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Sample GSM404413 Query DataSets for GSM404413
Status Public on May 18, 2010
Title MTB strain1254 vs MTB strain 1254 for DETA/NO exp control rep 2
Sample type RNA
 
Channel 1
Source name Strain: MTB strain 1254 Tretment: No Treatment
Organism Mycobacterium tuberculosis
Characteristics strain: MTB strain 1254
treatment: No Treatment
Extracted molecule total RNA
Extraction protocol not provided
Label Cy3
Label protocol TB-Synthesis and Labeling of cDNA SKlab 01; 1. Bring 0.5-5 ?g RNA (Typically 3 ?g) to 11 ?l and add 2 ?l (~2 mg/ml) random hexamers. 2. Heat 10 min at 65C (or 2 min at 98C), snap cool on ice. 10 rxns 20 rxns 3. Add 11?l 5.0 ?l 5X First-Strand buffer (51) (102) 2.5 ?l 100 mM DTT (25.5) (51) 2.0 ?l dNTP (5 mM A,G,C and 0.2 mM T) (20.5) (41) 1.5 ?l Cy3 or Cy5 (Typically use Cy5 for sample that should change) (15.3) (30.6) Then add 1.2-1.8 ?l Stratascript or 0.8-1.2 ?l Superscript II RTase. 4. Incubate 10m at 25C followed by 90m at 42C in PCR machine. Can freeze or leave at 4C o/n.; Protocol Type = Labeling; Performer: Martin,,Voskuil
 
Channel 2
Source name Strain: MTB strain 1254 Tretment: No Treatment
Organism Mycobacterium tuberculosis
Characteristics strain: MTB strain 1254
treatment: No Treatment
Growth protocol Growth Conditions; Parameters that describe the conditions under which the biological sample was grown or propagated; Protocol Type = Growth Conditions; Parameter Starting OD = 0.15; Parameter Elapsed Time = 40 min; Parameter Growth Temperature = 37oC; Parameter Culture Synchrony = Unsynchronized; Parameter Growth Vessel Volume = 250 ml; Parameter Media = Middlebrook 7H9 supplemented with albumin-dextrose complex (ADC) and 0.01% Tween 80; Performer: Martin,,Voskuil
Extracted molecule total RNA
Extraction protocol not provided
TB-RNA Isolation and Purification SKlab 01; 1. Centrifuge 20-30 ml of early- to mid-log culture (O.D. 0.1-0.2) 4 min at 3700 rpm, at RT-37C. Pipette off supernatant and immediately freeze on dry ice and store at ?80C. 2. Add 1 ml Trizol (Gibco-BRL) to each of 4-8 pellets, suspend first pellet by vortexing,while other pellets are still frozen. Add suspension to 0.4 ml glass beads in a 2 ml screw cap tube. 3. Shake 30s at maximum speed in bead beater. Suspend next pellet and add to glass beads. Apply next sample to bead beater. Repeat bead beating two more times with each sample.Continue to periodically invert samples for at least 5 min in Trizol. 4. Centrifuge samples 45s at max speed, remove Trizol solution to a 2 ml screw cap tube containing half of the Heavy Phase Lock Gel I, supplied by 5 Prime 3 Prime, Inc. in 1.5 ml tubes and transferred with sterile stick to 2 ml tubes, and 300 ?l Chloroform:isoamyl alcohol (24:1). Invert rapidly for 15s, and continue inverting periodically for 2 min.a 5. Centrifuge 5-10m, remove aqueous layer (540 ?l) and add to a 1.5 ml tube containing 270 ?l isopropanol then add 270 ?l high salt solution (0.8M Na Citrate, 1.2M NaCl). Invert several times and spray with Staphene and remove from the P3. Typically ppted at 4C O/N. 6. Centrifuge 10m at 4C and remove isopropanol. Add 1 ml 75% EtOHb, invert several times and centrifuge 5m. 7. Remove EtOH by aspiration. Then, dry under vacuum for 2 min [Do not over dry]. 8. Suspend RNA in 90 ml RNase free water (don?t suspend in DNaseI buffer), may need to heat 10m at 55-60C to dissolve RNA. (Optional: obtain RNA concentration) 9. Add 10 ?l 10X DNaseI buffer to RNA (use no more than 80 ?g RNA) and add 4 ?l DNaseI (Ambion). Incubate 30m at 37C. Qiagen RNeasy purification. 1. Add 350 ?l RLT buffer (add 10 ?l BME to 1 ml RLT before using) and vortex. Add 260 ?l 95% EtOH (or 250 ?l 100% EtOH) to each sample and vortex. 2. Add to RNeasy spin column, centrifuge 15s, transfer column to a new 2 ml collection tube. Add 500 ?l RPE, centrifuge 15s, discard flow-through, add 500 ?l additional RPE and centrifuge 2m. If column still wet on sides, remove wash solution from tube and spin 1m to dry. 3. Transfer to a 1.5 ml collection tube, elute with 40 ?l RNase free water, centrifuge 1m. 4. Determine RNA concentration with A260/A280 readings. Dilute 1 ?l in 199 ?l TE. [200(dilution factor)x 40 ?g/A260x A260 = ?g/ml]. 5. Run 1 ?l RNA on 2% Agarose TAE gel. Run gel 45m at 100 volts. aIf Phase Lock Gel is not used, decrease Chloroform:isoamyl alcohol to 200?l. The yield will be less. Be careful not to remove any of the interface layer. bUsing 100% EtOH should be avoided in all steps of preparation of RNA intended for array analysis. Instead use 95% EtOH in preparation of solutions. Benzene contamination may fluoresce. cInstead of using the RNeasy purification, the DNaseI can be inactivated at 65-70C for 15m and then EtOH precipitated. The RNeasy purification may not be necessary in all applications. We find the purification gives more consistent results and is less time consuming, compared to precipitation. In addition, other purifications can be used. Note: The RNeasy column will remove much of the small tRNA and degraded RNA.; Protocol Type = Extract preparation; Performer: Martin,,Voskuil
Label Cy5
Label protocol TB-Slide Preparation SKlab 01; 1. Prepare NaOH-ethanol solution ? dissolve NaOH in ddH2O 70 g / 280 mL 175 g / 700mL 200 g / 800 mL ? stir until completely dissolved ? add 95% ethanol 420 mL 1050 mL 1200mL ? stir until completely mixed ? if solution remains cloudy, add water until clear 2. Place slides in metal slide racks (30 slides/rack). Do not use defective slides. 3. Soak slides in the NaOH:EtOH:ddH2O solution for 2 hours with gentle rotation. 4. Rinse extensively with dH2O: ? rinse each unit (slide/rack/container) vigorously with dH2O for 5 min ? place slide racks in a large clean glass container, and tilt the container slightly for constant water flow. ? wash under running water for 30 minutes. ? do not allow the slides to dry at any time. It is critical to remove all traces of NaOH:EtOH. 5. Prepare poly-L-lysine solution in plastic container. ? 100 mL tissue culture PBS 800 mL Milli-Q water 100 mL poly-L-Lysine ? We bring up the volume to about 1050 mL with Milli-Q water in order to submerge 3 racks of slides. ? Mix well and split into 3 plastic containers. 6. Soak the slides in lysine solution for 45 min with shaking. Be sure to use a plastic container, because poly-L-lysine adheres to glass. Poly-L-Lysine solution may be reused. Keep the other slide filled racks in dH2O, while the first 3 are being coated. 7. After the lysine coating, rinse the slides by gently plunging up and down in 2 different changes of water. Spin dry 5' at 600 rpm. Place paper towels below rack to absorb liquid. 8. Store slides in a dessicator for 3 weeks prior to use. Slides that are older than 3 months may result in faint printing and higher background. Be sure to clean racks and containers thoroughly after each use. Built-up poly-L-Lysine on the sides of the containers may cause problems.; Protocol Type = Treatment; Performer: Martin,,Voskuil
Labeling - Channel 2; Methods for labeling extracted molecules that are used in hybridizations and scanned in Channel 2 (red); Protocol Type = Labeling; Parameter Amount of extract labeled = 1.5ug of total RNA; Parameter Type of label = Cy5; Performer: Martin,,Voskuil
 
 
Hybridization protocol not provided
Scan protocol GenePix
GenePix
Description Image: http://smd.stanford.edu/MicroArray/gifs/2007-06/74764.gif
Data processing VALUE is Log (base 2) of the ratio of the mean of Channel 2 (usually 635 nm) to Channel 1 (usually 532 nm)
 
Submission date May 18, 2009
Last update date May 18, 2009
Contact name Martin I Voskuil
E-mail(s) martin.voskuil@ucdenver.edu
Phone 303-724-4219
Organization name University of Colorado Denver
Department Microbiology
Lab Voskuil Lab
Street address 12800 E. 19th Ave
City Aurora
State/province CO
ZIP/Postal code 80045
Country USA
 
Platform ID GPL8561
Series (1)
GSE16146 The response of Mycobacterium tuberculosis to reactive oxygen and nitrogen species

Data table header descriptions
ID_REF ID_REF
CH1I_MEAN Uncorrected Cy3 mean pixel intensity.; Type: integer; Scale: linear_scale; Channel: Cy3 Channel
CH2I_MEAN Uncorrected Cy3 mean pixel intensity.; Type: integer; Scale: linear_scale; Channel: Cy5 channel
CH1B_MEDIAN Median intensities of background pixels of Cy3.; Type: integer; Scale: linear_scale; Channel: Cy3 Channel
CH2B_MEDIAN Median intensities of background pixels of Cy3.; Type: integer; Scale: linear_scale; Channel: Cy5 channel
CH1D_MEAN The mean feature pixel intensity with the median background subtracted (channel 1).; Type: integer; Scale: linear_scale; Channel: Cy3 Channel
CH2D_MEAN The mean feature pixel intensity with the median background subtracted (channel 2).; Type: integer; Scale: linear_scale; Channel: Cy5 channel
CH1B_MEAN Mean intensities of background pixels of Cy3.; Type: integer; Scale: linear_scale; Background
CH2B_MEAN Mean intensities of background pixels of Cy5.; Type: integer; Scale: linear_scale; Background
PERGTBCH1I_1SD The percentage of feature pixels with intensities more than one standard deviation above the background pixel intensity, at wavelength 532 nm.; Type: integer; Scale: linear_scale
PERGTBCH2I_1SD The percentage of feature pixels with intensities more than one standard deviation above the background pixel intensity, at wavelength 635 nm.; Type: integer; Scale: linear_scale
PIX_RAT2_MEDIAN Contains median of Ch2PI-CH2B/Ch1PI-CH1B where Ch1PI & Ch2PI represent single pixel intensities.; Type: float; Scale: linear_scale
TOT_SPIX Count of the number of pixels in the spot.; Type: integer; Scale: linear_scale
TOT_BPIX Number of background pixels.; Type: integer; Scale: linear_scale
REGR The regression ratio of every pixel in a 2-feature-diameter circle around the center of the feature.; Type: float; Scale: linear_scale
CORR The correlation between channel1 (Cy3) & Channel 2 (Cy5) pixels within the spot, and is a useful quality control parameter. Generally, high values imply better fit & good spot quality.; Type: float; Scale: linear_scale
TOP Box top: int(((centerX - radius) - Xoffset) / pixelSize).; Type: integer; Scale: linear_scale
BOT Box bottom: int(((centerX + radius) - Xoffset) / pixelSize).; Type: integer; Scale: linear_scale
LEFT Box left: int(((centerY - radius) - yoffset) / pixelSize).; Type: integer; Scale: linear_scale
RIGHT Box right: int(((centerY + radius) - yoffset) / pixelSize); Type: integer; Scale: linear_scale
FLAG User defined spot flag (default 0).; Type: integer; Scale: linear_scale
CH2IN_MEAN Normalized value of mean Channel 2 (usually 635 nm) intensity (CH2I_MEAN/Normalization factor).; Type: integer; Scale: linear_scale; Channel: Cy5 channel
CH2BN_MEDIAN Normalized value of median Channel 2 (usually 635 nm) background (CH2B_MEDIAN/Normalization factor).; Type: integer; Scale: linear_scale; Channel: Cy5 channel; Background
CH2DN_MEAN Normalized value of mean Channel 2 (usually 635 nm) intensity with normalized background subtracted (CH2IN_MEAN - CH2BN_MEDIAN).; Type: integer; Scale: linear_scale; Channel: Cy5 channel
RAT2N_MEAN Type: float; Scale: linear_scale
RAT1N_MEAN Ratio of the means of Channel 1 (usually 532 nm) intensity to normalized Channel 2 (usually 635 nm) intensity with median background subtracted (CH1D_MEAN/CH2DN_MEAN). Channel 1/Channel 2 ratio normalized or Green/Red ratio normalized.; Type: float; Scale: linear_scale
VALUE Log (base 2) of the ratio of the mean of Channel 2 (usually 635 nm) to Channel 1 (usually 532 nm) [log (base 2) (RAT2N_MEAN)].; Type: float; Scale: log_base_2

Data table
ID_REF CH1I_MEAN CH2I_MEAN CH1B_MEDIAN CH2B_MEDIAN CH1D_MEAN CH2D_MEAN CH1B_MEAN CH2B_MEAN PERGTBCH1I_1SD PERGTBCH2I_1SD PIX_RAT2_MEDIAN TOT_SPIX TOT_BPIX REGR CORR TOP BOT LEFT RIGHT FLAG CH2IN_MEAN CH2BN_MEDIAN CH2DN_MEAN RAT2N_MEAN RAT1N_MEAN VALUE
1 10116 13782 949 1003 9167 12779 null null 92 95 1.388 225 1322 1.263 .904 287 304 131 148 0 14515 1056 13459 1.468 .681 .554
2 9673 12534 1071 1128 8602 11406 null null 91 89 1.289 225 1217 1.216 .897 287 304 154 171 0 13201 1188 12013 1.397 .716 .482
3 7345 8658 1094 1126 6251 7532 null null 85 84 1.169 225 1236 1.1 .898 287 304 176 193 0 9119 1186 7933 1.269 .788 .344
4 7268 8486 1071 1143 6197 7343 null null 95 97 1.229 177 1286 1.051 .87 288 303 200 215 0 8937 1204 7734 1.248 .801 .32
5 4572 6014 1029 1165 3543 4849 null null 89 92 1.399 177 1305 1.123 .852 288 303 222 237 0 6334 1227 5107 1.441 .694 .527
6 4188 5168 972 1090 3216 4078 null null 90 89 1.236 177 1299 1.117 .864 288 303 245 260 0 5443 1148 4295 1.335 .749 .417
7 1060 1137 1006 1106 54 31 null null 7 3 1.156 177 1285 .304 .269 288 303 267 282 0 1197 1165 33 .605 1.654 -.726
8 1015 1030 1061 1165 -46 -135 null null 3 1 .866 177 1279 .498 .411 288 303 290 305 0 1085 1227 -142 null null null
9 1078 1224 1055 1165 23 59 null null 5 6 2.056 177 1243 .327 .287 288 303 312 327 0 1289 1227 62 2.702 .37 1.434
10 11841 13135 1085 1229 10756 11906 null null 79 81 1.157 225 1212 1.001 .915 287 304 333 350 0 13834 1294 12539 1.166 .858 .221
11 9336 9647 1157 1290 8179 8357 null null 80 78 1.049 225 1206 .919 .907 287 304 356 373 0 10160 1359 8802 1.076 .929 .106
12 2802 3354 1130 1263 1672 2091 null null 82 89 1.15 177 1258 .882 .774 288 303 379 394 0 3532 1330 2202 1.317 .759 .397
13 1175 1348 1186 1286 -11 62 null null 2 6 1.3 177 1279 .591 .459 288 303 402 417 0 1420 1354 65 null null null
14 1383 1570 1356 1478 27 92 null null 3 9 1.332 177 1279 .844 .614 288 303 424 439 0 1654 1557 97 3.589 .279 1.843
15 1932 2280 1478 1655 454 625 null null 33 38 1.452 177 1279 .875 .688 288 303 447 462 0 2401 1743 658 1.45 .69 .536
16 2129 2629 1725 1941 404 688 null null 19 34 1.417 177 1279 .842 .646 288 303 469 484 0 2769 2044 725 1.794 .558 .843
17 2163 2594 1793 2066 370 528 null null 12 20 1.432 177 1279 .677 .538 288 303 492 507 0 2732 2176 556 1.503 .665 .588
18 2038 2431 1755 1981 283 450 null null 9 15 1.535 177 1279 .43 .34 288 303 514 529 0 2560 2086 474 1.675 .597 .744
19 1994 2522 1694 1913 300 609 null null 12 28 1.433 177 1369 .507 .356 288 303 537 552 0 2656 2015 641 2.138 .468 1.096
20 876 925 940 989 -64 -64 null null 4 3 .816 177 1279 .149 .146 311 326 132 147 0 974 1042 -67 null null null

Total number of rows: 5760

Table truncated, full table size 702 Kbytes.




Supplementary data files not provided
Processed data included within Sample table

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