Lack of mutational events of RAS genes in sporadic thyroid cancer but high risk associated with HRAS T81C single nucleotide polymorphism (case-control study)

被引:14
作者
Khan, Mosin S. [1 ]
Pandith, Arshad A. [2 ]
ul Hussain, Mahboob [3 ]
Iqbal, Mohammad [1 ]
Khan, Nighat P. [1 ]
Wani, Khurshid A. [4 ]
Masoodi, Shariq R. [5 ]
Mudassar, Syed [1 ]
机构
[1] Sherikashmir Inst Med Sci, Dept Clin Biochem, Srinagar 190011, Kashmir, India
[2] Sherikashmir Inst Med Sci, Adv Ctr Human Genet, Srinagar 190011, Kashmir, India
[3] Univ Kashmir, Dept Biotechnol, Srinagar 190006, Kashmir, India
[4] Sherikashmir Inst Med Sci, Dept Gen Surg, Srinagar 190011, Kashmir, India
[5] Sherikashmir Inst Med Sci, Dept Endocrinol, Srinagar 190011, Kashmir, India
关键词
Papillary thyroid cancer; Kashmiri population; Restriction fragment length polymorphism; Single strand conformational polymorphism; Benign thyroid disease; H-RAS; CIGARETTE-SMOKING; BRAF MUTATIONS; HORMONE LEVELS; ONCOGENES; PAPILLARY; CARCINOMAS; ACTIVATION; PREVALENCE; RET;
D O I
10.1007/s13277-012-0577-y
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
High incidence of thyroid cancer worldwide indicates the importance of studying genetic alterations that lead to its carcinogenesis. Specific acquired RAS mutations have been found to predominate in different cancers, and HRAS T81C polymorphism has been determined to contribute the risk of various cancers, including thyroid cancer. We screened the exons 1 and 2 of RAS genes (HRAS, KRAS, and NRAS) in 60 consecutive thyroid tissue (tumor and adjacent normal) samples, and a case-control study was also conducted for HRAS T81C polymorphism in HRAS codon 27 using the polymerase chain reaction-restriction fragment length polymorphism to test the genotype distribution of 140 thyroid cancer patients in comparison with 170 cancer-free controls from a Kashmiri population. No mutation was found in any of the thyroid tumor tissue samples, but we frequently detected polymorphism at nucleotide 81 (T > C) in exon 1 of HRAS gene. In HRAS T81C SNP, frequencies of TT, TC, and CC genotypes among cases were 41.4, 38.6, and 20.0 %, while in controls genotype frequencies were 84.1, 11.7, and 4.2 %, respectively. A significant difference was observed in variant allele frequencies (TC + CC) between the cases and controls (58.6 vs. 16 %) with odds ratio = 7.4; confidence interval (CI) = 4.3-12.7 (P < 0.05). Interestingly, combined TC and CC genotype abundantly presented in follicular thyroid tumor (P < 0.05). Moreover, a significant association of the variant allele (TC + CC) was found with nonsmokers (P < 0.05). This study shows that although thyroid cancer is highly prevalent in this region, the mutational events for RAS genes do not seem to be involved. Contrary to this HRAS T81C SNP of HRAS gene moderately increases thyroid cancer risk with rare allele as a predictive marker for follicular tumors.
引用
收藏
页码:521 / 529
页数:9
相关论文
共 61 条
[1]   Correlation between genetic alterations and microscopic features, clinical manifestations, and prognostic characteristics of thyroid papillary carcinomas [J].
Adeniran, AJ ;
Zhu, ZW ;
Gandhi, M ;
Steward, DL ;
Fidler, JP ;
Giordano, TJ ;
Biddinger, PW ;
Nikiforov, YE .
AMERICAN JOURNAL OF SURGICAL PATHOLOGY, 2006, 30 (02) :216-222
[2]  
[Anonymous], 2012, THYROID, DOI DOI 10.1089/THY.2012-0207
[3]   EGFR, ERBB2, and KRAS mutations in Korean non-small cell lung cancer patients [J].
Bae, Nack Cheon ;
Chae, Myung Hwa ;
Lee, Myung Hoon ;
Kim, Kyung Mee ;
Lee, Eung Bae ;
Kim, Chang Ho ;
Park, Tae-In ;
Han, Sung Beom ;
Jheon, Sanghoon ;
Jung, Tae Hoon ;
Park, Jae Yong .
CANCER GENETICS AND CYTOGENETICS, 2007, 173 (02) :107-113
[4]   THE ANTIESTROGENIC EFFECT OF CIGARETTE-SMOKING IN WOMEN [J].
BARON, JA ;
LAVECCHIA, C ;
LEVI, F .
AMERICAN JOURNAL OF OBSTETRICS AND GYNECOLOGY, 1990, 162 (02) :502-514
[5]   N-ras mutation in poorly differentiated thyroid carcinomas:: Correlation with bone metastases and inverse correlation to thyroglobulin expression [J].
Basolo, F ;
Pisaturo, F ;
Pollina, LE ;
Fontanini, G ;
Elisei, R ;
Molinaro, E ;
Iacconi, P ;
Miccoli, P ;
Pacini, F .
THYROID, 2000, 10 (01) :19-23
[6]   GENETIC MECHANISMS IN TUMOR INITIATION AND PROGRESSION .10. THE RAS GENE FAMILY AND HUMAN CARCINOGENESIS [J].
BOS, JL .
MUTATION RESEARCH, 1988, 195 (03) :255-271
[7]  
BOS JL, 1989, CANCER RES, V49, P4682
[8]   DETECTION OF P53 MUTATIONS BY SINGLE-STRAND CONFORMATION POLYMORPHISMS (SSCP) GEL-ELECTROPHORESIS - A COMPARATIVE-STUDY OF RADIOACTIVE AND NONRADIOACTIVE SILVER-STAINED SSCP ANALYSIS [J].
BOSARI, S ;
MARCHETTI, A ;
BUTTITTA, F ;
GRAZIANI, D ;
BORSANI, G ;
LODA, M ;
BEVILACQUA, G ;
COGGI, G .
DIAGNOSTIC MOLECULAR PATHOLOGY, 1995, 4 (04) :249-255
[9]   Variability of Ha-ras (codon 12) proto-oncogene mutations in diverse thyroid cancers [J].
Bouras, M ;
Bertholon, J ;
Dutrieux-Berger, N ;
Parvaz, P ;
Paulin, C ;
Revol, A .
EUROPEAN JOURNAL OF ENDOCRINOLOGY, 1998, 139 (02) :209-216
[10]   COMPLETE NUCLEOTIDE-SEQUENCES OF THE T24 HUMAN BLADDER-CARCINOMA ONCOGENE AND ITS NORMAL HOMOLOG [J].
CAPON, DJ ;
CHEN, EY ;
LEVINSON, AD ;
SEEBURG, PH ;
GOEDDEL, DV .
NATURE, 1983, 302 (5903) :33-37