Distributions and lists of all significant differential expression values of the type: NovelJunction for comparisons: PostTx_vs_PreTx_Un, PostTx_vs_PreTx_En, En_vs_Un_PreTx, En_vs_Un_PostTx (p-value < 0.05 after multiple testing correction and Fold-Change > 1.5)


Distribution of log2 differential expression values for comparison: PostTx_vs_PreTx_Un and data type: NovelJunction

Distribution of all differential expression values that meet the p-value and fold-change cutoff for the feature type: NovelJunction. 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: PostTx_vs_PreTx_Un and data type: NovelJunction

Correlation between expression values for all features that are expressed above background in one or both libraries for the feature type: NovelJunction. 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: PostTx_vs_PreTx_Un and data type: NovelJunction




SmoothScatter plot of log2 expression values for comparison: PostTx_vs_PreTx_Un and data type: NovelJunction

Correlation between expression values for all features that are expressed above background in one or both libraries for the feature type: NovelJunction. 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: PostTx_vs_PreTx_Un and data type: NovelJunction




Distribution of log2 differential expression values for comparison: PostTx_vs_PreTx_En and data type: NovelJunction

Distribution of all differential expression values that meet the p-value and fold-change cutoff for the feature type: NovelJunction. 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: PostTx_vs_PreTx_En and data type: NovelJunction

Correlation between expression values for all features that are expressed above background in one or both libraries for the feature type: NovelJunction. 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: PostTx_vs_PreTx_En and data type: NovelJunction




SmoothScatter plot of log2 expression values for comparison: PostTx_vs_PreTx_En and data type: NovelJunction

Correlation between expression values for all features that are expressed above background in one or both libraries for the feature type: NovelJunction. 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: PostTx_vs_PreTx_En and data type: NovelJunction




Distribution of log2 differential expression values for comparison: En_vs_Un_PreTx and data type: NovelJunction

Distribution of all differential expression values that meet the p-value and fold-change cutoff for the feature type: NovelJunction. 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: En_vs_Un_PreTx and data type: NovelJunction

Correlation between expression values for all features that are expressed above background in one or both libraries for the feature type: NovelJunction. 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: En_vs_Un_PreTx and data type: NovelJunction




SmoothScatter plot of log2 expression values for comparison: En_vs_Un_PreTx and data type: NovelJunction

Correlation between expression values for all features that are expressed above background in one or both libraries for the feature type: NovelJunction. 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: En_vs_Un_PreTx and data type: NovelJunction




Distribution of log2 differential expression values for comparison: En_vs_Un_PostTx and data type: NovelJunction

Distribution of all differential expression values that meet the p-value and fold-change cutoff for the feature type: NovelJunction. 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: En_vs_Un_PostTx and data type: NovelJunction

Correlation between expression values for all features that are expressed above background in one or both libraries for the feature type: NovelJunction. 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: En_vs_Un_PostTx and data type: NovelJunction




SmoothScatter plot of log2 expression values for comparison: En_vs_Un_PostTx and data type: NovelJunction

Correlation between expression values for all features that are expressed above background in one or both libraries for the feature type: NovelJunction. 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: En_vs_Un_PostTx and data type: NovelJunction




Significant differentially expressed NovelJunction features

The following table provides a ranked list of all significant differentially expressed NovelJunction 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.).


RANKPostTx_vs_PreTx_Un (Gene | Feature | Links | Values)PostTx_vs_PreTx_En (Gene | Feature | Links | Values)En_vs_Un_PreTx (Gene | Feature | Links | Values)En_vs_Un_PostTx (Gene | Feature | Links | Values)
1 CD177 | E6a_E8a (S1) | (PostTx_Un) | (PreTx_Un) | FC = 9.21 | q.value = 1.85e-10 CASP4 | E1a_E5a (S3) | (PostTx_En) | (PreTx_En) | FC = 19.98 | q.value = 5.76e-06 TNS1 | E22a_E25a (S2) | (PreTx_En) | (PreTx_Un) | FC = -27.23 | q.value = 2.4e-07 CD177 | E6a_E8a (S1) | (PostTx_En) | (PostTx_Un) | FC = -125.92 | q.value = 1.29e-41
2 HLA-J | E3a_E4b (S0) | (PostTx_Un) | (PreTx_Un) | FC = 9.13 | q.value = 6.85e-05 C20orf199 | E3a_E5a (S1) | (PostTx_En) | (PreTx_En) | FC = 15.26 | q.value = 1.52e-09 RERE | E21a_E23a (S1) | (PreTx_En) | (PreTx_Un) | FC = -12.60 | q.value = 0.00688 TNS1 | E22a_E25a (S2) | (PostTx_En) | (PostTx_Un) | FC = -31.87 | q.value = 2.59e-09
3 AL133153.3 | E1a_E3a (S1) | (PostTx_Un) | (PreTx_Un) | FC = 8.90 | q.value = 4.77e-10 CASP4 | E5a_E8a (S2) | (PostTx_En) | (PreTx_En) | FC = 11.47 | q.value = 0.00645 C5orf4 | E3a_E5a (S1) | (PreTx_En) | (PreTx_Un) | FC = -11.76 | q.value = 0.0117 SAMSN1 | E7a_E9a (S1) | (PostTx_En) | (PostTx_Un) | FC = -26.00 | q.value = 1.65e-12
4 CTSL1 | E6a_E8a (S1) | (PostTx_Un) | (PreTx_Un) | FC = -7.19 | q.value = 0.0167 RNF181 | E2a_E4a (S1) | (PostTx_En) | (PreTx_En) | FC = 10.22 | q.value = 0.0263 TMC6 | E7a_E9a (S1) | (PreTx_En) | (PreTx_Un) | FC = -10.26 | q.value = 0.0409 PLAUR | E5a_E7a (S1) | (PostTx_En) | (PostTx_Un) | FC = -22.77 | q.value = 1.8e-10
5 CSF1 | E1a_E3a (S1) | (PostTx_Un) | (PreTx_Un) | FC = -7.10 | q.value = 0.0118 AL133153.3 | E1a_E3a (S1) | (PostTx_En) | (PreTx_En) | FC = 9.49 | q.value = 6.21e-05 CCT5 | E2a_E4a (S1) | (PreTx_En) | (PreTx_Un) | FC = -9.63 | q.value = 0.0409 SLC15A3 | E4a_E6a (S1) | (PostTx_En) | (PostTx_Un) | FC = -20.73 | q.value = 9.41e-06
6 AC005921.3 | E1a_E4a (S2) | (PostTx_Un) | (PreTx_Un) | FC = -6.60 | q.value = 0.0167 EAF2 | E2a_E4a (S1) | (PostTx_En) | (PreTx_En) | FC = 9.32 | q.value = 1.14e-24 C20orf199 | E3a_E5a (S1) | (PreTx_En) | (PreTx_Un) | FC = -9.33 | q.value = 0.000425 IL18RAP | E7a_E9a (S1) | (PostTx_En) | (PostTx_Un) | FC = -20.17 | q.value = 1.54e-05
7 BBC3 | E2a_E5a (S2) | (PostTx_Un) | (PreTx_Un) | FC = -6.16 | q.value = 0.0118 SNHG12 | E1a_E3a (S2) | (PostTx_En) | (PreTx_En) | FC = 8.92 | q.value = 0.0483 DCTN2 | E2a_E5a (S2) | (PreTx_En) | (PreTx_Un) | FC = -7.89 | q.value = 2.4e-07 TCEB2 | E2a_E4a (S1) | (PostTx_En) | (PostTx_Un) | FC = -19.52 | q.value = 2.63e-05
8 RERE | E21a_E23a (S1) | (PostTx_Un) | (PreTx_Un) | FC = -5.44 | q.value = 0.0115 OCIAD2 | E2a_E4a (S1) | (PostTx_En) | (PreTx_En) | FC = 7.61 | q.value = 0.0407 YPEL5 | E1a_E4a (S3) | (PreTx_En) | (PreTx_Un) | FC = 7.24 | q.value = 1.25e-09 OLR1 | E4a_E6a (S1) | (PostTx_En) | (PostTx_Un) | FC = -19.15 | q.value = 2.63e-05
9 TMC6 | E7a_E9a (S1) | (PostTx_Un) | (PreTx_Un) | FC = -4.89 | q.value = 0.0471 GBF1 | E25a_E27a (S1) | (PostTx_En) | (PreTx_En) | FC = -7.58 | q.value = 0.000893 AL391382.10 | E1a_E3a (S1) | (PreTx_En) | (PreTx_Un) | FC = 6.89 | q.value = 0.0409 CNIH | E2a_E4a (S1) | (PostTx_En) | (PostTx_Un) | FC = -18.95 | q.value = 2.63e-05
10 PIP5K1C | E16a_E18a (S1) | (PostTx_Un) | (PreTx_Un) | FC = -4.19 | q.value = 0.0471 CASP8 | E5a_E8a (S2) | (PostTx_En) | (PreTx_En) | FC = -6.79 | q.value = 0.0285 ADAM15 | E19a_E20b (S0) | (PreTx_En) | (PreTx_Un) | FC = -6.75 | q.value = 0.000401 ANKRD13D | E7a_E9a (S1) | (PostTx_En) | (PostTx_Un) | FC = -18.45 | q.value = 4.84e-05
11 COPEB | E2d_E4a (S1) | (PostTx_Un) | (PreTx_Un) | FC = -3.87 | q.value = 3.05e-19 HLA-J | E3a_E4b (S0) | (PostTx_En) | (PreTx_En) | FC = 6.66 | q.value = 2.36e-06 ARL6IP4 | E2b_E2e (S0) | (PreTx_En) | (PreTx_Un) | FC = -6.74 | q.value = 3.65e-12 CDKN3 | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = -17.30 | q.value = 8.39e-05
12 SAMSN1 | E7a_E9a (S1) | (PostTx_Un) | (PreTx_Un) | FC = 3.85 | q.value = 0.0414 C10orf104 | E1a_E3a (S1) | (PostTx_En) | (PreTx_En) | FC = -6.38 | q.value = 0.000164 TMEM66 | E1a_E3a (S1) | (PreTx_En) | (PreTx_Un) | FC = -6.50 | q.value = 1.63e-12 IL4R | E10a_E13a (S2) | (PostTx_En) | (PostTx_Un) | FC = -16.48 | q.value = 0.000164
13 SMARCA4 | E26a_E28a (S1) | (PostTx_Un) | (PreTx_Un) | FC = -3.57 | q.value = 0.000293 MRPS31 | E4a_E6a (S1) | (PostTx_En) | (PreTx_En) | FC = 5.65 | q.value = 0.0285 FCRL5 | E7a_E9a (S1) | (PreTx_En) | (PreTx_Un) | FC = 6.03 | q.value = 0.00203 ARHGAP9 | E19a_E21a (S2) | (PostTx_En) | (PostTx_Un) | FC = -15.82 | q.value = 1.15e-09
14 TMEM66 | E1a_E3a (S1) | (PostTx_Un) | (PreTx_Un) | FC = -3.14 | q.value = 7.16e-08 IFRD1 | E8a_E10a (S1) | (PostTx_En) | (PreTx_En) | FC = -5.45 | q.value = 0.000163 RSRC2 | E4a_E5b (S0) | (PreTx_En) | (PreTx_Un) | FC = 5.34 | q.value = 0.0434 CLEC4E | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = -14.45 | q.value = 0.000598
15 ADAM15 | E19a_E20b (S0) | (PostTx_Un) | (PreTx_Un) | FC = -2.95 | q.value = 0.0134 LSM14A | E4a_E6a (S1) | (PostTx_En) | (PreTx_En) | FC = -4.97 | q.value = 0.00704 FAM96A | E2a_E5a (S2) | (PreTx_En) | (PreTx_Un) | FC = 4.67 | q.value = 0.0243 GGTA1 | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = -14.35 | q.value = 0.000598
16 PER1 | E16a_E18a (S1) | (PostTx_Un) | (PreTx_Un) | FC = -2.95 | q.value = 0.0463 BANF1 | E1a_E3a (S1) | (PostTx_En) | (PreTx_En) | FC = -4.74 | q.value = 0.0159 IRF4 | E1a_E3a (S1) | (PreTx_En) | (PreTx_Un) | FC = 4.60 | q.value = 0.0112 SPTA1 | E45a_E47a (S1) | (PostTx_En) | (PostTx_Un) | FC = -12.71 | q.value = 0.00233
17 NR4A2 | E7a_E8b (S0) | (PostTx_Un) | (PreTx_Un) | FC = 2.73 | q.value = 0.0136 THOC7 | E1a_E4a (S3) | (PostTx_En) | (PreTx_En) | FC = -4.57 | q.value = 0.0407 GLCCI1 | E6a_E8a (S1) | (PreTx_En) | (PreTx_Un) | FC = 4.41 | q.value = 0.000699 C5orf4 | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = -12.56 | q.value = 0.00233
18 BTBD3 | E2b_E4a (S1) | (PostTx_Un) | (PreTx_Un) | FC = 2.62 | q.value = 0.0222 C17orf45 | E1a_E3a (S1) | (PostTx_En) | (PreTx_En) | FC = -4.28 | q.value = 0.00274 BTBD3 | E2b_E4a (S1) | (PreTx_En) | (PreTx_Un) | FC = 3.93 | q.value = 0.0112 LPXN | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = 12.46 | q.value = 2.22e-05
19 C20orf199 | E3a_E5a (S1) | (PostTx_Un) | (PreTx_Un) | FC = 2.57 | q.value = 0.000156 YPEL5 | E1a_E4a (S3) | (PostTx_En) | (PreTx_En) | FC = -4.18 | q.value = 4.75e-12 FAM49B | E5a_E8a (S3) | (PreTx_En) | (PreTx_Un) | FC = -3.58 | q.value = 0.00723 IRF4 | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = 11.38 | q.value = 2.31e-70
20 CPNE5 | E13a_E15a (S1) | (PostTx_Un) | (PreTx_Un) | FC = 2.35 | q.value = 0.0157 CD200 | E1a_E5a (S3) | (PostTx_En) | (PreTx_En) | FC = 4.06 | q.value = 0.00391 HYOU1 | E1a_E3a (S2) | (PreTx_En) | (PreTx_Un) | FC = 3.42 | q.value = 0.0173 TSPAN14 | E1a_E5a (S3) | (PostTx_En) | (PostTx_Un) | FC = -10.81 | q.value = 0.00884
21 AC011773.9 | E1a_E3a (S1) | (PostTx_Un) | (PreTx_Un) | FC = 2.32 | q.value = 0.0266 IRF4 | E1a_E3a (S1) | (PostTx_En) | (PreTx_En) | FC = 3.74 | q.value = 3e-21 MIER1 | E6a_E19b (S13) | (PreTx_En) | (PreTx_Un) | FC = -3.40 | q.value = 0.0409 N6AMT2 | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = -10.33 | q.value = 0.0158
22 HVCN1 | E5a_E8b (S2) | (PostTx_Un) | (PreTx_Un) | FC = 2.30 | q.value = 0.0134 COPEB | E2d_E4a (S1) | (PostTx_En) | (PreTx_En) | FC = -3.37 | q.value = 1.61e-23 PCBP2 | E11a_E13a (S1) | (PreTx_En) | (PreTx_Un) | FC = -3.25 | q.value = 4.61e-05 CENTD3 | E31a_E33a (S1) | (PostTx_En) | (PostTx_Un) | FC = -10.25 | q.value = 0.0158
23 ARL6IP4 | E2b_E2e (S0) | (PostTx_Un) | (PreTx_Un) | FC = -2.18 | q.value = 0.00343 FCRL2 | E5a_E7a (S1) | (PostTx_En) | (PreTx_En) | FC = 3.34 | q.value = 4.73e-05 WDR26 | E3a_E4b (S0) | (PreTx_En) | (PreTx_Un) | FC = -3.08 | q.value = 0.0476 MIER1 | E6a_E19b (S13) | (PostTx_En) | (PostTx_Un) | FC = -10.00 | q.value = 8.42e-28
24 CLK1 | E4a_E6a (S1) | (PostTx_Un) | (PreTx_Un) | FC = 2.16 | q.value = 0.00387 PPP2CA | E4a_E6a (S1) | (PostTx_En) | (PreTx_En) | FC = -3.26 | q.value = 0.0407 GLT8D1 | E12d_E12d (S0) | (PreTx_En) | (PreTx_Un) | FC = 2.49 | q.value = 0.0441 CLEC5A | E1a_E6a (S4) | (PostTx_En) | (PostTx_Un) | FC = -9.81 | q.value = 0.0158
25 EMPTY GLCCI1 | E6a_E8a (S1) | (PostTx_En) | (PreTx_En) | FC = -3.12 | q.value = 7.48e-05 C17orf45 | E1a_E3a (S1) | (PreTx_En) | (PreTx_Un) | FC = -2.38 | q.value = 0.00254 AKNA | E22a_E24a (S3) | (PostTx_En) | (PostTx_Un) | FC = -9.78 | q.value = 0.0158
26 EMPTY MEI1 | E24a_E27a (S2) | (PostTx_En) | (PreTx_En) | FC = -2.72 | q.value = 0.0303 NAP1L4 | E17a_E19a (S1) | (PreTx_En) | (PreTx_Un) | FC = -2.29 | q.value = 0.0409 SCD | E4a_E6a (S1) | (PostTx_En) | (PostTx_Un) | FC = -9.75 | q.value = 0.0158
27 EMPTY SCAMP5 | E3a_E5a (S1) | (PostTx_En) | (PreTx_En) | FC = 2.63 | q.value = 6.35e-07 EMPTY CD200 | E1a_E5a (S3) | (PostTx_En) | (PostTx_Un) | FC = 9.41 | q.value = 6.14e-10
28 EMPTY HVCN1 | E5a_E8b (S2) | (PostTx_En) | (PreTx_En) | FC = 2.01 | q.value = 0.00102 EMPTY GRAMD1A | E7a_E9a (S1) | (PostTx_En) | (PostTx_Un) | FC = -8.90 | q.value = 0.0259
29 EMPTY EMPTY EMPTY IL32 | E2a_E3a (S0) | (PostTx_En) | (PostTx_Un) | FC = -8.43 | q.value = 0.0445
30 EMPTY EMPTY EMPTY ECSIT | E2a_E5a (S2) | (PostTx_En) | (PostTx_Un) | FC = -8.42 | q.value = 0.0445
31 EMPTY EMPTY EMPTY ADAM5P | E12a_E14a (S1) | (PostTx_En) | (PostTx_Un) | FC = 8.15 | q.value = 0.00749
32 EMPTY EMPTY EMPTY ARHGAP8 | E2a_E5b (S6) | (PostTx_En) | (PostTx_Un) | FC = -8.14 | q.value = 0.0445
33 EMPTY EMPTY EMPTY SLC30A5 | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = 8.04 | q.value = 0.0331
34 EMPTY EMPTY EMPTY NEB | E152a_E154a (S1) | (PostTx_En) | (PostTx_Un) | FC = 7.90 | q.value = 0.0331
35 EMPTY EMPTY EMPTY EAF2 | E2a_E4a (S1) | (PostTx_En) | (PostTx_Un) | FC = 7.62 | q.value = 1.92e-40
36 EMPTY EMPTY EMPTY TMEM156 | E1a_E3a (S2) | (PostTx_En) | (PostTx_Un) | FC = 7.12 | q.value = 2.52e-05
37 EMPTY EMPTY EMPTY OPRL1 | E1a_E6a (S4) | (PostTx_En) | (PostTx_Un) | FC = -6.81 | q.value = 0.0248
38 EMPTY EMPTY EMPTY C1orf162 | E4a_E6a (S2) | (PostTx_En) | (PostTx_Un) | FC = -6.79 | q.value = 7.32e-05
39 EMPTY EMPTY EMPTY FAM49B | E2a_E5a (S2) | (PostTx_En) | (PostTx_Un) | FC = -6.74 | q.value = 4.41e-05
40 EMPTY EMPTY EMPTY TP53AP1 | E1a_E2a (S1) | (PostTx_En) | (PostTx_Un) | FC = -6.65 | q.value = 0.000235
41 EMPTY EMPTY EMPTY CSGALNACT1 | E2a_E4a (S1) | (PostTx_En) | (PostTx_Un) | FC = -6.64 | q.value = 0.000351
42 EMPTY EMPTY EMPTY PLAC8 | E1a_E4a (S2) | (PostTx_En) | (PostTx_Un) | FC = -6.15 | q.value = 1.27e-06
43 EMPTY EMPTY EMPTY ROGDI | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = -6.11 | q.value = 0.0405
44 EMPTY EMPTY EMPTY FAM48A | E2a_E4a (S1) | (PostTx_En) | (PostTx_Un) | FC = -5.81 | q.value = 0.0209
45 EMPTY EMPTY EMPTY EXOSC8 | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = -5.72 | q.value = 0.00921
46 EMPTY EMPTY EMPTY AC138649.2 | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = -5.68 | q.value = 0.00439
47 EMPTY EMPTY EMPTY DNAJC19 | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = 5.49 | q.value = 0.0272
48 EMPTY EMPTY EMPTY HIAT1 | E6a_E8a (S1) | (PostTx_En) | (PostTx_Un) | FC = -5.39 | q.value = 0.0248
49 EMPTY EMPTY EMPTY MDM4 | E22a_E24a (S1) | (PostTx_En) | (PostTx_Un) | FC = 5.36 | q.value = 0.0417
50 EMPTY EMPTY EMPTY AURKB | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = -5.34 | q.value = 0.0158
51 EMPTY EMPTY EMPTY KIAA0513 | E9a_E11a (S1) | (PostTx_En) | (PostTx_Un) | FC = -5.03 | q.value = 0.00439
52 EMPTY EMPTY EMPTY ABHD5 | E5a_E7a (S1) | (PostTx_En) | (PostTx_Un) | FC = -5.01 | q.value = 0.0248
53 EMPTY EMPTY EMPTY UBN1 | E11a_E13a (S1) | (PostTx_En) | (PostTx_Un) | FC = -5.00 | q.value = 0.0248
54 EMPTY EMPTY EMPTY RAB9A | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = -4.84 | q.value = 0.0248
55 EMPTY EMPTY EMPTY TAX1BP1 | E13a_E17a (S4) | (PostTx_En) | (PostTx_Un) | FC = -4.70 | q.value = 0.00921
56 EMPTY EMPTY EMPTY WHSC1 | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = 4.70 | q.value = 0.045
57 EMPTY EMPTY EMPTY STYXL1 | E1a_E2a (S0) | (PostTx_En) | (PostTx_Un) | FC = -4.67 | q.value = 0.0405
58 EMPTY EMPTY EMPTY BANF1 | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = -4.56 | q.value = 7.83e-05
59 EMPTY EMPTY EMPTY AMPD2 | E15a_E17a (S1) | (PostTx_En) | (PostTx_Un) | FC = -4.46 | q.value = 0.0158
60 EMPTY EMPTY EMPTY CDCA7L | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = -4.34 | q.value = 0.0484
61 EMPTY EMPTY EMPTY RP11-460E7.5 | E2a_E4a (S1) | (PostTx_En) | (PostTx_Un) | FC = 4.29 | q.value = 0.0228
62 EMPTY EMPTY EMPTY PXN | E8a_E13b (S4) | (PostTx_En) | (PostTx_Un) | FC = -4.26 | q.value = 0.00233
63 EMPTY EMPTY EMPTY HISPPD1 | E26a_E29a (S2) | (PostTx_En) | (PostTx_Un) | FC = -4.26 | q.value = 5.4e-05
64 EMPTY EMPTY EMPTY CHD8 | E35a_E37a (S1) | (PostTx_En) | (PostTx_Un) | FC = -4.19 | q.value = 0.0314
65 EMPTY EMPTY EMPTY C12orf41 | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = -4.15 | q.value = 0.0331
66 EMPTY EMPTY EMPTY IFRD1 | E8a_E10a (S1) | (PostTx_En) | (PostTx_Un) | FC = -4.14 | q.value = 1.54e-05
67 EMPTY EMPTY EMPTY C20orf72 | E2b_E4a (S1) | (PostTx_En) | (PostTx_Un) | FC = -4.13 | q.value = 0.0228
68 EMPTY EMPTY EMPTY DAP3 | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = 4.11 | q.value = 0.0323
69 EMPTY EMPTY EMPTY TFDP1 | E4a_E6a (S1) | (PostTx_En) | (PostTx_Un) | FC = -3.99 | q.value = 0.0331
70 EMPTY EMPTY EMPTY MLL5 | E1b_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = 3.97 | q.value = 0.0227
71 EMPTY EMPTY EMPTY SNRPD3 | E4a_E4b (S0) | (PostTx_En) | (PostTx_Un) | FC = -3.93 | q.value = 1.19e-07
72 EMPTY EMPTY EMPTY ARRDC3 | E2a_E4a (S1) | (PostTx_En) | (PostTx_Un) | FC = 3.87 | q.value = 0.0217
73 EMPTY EMPTY EMPTY C20orf80 | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = 3.79 | q.value = 0.000211
74 EMPTY EMPTY EMPTY NEB | E138a_E150a (S12) | (PostTx_En) | (PostTx_Un) | FC = 3.75 | q.value = 0.0136
75 EMPTY EMPTY EMPTY PLAC8 | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = -3.70 | q.value = 1.94e-06
76 EMPTY EMPTY EMPTY ADRM1 | E8a_E10a (S1) | (PostTx_En) | (PostTx_Un) | FC = -3.57 | q.value = 0.0158
77 EMPTY EMPTY EMPTY MYO9B | E36a_E38a (S1) | (PostTx_En) | (PostTx_Un) | FC = -3.50 | q.value = 1.28e-05
78 EMPTY EMPTY EMPTY CPEB4 | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = -3.50 | q.value = 0.0237
79 EMPTY EMPTY EMPTY TMEM149 | E2a_E4a (S1) | (PostTx_En) | (PostTx_Un) | FC = 3.50 | q.value = 0.0112
80 EMPTY EMPTY EMPTY PUF60 | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = 3.42 | q.value = 0.0331
81 EMPTY EMPTY EMPTY CASP4 | E1a_E5a (S3) | (PostTx_En) | (PostTx_Un) | FC = 3.37 | q.value = 0.000793
82 EMPTY EMPTY EMPTY AC009027.10 | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = -3.29 | q.value = 0.0233
83 EMPTY EMPTY EMPTY SCAMP5 | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = 3.28 | q.value = 4.08e-13
84 EMPTY EMPTY EMPTY FAM33A | E1a_E4a (S2) | (PostTx_En) | (PostTx_Un) | FC = -3.25 | q.value = 0.0497
85 EMPTY EMPTY EMPTY UQCRQ | E1a_E2a (S1) | (PostTx_En) | (PostTx_Un) | FC = -3.20 | q.value = 0.0331
86 EMPTY EMPTY EMPTY HYOU1 | E1a_E3a (S2) | (PostTx_En) | (PostTx_Un) | FC = 3.18 | q.value = 0.000166
87 EMPTY EMPTY EMPTY PPP2CA | E4a_E6a (S1) | (PostTx_En) | (PostTx_Un) | FC = -3.13 | q.value = 5.77e-05
88 EMPTY EMPTY EMPTY FCRL2 | E5a_E7a (S1) | (PostTx_En) | (PostTx_Un) | FC = 3.11 | q.value = 5.85e-07
89 EMPTY EMPTY EMPTY DCTN2 | E2a_E5a (S2) | (PostTx_En) | (PostTx_Un) | FC = -3.09 | q.value = 9.94e-06
90 EMPTY EMPTY EMPTY LSM14A | E4a_E6a (S1) | (PostTx_En) | (PostTx_Un) | FC = -3.09 | q.value = 0.0331
91 EMPTY EMPTY EMPTY PRDM1 | E6a_E8a (S1) | (PostTx_En) | (PostTx_Un) | FC = 3.08 | q.value = 0.00126
92 EMPTY EMPTY EMPTY NEB | E130a_E132a (S1) | (PostTx_En) | (PostTx_Un) | FC = 3.06 | q.value = 0.00386
93 EMPTY EMPTY EMPTY NCAM1 | E18a_E23b (S4) | (PostTx_En) | (PostTx_Un) | FC = 3.05 | q.value = 0.000164
94 EMPTY EMPTY EMPTY POLB | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = -3.04 | q.value = 0.0223
95 EMPTY EMPTY EMPTY EMP3 | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = -3.02 | q.value = 1.54e-05
96 EMPTY EMPTY EMPTY TLE4 | E23a_E25a (S1) | (PostTx_En) | (PostTx_Un) | FC = -3.02 | q.value = 0.0328
97 EMPTY EMPTY EMPTY GLCCI1 | E6a_E8a (S1) | (PostTx_En) | (PostTx_Un) | FC = 2.93 | q.value = 0.0192
98 EMPTY EMPTY EMPTY FCRL5 | E7a_E9a (S1) | (PostTx_En) | (PostTx_Un) | FC = 2.83 | q.value = 0.00884
99 EMPTY EMPTY EMPTY FAM36A | E1a_E4a (S2) | (PostTx_En) | (PostTx_Un) | FC = -2.78 | q.value = 4.11e-05
100 EMPTY EMPTY EMPTY ADAM15 | E19a_E20b (S0) | (PostTx_En) | (PostTx_Un) | FC = -2.74 | q.value = 0.0207
101 EMPTY EMPTY EMPTY LY96 | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = -2.63 | q.value = 0.00635
102 EMPTY EMPTY EMPTY FAM49B | E5a_E8a (S3) | (PostTx_En) | (PostTx_Un) | FC = -2.60 | q.value = 2.18e-07
103 EMPTY EMPTY EMPTY TXNDC11 | E3a_E12a (S8) | (PostTx_En) | (PostTx_Un) | FC = 2.51 | q.value = 0.000351
104 EMPTY EMPTY EMPTY PLSCR1 | E3a_E5a (S1) | (PostTx_En) | (PostTx_Un) | FC = -2.50 | q.value = 0.0248
105 EMPTY EMPTY EMPTY SNF1LK | E8a_E10a (S1) | (PostTx_En) | (PostTx_Un) | FC = 2.40 | q.value = 0.0261
106 EMPTY EMPTY EMPTY MTDH | E6a_E8a (S1) | (PostTx_En) | (PostTx_Un) | FC = 2.30 | q.value = 0.00126
107 EMPTY EMPTY EMPTY TMEM66 | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = -2.25 | q.value = 8.05e-05
108 EMPTY EMPTY EMPTY GRAMD1A | E16a_E18a (S1) | (PostTx_En) | (PostTx_Un) | FC = -2.21 | q.value = 0.00522
109 EMPTY EMPTY EMPTY BTBD3 | E2b_E4a (S1) | (PostTx_En) | (PostTx_Un) | FC = 2.15 | q.value = 0.000139
110 EMPTY EMPTY EMPTY SEPT2 | E2a_E4a (S1) | (PostTx_En) | (PostTx_Un) | FC = -2.13 | q.value = 0.0272
111 EMPTY EMPTY EMPTY MFSD1 | E10a_E11c (S0) | (PostTx_En) | (PostTx_Un) | FC = -2.09 | q.value = 0.00558
112 EMPTY EMPTY EMPTY AL133153.3 | E1a_E3a (S1) | (PostTx_En) | (PostTx_Un) | FC = -2.04 | q.value = 4.16e-07