Variant: rs1057519886

present in Gene: CTNNB1 present in Chromosome: 3 Position on Chromosome: 41224609 Alleles of this Variant: T/A;C;G

rs1057519886 in CTNNB1 gene and Adenocarcinoma of lung (disorder) PMID 26619011 2016 Identifying recurrent mutations in cancer reveals widespread lineage diversity and mutational specificity.

rs1057519886 in CTNNB1 gene and Adenocarcinoma of pancreas PMID 26619011 2016 Identifying recurrent mutations in cancer reveals widespread lineage diversity and mutational specificity.

rs1057519886 in CTNNB1 gene and Adenocarcinoma of prostate PMID 26619011 2016 Identifying recurrent mutations in cancer reveals widespread lineage diversity and mutational specificity.

rs1057519886 in CTNNB1 gene and Colorectal Neoplasms PMID 26619011 2016 Identifying recurrent mutations in cancer reveals widespread lineage diversity and mutational specificity.

rs1057519886 in CTNNB1 gene and Cutaneous Melanoma PMID 26619011 2016 Identifying recurrent mutations in cancer reveals widespread lineage diversity and mutational specificity.

rs1057519886 in CTNNB1 gene and Esophageal carcinoma PMID 26619011 2016 Identifying recurrent mutations in cancer reveals widespread lineage diversity and mutational specificity.

rs1057519886 in CTNNB1 gene and Gastric Adenocarcinoma PMID 26619011 2016 Identifying recurrent mutations in cancer reveals widespread lineage diversity and mutational specificity.

rs1057519886 in CTNNB1 gene and Liver carcinoma PMID 26619011 2016 Identifying recurrent mutations in cancer reveals widespread lineage diversity and mutational specificity.

rs1057519886 in CTNNB1 gene and Malignant Uterine Corpus Neoplasm PMID 26619011 2016 Identifying recurrent mutations in cancer reveals widespread lineage diversity and mutational specificity.

rs1057519886 in CTNNB1 gene and Medulloblastoma PMID 26619011 2016 Identifying recurrent mutations in cancer reveals widespread lineage diversity and mutational specificity.

rs1057519886 in CTNNB1 gene and Transitional cell carcinoma of bladder PMID 26619011 2016 Identifying recurrent mutations in cancer reveals widespread lineage diversity and mutational specificity.