MAP3K11

RNA expression — cross-omics
Cross-omicsRNA → FUNCTION-RNACell-linePairwise association · TCGA cohorts

Across TCGA cell cohorts, MAP3K11 RNA expression is significantly associated with the go_rna of many other GO terms, with 4,121 significant associations in total. SKIN shows the largest number of these associations.

The most reproducible MAP3K11-associated GO terms across cancer lineages are Transcription pausing by RNA polymerase II, Cellular response to nicotine, and Regulation of attachment of mitotic spindle microtubules to kinetochore. Each is linked with MAP3K11 in more than 13 cancer types. Because this analysis shows association rather than direction, both MAP3K11-to-partner and partner-to-MAP3K11 results are reported.

Each partner links to its own Q-omics profile. The box plot shows the strongest example, Transcription pausing by RNA polymerase II grouped by MAP3K11-low versus MAP3K11-high in BONE.

RNA expression associated GO terms by consensus

Ranked by combined sampling and lineage consensus. X-score (MAP3K11→partner) and Y-score (partner→MAP3K11) are standardized regression coefficients; both directions are reported because the association is undirected. p-values are from the association test.
LineagePartner GO termX-scoreY-scorep(X)p(Y)Sampling consensusLineage consensus
BONETranscription pausing by RNA polymerase II →+0.202+1.096<.001<.001314
LUNG_SCLCCellular response to nicotine →+0.199+0.976<.001<.001314
BONERegulation of attachment of mitotic spindle microtubules to kinetochore →+0.212+1.243.001<.001313
BONENegative regulation of calcium ion export across plasma membrane →+0.085+1.040<.001<.001312
BONERegulation of metaphase plate congression →+0.135+0.845.001<.001312
BONEPositive regulation of attachment of mitotic spindle microtubules to kinetochore →+0.234+1.222.002.002312
Each partner links to its Q-omics profile. Showing the 6 strongest of 4,121 associations by consensus.

Transcription pausing by RNA polymerase II by MAP3K11 expression — BONE

Box plot of Transcription pausing by RNA polymerase II in MAP3K11-low vs MAP3K11-high samples in BONE.

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Exploration