Distributions and lists of all significant differential expression values of the type: Boundary for comparisons: HS578T_IR_vs_DMSO, BT474_IR_vs_DMSO (p-value < 0.05 after multiple testing correction and Fold-Change > 1.5)


Distribution of log2 differential expression values for comparison: HS578T_IR_vs_DMSO and data type: Boundary

Distribution of all differential expression values that meet the p-value and fold-change cutoff for the feature type: Boundary. The total number of significant DE features, as well as the max and min log2 DE observed are noted in the legend. *If you can not see the figure below, click here




Scatter plot of log2 expression values for comparison: HS578T_IR_vs_DMSO and data type: Boundary

Correlation between expression values for all features that are expressed above background in one or both libraries for the feature type: Boundary. Features that are differentially expressed (meet the p-value and fold-change cutoff) are indicated in magenta. A linear model is fit to the data and the correlation by Spearman method is reported. A loess model is also fit to illustrate the trend of the data.

Scatter plot of expression values for comparison: HS578T_IR_vs_DMSO and data type: Boundary




SmoothScatter plot of log2 expression values for comparison: HS578T_IR_vs_DMSO and data type: Boundary

Correlation between expression values for all features that are expressed above background in one or both libraries for the feature type: Boundary. A linear model is fit to the data and the correlation by Spearman method is reported. A loess model is also fit to illustrate the trend of the data.

SmoothScatter plot of expression values for comparison: HS578T_IR_vs_DMSO and data type: Boundary




Distribution of log2 differential expression values for comparison: BT474_IR_vs_DMSO and data type: Boundary

Distribution of all differential expression values that meet the p-value and fold-change cutoff for the feature type: Boundary. The total number of significant DE features, as well as the max and min log2 DE observed are noted in the legend. *If you can not see the figure below, click here




Scatter plot of log2 expression values for comparison: BT474_IR_vs_DMSO and data type: Boundary

Correlation between expression values for all features that are expressed above background in one or both libraries for the feature type: Boundary. Features that are differentially expressed (meet the p-value and fold-change cutoff) are indicated in magenta. A linear model is fit to the data and the correlation by Spearman method is reported. A loess model is also fit to illustrate the trend of the data.

Scatter plot of expression values for comparison: BT474_IR_vs_DMSO and data type: Boundary




SmoothScatter plot of log2 expression values for comparison: BT474_IR_vs_DMSO and data type: Boundary

Correlation between expression values for all features that are expressed above background in one or both libraries for the feature type: Boundary. A linear model is fit to the data and the correlation by Spearman method is reported. A loess model is also fit to illustrate the trend of the data.

SmoothScatter plot of expression values for comparison: BT474_IR_vs_DMSO and data type: Boundary




Significant differentially expressed Boundary features

The following table provides a ranked list of all significant differentially expressed Boundary features. Each column corresponds to a pair-wise comparison of two libraries. Each table cell contains the Gene Name (which links to the ALEXA-Seq gene record), the Feature Name, the name of each library being compared (which links to the feature's coordinates in the UCSC Genome Browser and displays expression data), the fold-change (FC) of the differential expression event, and the multiple testing corrected p-value for the feature. A bold row indicates that the feature is not currently supported by EST or mRNA sequence alignments. For exon junction features the number of exons skipped by the junction is indicated as 'Sn' where n is the number of exons skipped (e.g. S0 means no exons skipped, S1 means one exon skipped, etc.).


RANKHS578T_IR_vs_DMSO (Gene | Feature | Links | Values)BT474_IR_vs_DMSO (Gene | Feature | Links | Values)
1 AC026410.5 | E1_Da | (HS578T_IR) | (HS578T_DMSO) | FC = -9.58 | q.value = 0.00781 AC135255.2 | E3_Aa | (BT474_IR) | (BT474_DMSO) | FC = -7.39 | q.value = 5.98e-11
2 AKR1C2 | E6_Ab | (HS578T_IR) | (HS578T_DMSO) | FC = -4.55 | q.value = 0.0465 AL606534.15 | E2_Da | (BT474_IR) | (BT474_DMSO) | FC = -5.78 | q.value = 0.000145
3 UBE2E3 | E2_Ac | (HS578T_IR) | (HS578T_DMSO) | FC = -4.24 | q.value = 7.83e-05 AC090692.9 | E2_Da | (BT474_IR) | (BT474_DMSO) | FC = 5.26 | q.value = 1.15e-09
4 DULLARD | E1_Da | (HS578T_IR) | (HS578T_DMSO) | FC = -4.15 | q.value = 0.000128 CRIP1 | E2_Ac | (BT474_IR) | (BT474_DMSO) | FC = 4.78 | q.value = 0.0384
5 AC004833.1 | E1_Da | (HS578T_IR) | (HS578T_DMSO) | FC = 3.82 | q.value = 4.53e-64 AC073573.27 | E2_Da | (BT474_IR) | (BT474_DMSO) | FC = 4.32 | q.value = 0.000458
6 PRPF38B | E1_Ac | (HS578T_IR) | (HS578T_DMSO) | FC = -3.32 | q.value = 0.00161 EEF1A1 | E9_Ab | (BT474_IR) | (BT474_DMSO) | FC = 4.08 | q.value = 1.29e-11
7 RPS21 | E3_Dd | (HS578T_IR) | (HS578T_DMSO) | FC = 3.30 | q.value = 4.42e-07 AC037475.9 | E1_Da | (BT474_IR) | (BT474_DMSO) | FC = 4.02 | q.value = 0.00011
8 AC008481.9 | E1_Da | (HS578T_IR) | (HS578T_DMSO) | FC = 3.26 | q.value = 4.48e-39 AL121759.25 | E1_Da | (BT474_IR) | (BT474_DMSO) | FC = 3.83 | q.value = 5.89e-43
9 ATP6V1C1 | E2_Ab | (HS578T_IR) | (HS578T_DMSO) | FC = -3.22 | q.value = 0.00222 AC011737.10 | E1_Da | (BT474_IR) | (BT474_DMSO) | FC = 3.61 | q.value = 4.17e-75
10 AC135255.2 | E2_Da | (HS578T_IR) | (HS578T_DMSO) | FC = 3.12 | q.value = 1.58e-14 AL355076.5 | E3_Aa | (BT474_IR) | (BT474_DMSO) | FC = 3.61 | q.value = 8.72e-10
11 BAT2 | E2_Ab | (HS578T_IR) | (HS578T_DMSO) | FC = -3.09 | q.value = 0.0128 PCNA | E2_Ad | (BT474_IR) | (BT474_DMSO) | FC = 3.47 | q.value = 1.21e-06
12 AC145132.2 | E2_Aa | (HS578T_IR) | (HS578T_DMSO) | FC = 3.09 | q.value = 1.18e-10 AC092268.4 | E1_Da | (BT474_IR) | (BT474_DMSO) | FC = 3.40 | q.value = 2.37e-69
13 NUDT21 | E1_Ab | (HS578T_IR) | (HS578T_DMSO) | FC = -2.65 | q.value = 0.00152 AC022443.5 | E1_Da | (BT474_IR) | (BT474_DMSO) | FC = 3.11 | q.value = 4.53e-13
14 AC087343.4 | E2_Aa | (HS578T_IR) | (HS578T_DMSO) | FC = -2.60 | q.value = 8.24e-16 RP1-40G4P.1 | E2_Aa | (BT474_IR) | (BT474_DMSO) | FC = 3.08 | q.value = 0.00176
15 SRRM2 | E16_Ab | (HS578T_IR) | (HS578T_DMSO) | FC = -2.56 | q.value = 3.59e-06 RPS21 | E3_Dd | (BT474_IR) | (BT474_DMSO) | FC = -3.05 | q.value = 2.65e-18
16 AC010746.8 | E2_Aa | (HS578T_IR) | (HS578T_DMSO) | FC = 2.54 | q.value = 2.45e-06 IER5L | E1_Ab | (BT474_IR) | (BT474_DMSO) | FC = 2.92 | q.value = 1.44e-05
17 CDKN2B | E1_Ab | (HS578T_IR) | (HS578T_DMSO) | FC = 2.51 | q.value = 0.0369 DENND1B | E4_Aa | (BT474_IR) | (BT474_DMSO) | FC = 2.91 | q.value = 8.73e-13
18 PTMA | E2_Ae | (HS578T_IR) | (HS578T_DMSO) | FC = -2.50 | q.value = 7.26e-50 AC022443.5 | E2_Aa | (BT474_IR) | (BT474_DMSO) | FC = 2.86 | q.value = 7.95e-21
19 POLR2J2 | E1_Ab | (HS578T_IR) | (HS578T_DMSO) | FC = -2.35 | q.value = 3.51e-09 HLA-A | E4_Da | (BT474_IR) | (BT474_DMSO) | FC = -2.73 | q.value = 0.0282
20 KRT17 | E1_Ab | (HS578T_IR) | (HS578T_DMSO) | FC = 2.31 | q.value = 8.62e-12 AC004448.3 | E1_Da | (BT474_IR) | (BT474_DMSO) | FC = -2.69 | q.value = 2.54e-51
21 ACAT1 | E1_Ab | (HS578T_IR) | (HS578T_DMSO) | FC = -2.30 | q.value = 0.0108 AC037475.9 | E2_Aa | (BT474_IR) | (BT474_DMSO) | FC = 2.68 | q.value = 0.00534
22 AP001603.1 | E3_Aa | (HS578T_IR) | (HS578T_DMSO) | FC = 2.20 | q.value = 0.023 AC010138.6 | E1_Da | (BT474_IR) | (BT474_DMSO) | FC = 2.63 | q.value = 2.85e-07
23 MRPS24 | E2_Da | (HS578T_IR) | (HS578T_DMSO) | FC = -2.20 | q.value = 0.0108 ARL6IP4 | E2_Af | (BT474_IR) | (BT474_DMSO) | FC = -2.56 | q.value = 0.0335
24 SYPL1 | E2_Aa | (HS578T_IR) | (HS578T_DMSO) | FC = -2.19 | q.value = 0.0453 SRRM2 | E16_Ab | (BT474_IR) | (BT474_DMSO) | FC = 2.53 | q.value = 0.012
25 ASPH | E1_Ac | (HS578T_IR) | (HS578T_DMSO) | FC = -2.19 | q.value = 0.00276 MAGED2 | E5_Da | (BT474_IR) | (BT474_DMSO) | FC = 2.49 | q.value = 0.000317
26 C3orf10 | E4_Aa | (HS578T_IR) | (HS578T_DMSO) | FC = 2.18 | q.value = 0.000482 AC009121.8 | E2_Da | (BT474_IR) | (BT474_DMSO) | FC = -2.40 | q.value = 1.2e-06
27 AC008481.9 | E2_Aa | (HS578T_IR) | (HS578T_DMSO) | FC = 2.05 | q.value = 0.0126 PTMA | E2_Ae | (BT474_IR) | (BT474_DMSO) | FC = 2.38 | q.value = 5.03e-23
28 AC092658.2 | E1_Da | (HS578T_IR) | (HS578T_DMSO) | FC = 2.05 | q.value = 3.19e-73 OAZ1 | E2_Da | (BT474_IR) | (BT474_DMSO) | FC = -2.34 | q.value = 0.00174
29 AC004833.1 | E2_Da | (HS578T_IR) | (HS578T_DMSO) | FC = -2.02 | q.value = 7.35e-17 HNRNPC | E3_Ab | (BT474_IR) | (BT474_DMSO) | FC = 2.30 | q.value = 4.82e-12
30 EMPTY AC011444.5 | E3_Aa | (BT474_IR) | (BT474_DMSO) | FC = -2.27 | q.value = 2.63e-08
31 EMPTY AL096829.17 | E2_Aa | (BT474_IR) | (BT474_DMSO) | FC = 2.24 | q.value = 0.0431
32 EMPTY AC096663.1 | E2_Aa | (BT474_IR) | (BT474_DMSO) | FC = -2.13 | q.value = 3.74e-28
33 EMPTY AC008481.9 | E2_Aa | (BT474_IR) | (BT474_DMSO) | FC = -2.08 | q.value = 0.000317
34 EMPTY PTMA | E4_Db | (BT474_IR) | (BT474_DMSO) | FC = -2.05 | q.value = 6.84e-19
35 EMPTY AL354710.17 | E3_Aa | (BT474_IR) | (BT474_DMSO) | FC = 2.03 | q.value = 2.54e-11
36 EMPTY CSNK2B | E7_Ab | (BT474_IR) | (BT474_DMSO) | FC = 2.02 | q.value = 0.00739