HLA-DQB1

associated omics data
Gene

Q-omics provides the consensus-scored HLA-DQB1 profile across patient tissues and cancer cell-line models. HLA-DQB1 expression is associated with patient survival in 21 of 34 cancer types, with the highest sampling consensus in SKCM. Among the 18 cancer types available for tumor–normal comparison, HLA-DQB1 is differentially expressed in 11, with the highest sampling consensus in KIRC. Additionally, HLA-DQB1 RNA expression shows 17,672 significant protein co-abundance associations, with the highest sampling consensus in LSCC. Together, these results highlight SKCM, KIRC, and LSCC as cancer lineages where HLA-DQB1 shows reproducible signals across survival, tumor–normal expression, and patient cross-omics analyses.

Every result is evaluated using two consensus scores. Sampling consensus measures how consistently a finding is reproduced within a cancer lineage across different conditions. Lineage consensus measures how broadly the result is shared across cancer types, distinguishing pan-cancer signals from lineage-specific patterns.

Survival associations

This table summarizes HLA-DQB1 survival associations across molecular data types. HLA-DQB1 RNA expression shows survival associations in the most cancer types (21), followed by mutation status (2) and mass-spec protein abundance (6). The rightmost column indicates the cancer type with the highest sampling consensus for each molecular layer.
HLA-DQB1 data typeSurvival analysisLineage consensusLineage of highest sampling consensus
RNAKaplan–Meier21SKCM (124)view →
Protein (mass-spec)Kaplan–Meier6LSCC (39)view →
MutationKaplan–Meier2SKCM (18)view →
This table ranks reproducible HLA-DQB1 RNA expression–survival associations across cancer types. High HLA-DQB1 expression shows unfavorable associations in UVM and LGG, but favorable associations in SKCM, KIRC, CESC and LUAD. The SKCM Kaplan–Meier curve shows clear separation, with the low-expression group declining faster, consistent with the favorable association (log-rank p < 0.001). Together, the overview and detailed table identify SKCM as the clearest survival context for HLA-DQB1 RNA expression.
LineageMeasureSplitStageAUC1
high
AUC2
low
pSampling consensus
SKCMOSMedianAll0.4660.247<.001124view →
UVMDFSMedianAll0.3840.735.00170view →
KIRCDFSTertileII,III,IV0.8770.741.00267view →
LGGOSMedianAll0.7300.890<.00147view →
CESCOSQuartileAll0.8560.715.01442view →
LUADDFSMedianAll0.4550.258<.00136view →
Pink = unfavorable, green = favorable. all 21 lineages →

HLA-DQB1-SKCM (OS)

Kaplan–Meier survival curve for HLA-DQB1 RNA expression in SKCM: high vs low expression groups.

Explore this curve interactively →

Tumor vs Normal expression

This table summarizes HLA-DQB1 tumor–normal expression differences by data type. RNA shows broader differences across cancer types, with a lineage consensus of 11, while mass-spec protein shows differences in 4. The strongest signals are observed in KIRC for RNA and CCRCC for protein.
HLA-DQB1 data typeExpression analysisLineage consensusLineage of highest sampling consensus
RNABox plot11KIRC (12)view →
Protein (mass-spec)Box plot4CCRCC (11)view →
This table ranks reproducible tumor–normal expression differences for HLA-DQB1. A negative fold-change indicates higher expression in normal tissue than in tumor tissue. HLA-DQB1 shows lower tumor expression in LUAD and LUSC and higher tumor expression in KIRC, THCA, STAD and LIHC. The KIRC box plot shows higher HLA-DQB1 RNA expression in tumor versus normal tissue (log2 FC = +2.760, t-test p < 0.001).
LineageGenderStageFold-changepSampling consensus
KIRCMaleAll+2.760<.00112view →
LUADMaleII,III,IV−1.606<.0019view →
LUSCMaleII,III,IV−2.439<.0018view →
THCAMaleII,III,IV+2.237<.0018view →
STADFemaleAll+2.094<.0014view →
LIHCFemaleIII,IV+1.230.0064view →
Green = repressed in tumor. all 11 lineages →

HLA-DQB1-KIRC

Tumor-vs-normal expression box plot for HLA-DQB1 in KIRC.

Explore this plot interactively →

Cross-omics associations

This table shows molecular features associated with HLA-DQB1 in patient tissues and cancer cell lines. In patient samples, HLA-DQB1 shows the broadest associations at the RNA and protein expression levels, with LSCC recurring as the lineage with the largest associated feature set. In cancer cell lines, HLA-DQB1 RNA and mutation anchors are most strongly linked to RNA-expression features, especially in OESOPHAGUS, while CRISPR and shRNA rows add functional-dependency signals in BLOOD_Lymphoma and BLOOD_Leukemia.
Associated data typeStrength (# associated data)Lineage of highest associated data
RNA
Protein (mass-spec)17,672LSCC (9782)view →
RNA13,376UVM (4534)view →
Protein (mass-spec)
Protein (mass-spec)10,107LSCC (4810)view →
RNA6,733LSCC (3503)view →
Mutation
RNA78UCEC (28)view →
Infiltrating cells1COAD (1)view →
Associated data typeStrength (# associated data)Lineage of highest associated data
CRISPR
CRISPR1,598OESOPHAGUS (152)view →
RNA1,152BLOOD_Lymphoma (171)view →
RNA
RNA4,276BLOOD_Leukemia (1519)view →
Function (RNA)2,185BLOOD_Leukemia (722)view →
shRNA
shRNA2,217LUNG_NSCLC_LUAD (377)view →
RNA1,641PANCREAS (301)view →
Protein (mass-spec)
RNA397BLOOD_Lymphoma (158)view →
Function (mass-spec)380BLOOD_Lymphoma (219)view →