed 4.0 (cool cells between steps if necessary) 9.Centrifuge for 5 minutes at 4°C in an Eppendorf centrifuge at 10.000 rpm 10.Transfer 500 µl of the supernatant to a new tube. Add 400 µl chloroform (chloroform should be cooled at 4°C) 11.Centrifuge for 2 minutes in an Eppendorf centrifuge at full speed (4°C) 5.Continue with the "High Pure RNA Isolation Kit" from Roche (order # 1 828 665) 6.Incubate for 60 minutes with DnaseI, elute with 50 µl elution buffer 7.Store the RNA in at least 2 aliquots, one of 20 µl (for concentration and quality analysis and labelling) and one back-up of 30 µl at 80°C
Label Cy3
Label protocol cDNA synthesis and , Labeling Protocol 1.4" Annealing Annealing Mix x µl RNA preparation (=10 µg) y µl nuclease-free water 1 µl Random Nonamers 11 µl TOTAL 1. mix Annealing Mix in a 200 µl PCR tube gently by pipetting up and down 2. incubate for 5’ 70°C 3. cool at room temperature for 10’ (annealing) 4. spin down the mixture to the bottom of the tube 5. place on ice Reverse transcription Reverse Transcription Mix 4 µl 5x buffer 2 µl 0.1 M DTT 1 µl dNTP-mix 1 µl AA-dUTP 1 µl TMIII (keep only briefly outside 20°C) 20 µl TOTAL 1. Mix by very gently by pipetting up and down (vigorous pipetting will denature the enzyme!) 2. Incubate for 3 hrs at 42°C (in PCR-machine) 3. Cool on ice for immediate purification or place at 20°C for storage Degradation of mRNA 1. Add 2 µl 2,5 M NaOH 2. Mix (vortex) and spin down 3. Incubate for 15 min. at 37°C 4. Add 10 µl 2 M HEPES free acid 5. Mix (vortex) and spin down 6. Ready for purification or store at 20°C Labelling of cDNA with cyanine dyes Purification of amino allyl-modified cDNA Followed Ge Healthcare kit "Amersham CyDye (Cy3/Cy5)Reactive Dye Protocols for Post Labelling Aminoallyl-cDNA and Aminoallyl-aRNA" code RPN5661 Labelling of amino allyl-modified cDNA with CyDye 1. Add the amino allyl modified cDNA (in 0.1 M sodium bicarbonate) directly into one aliquot of CyDye NHS Ester. Resuspend the ester completely by pipetting several times and transfer the solution to an amber 1.5 ml tube 2. Incubate at room temperature, in the dark for 60 to 90 minutes 3. Add 15 µl 4 M Hydroxylamine to each coupling reaction 4. Mix by stirring and incubate at room temperature, in the dark, for 15 minutes 5. Proceed directly to purification of CyDye-labelled cDNA Followed Ge Healthcare kit "Amersham CyDye (Cy3/Cy5)Reactive Dye Protocols for Post Labelling Aminoallyl-cDNA and Aminoallyl-aRNA" code RPN5661
 
Channel 2
Source name WT2
Organism Lactiplantibacillus plantarum
Characteristics Lactobacillus plantarum WCFS1
Extracted molecule total RNA
Extraction protocol Extraction RNA version ,1.3, Collecting cells" Quenching Buffer 66.7 mM HEPES (pH 6.5) 60%Methanol Extraction Mixture -500 µll phenol/Chloroform -30 µl10% SDS -30 µl3 M NaAc (pH 5.2) -500 mg glass-beads (75-150 µm) -400 µlTE buffer Prepare in a screw-cap tube 1.For each sample prepare a tube with Extraction Mixture 2.Harvest cells and quench them immediately in Quenching Buffer. Add 4 volumes of Quenching Buffer ( 40°C) to 1 volume of cell culture 3.Mix and store the sample at -40°C 4.Centrifuge cells at -20 C at 9000 rpm for 10 minutes (Centrifuge RC5B) 5.Discard the supernatant; keep the cell pellet cooled and work quickly to prevent condensation of water. Transfer the pellet with a pre-cooled spatula to a screw-crap tube with Extraction Mixture 6.Mix the cell pellet thoroughly with Extraction Mixture by shaking by hand 7.Freeze the tube immediately in liquid nitrogen 8.Break cells in the Savant FastPrep FP120. Three times 40 seconds at speed 4.0 (cool cells between steps if necessary) 9.Centrifuge for 5 minutes at 4°C in an Eppendorf centrifuge at 10.000 rpm 10.Transfer 500 µl of the supernatant to a new tube. Add 400 µl chloroform (chloroform should be cooled at 4°C) 11.Centrifuge for 2 minutes in an Eppendorf centrifuge at full speed (4°C) 5.Continue with the "High Pure RNA Isolation Kit" from Roche (order # 1 828 665) 6.Incubate for 60 minutes with DnaseI, elute with 50 µl elution buffer 7.Store the RNA in at least 2 aliquots, one of 20 µl (for concentration and quality analysis and labelling) and one back-up of 30 µl at 80°C
Label Cy5
Label protocol cDNA synthesis and , Labeling Protocol 1.4" Annealing Annealing Mix x µl RNA preparation (=10 µg) y µl nuclease-free water 1 µl Random Nonamers 11 µl TOTAL 1. mix Annealing Mix in a 200 µl PCR tube gently by pipetting up and down 2. incubate for 5’ 70°C 3. cool at room temperature for 10’ (annealing) 4. spin down the mixture to the bottom of the tube 5. place on ice Reverse transcription Reverse Transcription Mix 4 µl 5x buffer 2 µl 0.1 M DTT 1 µl dNTP-mix 1 µl AA-dUTP 1 µl TMIII (keep only briefly outside 20°C) 20 µl TOTAL 1. Mix by very gently by pipetting up and down (vigorous pipetting will denature the enzyme!) 2. Incubate for 3 hrs at 42°C (in PCR-machine) 3. Cool on ice for immediate purification or place at 20°C for storage Degradation of mRNA 1. Add 2 µl 2,5 M NaOH 2. Mix (vortex) and spin down 3. Incubate for 15 min. at 37°C 4. Add 10 µl 2 M HEPES free acid 5. Mix (vortex) and spin down 6. Ready for purification or store at 20°C Labelling of cDNA with cyanine dyes Purification of amino allyl-modified cDNA Followed Ge Healthcare kit "Amersham CyDye (Cy3/Cy5)Reactive Dye Protocols for Post Labelling Aminoallyl-cDNA and Aminoallyl-aRNA" code RPN5661 Labelling of amino allyl-modified cDNA with CyDye 1. Add the amino allyl modified cDNA (in 0.1 M sodium bicarbonate) directly into one aliquot of CyDye NHS Ester. Resuspend the ester completely by pipetting several times and transfer the solution to an amber 1.5 ml tube 2. Incubate at room temperature, in the dark for 60 to 90 minutes 3. Add 15 µl 4 M Hydroxylamine to each coupling reaction 4. Mix by stirring and incubate at room temperature, in the dark, for 15 minutes 5. Proceed directly to purification of CyDye-labelled cDNA Followed Ge Healthcare kit "Amersham CyDye (Cy3/Cy5)Reactive Dye Protocols for Post Labelling Aminoallyl-cDNA and Aminoallyl-aRNA" code RPN5661
 
 
Hybridization protocol Hybridization version 4.1 Agilent hybridization protocol v 4.1
Scan protocol Scanning protocol" Using the Scan Array Express microarray scanner. 1.Turn on the scanner and the computer (in this order) 2.Login: scanner 3.Double click the 'ScanArray Express' icon 4.Switch on lasers 1 and 3 at least 15 minutes prior to scanning arrays 5.Click the 'File' button This is to prevent you from accidentally turning off the laser after the 15 minutes warming-up phase 6.Insert the slide with the array-side up and the label towards the outside. On Agilent slides the array side is the side with the label that has the word "Agilent" on it 7.Press 'Scan | Prescan' 8.Put resolution at 50 m, select both labels used, and set PMT values for both channels at for instance 40% (Agilent arrays) 9.Press 'Start' 10.Press 'Palette,' 'Green' as soon as projection of the image has started (first dye), select the red colour as soon as scanning of the second layer (second dye) has started 11.Adjust PMT values to balance signals obtained for both channels. If necessary do a few low-resolution scans to obtain a optimal balance 12.Click the 'Scan' button again 13.Select frame for high resolution scan, adjust resolution (to 10 m) and scan the array for both dyes 14.Press 'File | Save' to save the files, 'Save all' saves both dye layers "Create a new folder for each array "'Save all' saves the signals from both layers in individual files 15.Switch off the lasers
Description WT+perox_vs_WT
Data processing Data Processing 1.- Background correction 2.-Normalization lowess.
VALUE column reports log2 (test/ref) ratios.
 
Submission date Aug 03, 2007
Last update date Aug 14, 2011
Contact name L. Mariela Serrano
Organization name TI Food and Nutrition
Street address Nieuwe Kanaal 9A
City Wageningen
ZIP/Postal code 6709 PA
Country Netherlands
 
Platform ID GPL4318
Series (1)
GSE8672 Wt-ko_trxB1_Filtered bkg correc transf-norm

Data table header descriptions
ID_REF Spot identifier, references platform spot identifier
SIGNAL_CH1
SIGNAL_CH2
VALUE Log2 of ratio (Channel1 normalized signal/Channel2 normalized signal)
F_CH1_MEAN Channel1 mean of spot pixel intensities
B_CH1_MEAN Channel1 mean of spot background pixel intensities
F_CH2_MEAN Channel2 mean of spot pixel intensities
B_CH2_MEAN Channel2 mean of spot background pixel intensities

Data table
ID_REF SIGNAL_CH1 SIGNAL_CH2 VALUE F_CH1_MEAN B_CH1_MEAN F_CH2_MEAN B_CH2_MEAN
4 31.2056 37.6686 -0.271557359586436 500.6 469.507 504.621 466.815
5 338.081 313.76 0.107707427064427 799.131 471.541 793.007 469.199
6 1241.85 1264.01 -0.0255169922007586 1733.12 475.691 1719.12 470.775
7 258.425 199.322 0.374644574469502 720 470.119 677.074 470.937
8 1503.65 1352.26 0.153096241096513 2004.65 479.588 1807.05 473.78
9 376.964 397.14 -0.0752210180323784 838.855 472.267 878.525 470.144
10 347.486 378.718 -0.124169120800919 811.297 473.93 861.257 471.179
11 90.254 80.8209 0.159262421197854 556.094 467.673 547.642 465.145
12 513.165 264.046 0.958633482496178 971.021 472.615 741.087 469.222
13 941.055 856.611 0.135638790482694 1422.03 476.724 1327.79 475.029
15 92.4365 54.006 0.775342931772895 561.531 470.7 523.115 468.154
16 396.258 268.648 0.560722893185504 857.145 473.177 746.626 469.379
17 193.544 212.019 -0.131531906951217 658.626 471.55 688.349 469
18 788.89 714.108 0.14368195448456 1263.27 475.845 1185.92 470.48
19 1039.23 1169.37 -0.17021652234658 1527.06 477.183 1628.74 471.241
21 561.997 564.274 -0.00583338946088043 1028.42 473.948 1047.09 475.163
22 763.179 709.601 0.105013434908451 1235.86 474.632 1182.53 471.112
23 893.928 835.776 0.0970422690936801 1374 477.228 1307.01 473.881
24 563.06 472.723 0.252293623548199 1028.13 474.907 950.351 469.22
25 1288.76 785.653 0.714019443238764 1775.12 476.09 1251.29 471.849

Total number of rows: 9607

Table truncated, full table size 664 Kbytes.




Supplementary file Size Download File type/resource
GSM215124_Cy3.txt.gz 1.0 Mb (ftp)(http) TXT
GSM215124_Cy5.txt.gz 1.0 Mb (ftp)(http) TXT
Processed data included within Sample table

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