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BRAF and KRAS mutations in prostatic adenocarcinoma

Authors
Cho N.-Y.Choi M.Kim B.-H.Cho Y.-M.Moon K.C.Kang G.H.
Issue Date
2006
Keywords
BRAF; KRAS; Prostate adenocarcinoma
Citation
International Journal of Cancer, v.119, no.8, pp 1858 - 1862
Pages
5
Indexed
SCOPUS
Journal Title
International Journal of Cancer
Volume
119
Number
8
Start Page
1858
End Page
1862
URI
https://scholarworks.korea.ac.kr/kumedicine/handle/2020.sw.kumedicine/19316
DOI
10.1002/ijc.22071
ISSN
0020-7136
1097-0215
Abstract
Constitutive activation of the kinase cascade involving RAS, RAF, MEK and ERK is common to human cancers, and mutations of KRAS and BRAF are mutually exclusive and serve as alternatives to activate the RAS/RAF/ERK signaling pathway. RAS mutations are known to occur in prostate adenocarcinomas, but little is known about BRAF mutations in these tumors. In the present study, BRAF and KRAS mutations were characterized in 206 prostate adenocarcinomas by enhanced PCR-RFLP and direct sequencing. The identified KRAS and BRAF mutations were then analyzed with respect to preoperative serum PSA levels, Gleason scores and tumor stages. Mutations in codon 600 of BRAF were identified in 21 (10.2%) of 206 prostate adenocarcinomas. KRAS mutations in codons 12 or 13 were found in 15 (7.3%) of 206 prostate adenocarcinomas. However, no tumor specimen contained both BRAF and KRAS mutations. Prostate adenocarcinomas with a BRAF mutation tended to show higher preoperative serum PSA levels, Gleason scores and tumor stages than prostate adenocarcinomas with a KRAS mutation. The results obtained show that BRAF mutations are as uncommon as KRAS mutations in prostate adenocarcinoma. Although BRAF and KRAS are members of the same RAS/ERK signaling pathway, prostate adenocarcinomas with a BRAF mutation showed clinicopathologic features that differed from those of prostate adenocarcinoma with a KRAS mutation. © 2006 Wiley-Liss, Inc.
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Guro Hospital (Department of Pathology, Guro Hospital)
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