SLC26A2

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

Across TCGA cell cohorts, SLC26A2 RNA expression is significantly associated with the go_rna of many other GO terms, with 4,508 significant associations in total. BLOOD_Lymphoma shows the largest number of these associations.

The most reproducible SLC26A2-associated GO terms across cancer lineages are Negative regulation of syncytium formation by plasma membrane fusion, Oxalate transport, and Nucleus organization. Each is linked with SLC26A2 in more than 9 cancer types. Because this analysis shows association rather than direction, both SLC26A2-to-partner and partner-to-SLC26A2 results are reported.

Each partner links to its own Q-omics profile. The box plot shows the strongest example, Negative regulation of syncytium formation by plasma membrane fusion grouped by SLC26A2-low versus SLC26A2-high in STOMACH.

RNA expression associated GO terms by consensus

Ranked by combined sampling and lineage consensus. X-score (SLC26A2→partner) and Y-score (partner→SLC26A2) 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
STOMACHNegative regulation of syncytium formation by plasma membrane fusion →+0.120+1.494<.001<.001310
URINARY_TRACTOxalate transport →+1.347+2.143<.001<.001310
BREASTNucleus organization →+0.082+2.294<.001<.001310
STOMACHRegulation of DNA-templated transcription initiation →+0.066+1.570<.001<.001310
STOMACHEstablishment of protein localization to organelle →+0.041+1.201<.001<.001310
BLOOD_LymphomaPositive regulation of translational initiation →+0.098+0.973<.001<.00139
Each partner links to its Q-omics profile. Showing the 6 strongest of 4,508 associations by consensus.

Negative regulation of syncytium formation by plasma membrane fusion by SLC26A2 expression — STOMACH

Box plot of Negative regulation of syncytium formation by plasma membrane fusion in SLC26A2-low vs SLC26A2-high samples in STOMACH.

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Exploration