Abstract
Failure of apoptosis is one of the hallmarks of cancer. As an execution-phase caspase, caspase-3 plays a crucial role during apoptosis. To explore the possibility that the genetic alterations of CASP3, which encodes caspase-3, might be involved in the development of human tumors, we analyzed the entire coding region and all splice sites of human CASP3 gene for the detection of somatic mutations in a series of 944 human tumors, including 165 stomach carcinomas, 95 colon carcinomas, 76 breast carcinomas, 80 hepatocellular carcinomas, 181 non-small cell lung cancers, 45 acute leukemias, 28 multiple myelomas, 12 medulloblastomas, 15 Wilms' tumors, 12 renal cell carcinomas, 40 esophagus carcinomas, 33 urinary bladder carcinomas, 33 laryngeal carcinomas, and 129 non-Hodgkin lymphomas. Overall, we detected 14 somatic mutations of the CASP3 gene, including six missense and four silent mutations, two mutations in the introns, one mutation in the 5'-untranslated region, and one mutation in the 3'-untranslated region. The mutations were observed in four of 98 colon carcinomas (4.1%), four of 181 non-small cell lung cancers (2.2%), two of 129 non-Hodgkin lymphomas (1.6%), two of 165 stomach carcinomas (1.2%), one of 80 hepatocellular carcinomas (1.3%), and one of 28 multiple myelomas (3.6%). This is the first report on CASP3 gene mutations in human tumors; these data indicate that the CASP3 gene is occasionally mutated in human tumors.
MeSH Terms
Apoptosis
Base Sequence
Caspase 3
Caspases/genetics
Humans
Mutation
Neoplasms/genetics
Chemicals
CASP3 protein, human
Caspase 3
Caspases
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Soung Young Hwa
Department of Pathology, College of Medicine, The Catholic University of Korea, 505 Banpo-dong, Socho-gu, 137-701 Seoul, Korea.
Lee Jong Woo
Kim Su Young
Park Won Sang
Nam Suk Woo
Lee Jung Young
Yoo Nam Jin
Lee Sug Hyung
References (12)
12 references, click to expand
-
A simple, precise and economical microdissection technique for analysis of genomic DNA from archival tissue sections.
Virchows Arch. 1998 Oct;433(4):305-9
PMID: 9808431
-
Conversion of procaspase-3 to an autoactivating caspase by fusion to the caspase-2 prodomain.
J Biol Chem. 1998 Oct 9;273(41):26566-70
PMID: 9756894
-
Frameshift mutations at mononucleotide repeats in caspase-5 and other target genes in endometrial and gastrointestinal cancer of the microsatellite mutator phenotype.
Cancer Res. 1999 Jun 15;59(12 ):2995-3002
PMID: 10383166
-
Proapoptotic BAX and BAK: a requisite gateway to mitochondrial dysfunction and death.
Science. 2001 Apr 27;292(5517):727-30
PMID: 11326099
-
Alterations of Fas (Apo-1/CD95) gene in non-small cell lung cancer.
Oncogene. 1999 Jun 24;18(25):3754-60
PMID: 10391683
-
Executioner caspase-3, -6, and -7 perform distinct, non-redundant roles during the demolition phase of apoptosis.
J Biol Chem. 2001 Mar 9;276(10):7320-6
PMID: 11058599
-
Mechanisms of apoptosis.
Am J Pathol. 2000 Nov;157(5):1415-30
PMID: 11073801
-
Inactivating mutations of caspase-8 gene in colorectal carcinomas.
Gastroenterology. 2003 Sep;125(3):708-15
PMID: 12949717
-
Caspase structure, proteolytic substrates, and function during apoptotic cell death.
Cell Death Differ. 1999 Nov;6(11):1028-42
PMID: 10578171
-
Inactivating mutations of CASP10 gene in non-Hodgkin lymphomas.
Blood. 2002 Jun 1;99(11):4094-9
PMID: 12010812
-
Alteration of caspase-3 (CPP32/Yama/apopain) in wild-type MCF-7, breast cancer cells.
Oncol Rep. 1999 Jan-Feb;6(1):33-7
PMID: 9864397
-
Essential contribution of caspase 3/CPP32 to apoptosis and its associated nuclear changes.
Genes Dev. 1998 Mar 15;12(6):806-19
PMID: 9512515