TM9SF1

protein abundance — cross-omics
Cross-omicsPROTEIN-MS → FUNCTION-RNACell-linePairwise association · TCGA cohorts

Across TCGA cell cohorts, TM9SF1 protein abundance is significantly associated with the go_rna of many other GO terms, with 1,622 significant associations in total. BONE shows the largest number of these associations.

The most reproducible TM9SF1-associated GO terms across cancer lineages are Negative regulation of response to endoplasmic reticulum stress, Negative regulation of leukocyte activation, and Defense response to bacterium. Each is linked with TM9SF1 in more than 6 cancer types. Because this analysis shows association rather than direction, both TM9SF1-to-partner and partner-to-TM9SF1 results are reported.

Each partner links to its own Q-omics profile. The box plot shows the strongest example, Negative regulation of response to endoplasmic reticulum stress grouped by TM9SF1-low versus TM9SF1-high in BONE.

protein abundance associated GO terms by consensus

Ranked by combined sampling and lineage consensus. X-score (TM9SF1→partner) and Y-score (partner→TM9SF1) 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
BONENegative regulation of response to endoplasmic reticulum stress →+0.132+1.316.009.00437
OVARYNegative regulation of leukocyte activation →+0.076+0.909<.001.00136
LIVERDefense response to bacterium →+0.130+0.810.003.00826
CNSProtein N-linked glycosylation →+0.073+1.447<.001.00935
BONENegative regulation of endoplasmic reticulum stress-induced intrinsic apoptotic signaling pathway →+0.163+1.552.008.00535
LUNG_SCLCProtein exit from endoplasmic reticulum →+0.135+1.061.007<.00126
Each partner links to its Q-omics profile. Showing the 6 strongest of 1,622 associations by consensus.

Negative regulation of response to endoplasmic reticulum stress by TM9SF1 expression — BONE

Box plot of Negative regulation of response to endoplasmic reticulum stress in TM9SF1-low vs TM9SF1-high samples in BONE.

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