Genetic Predisposition to Familial Nonmedullary Thyroid Cancer: An Update of Molecular Findings and State-of-the-Art Studies

被引:50
作者
Bonora, Elena [1 ]
Tallini, Giovanni [2 ]
Romeo, Giovanni [1 ]
机构
[1] St Orsola Marcello Malpighi Hosp, Unit Med Genet, I-40138 Bologna, Italy
[2] Univ Bologna, Bellaria Hosp, Dipartimento Anat Patol, I-40138 Bologna, Italy
关键词
D O I
10.1155/2010/385206
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Familial thyroid cancer has become a well-recognized entity in patients with thyroid cancer originating from follicular cells, that is, nonmedullary thyroid carcinoma. The diagnosis of familial thyroid cancer provides an opportunity for early detection and possible prevention in family members. Understanding the syndromes associated with familial thyroid cancer allows clinicians to evaluate and treat patients for coexisting pathologic conditions. About five percents of patients with well-differentiated thyroid carcinoma have a familial disease. Patients with familial non-medullalry thyroid cancer have more aggressive tumors with increased rates of extrathyroid extension, lymph nodemetastases, and frequently show the phenomenon of "anticipation" (earlier age at disease onset and increased severity in successive generations). So far, four predisposition loci have been identified in relatively rare extended pedigrees, and association studies have identified multiple predisposing variants for differentiated thyroid cancer. This suggests that there is a high degree of genetic heterogeneity and that the development of this type of tumor is a multifactorial and complex process in which predisposing genetic variants interact with a number of incompletely understood environmental risk factors. Thus, the search for the causative variants is still open and will surely benefit from the new technological approaches that have been developed in recent years.
引用
收藏
页数:7
相关论文
共 49 条
[1]   Familial thyroid cancer [J].
Alsanea, O ;
Clark, OH .
CURRENT OPINION IN ONCOLOGY, 2001, 13 (01) :44-51
[2]   Phosphodiesterase 8B gene variants are associated with serum TSH levels and thyroid [J].
Arnaud-Lopez, Lisette ;
Usala, Gianluca ;
Ceresini, Graziano ;
Mitchell, Braxton D. ;
Pilia, Maria Grazia ;
Piras, Maria Grazia ;
Sestu, Natascia ;
Maschio, Andrea ;
Busonero, Fabio ;
Albai, Giuseppe ;
Dei, Mariano ;
Lai, Sandra ;
Mulas, Antonella ;
Crisponi, Laura ;
Tanaka, Toshiko ;
Bandinelli, Stefania ;
Guralnik, Jack M. ;
Loi, Angela ;
Balaci, Lenuta ;
Sole, Gabriella ;
Prinzis, Alessia ;
Mariotti, Stefano ;
Shuldiner, Alan R. ;
Cao, Antonio ;
Schlessinger, David ;
Uda, Manuela ;
Abecasis, Goncalo R. ;
Nagaraja, Ramaiah ;
Sanna, Serena ;
Naitza, Silvia .
AMERICAN JOURNAL OF HUMAN GENETICS, 2008, 82 (06) :1270-1280
[3]   Gene profiling reveals specific oncogenic mechanisms and signaling pathways in oncocytic and papillary thyroid carcinoma [J].
Baris, O ;
Mirebeau-Prunier, D ;
Savagner, F ;
Rodien, P ;
Ballester, B ;
Loriod, B ;
Granjeaud, S ;
Guyetant, S ;
Franc, B ;
Houlgatte, R ;
Reynier, P ;
Malthiery, Y .
ONCOGENE, 2005, 24 (25) :4155-4161
[4]   Transcriptional profiling reveals coordinated up-regulation of oxidative metabolism genes in thyroid oncocytic tumors [J].
Baris, O ;
Savagner, F ;
Nasser, V ;
Loriod, B ;
Granjeaud, S ;
Guyetant, S ;
Franc, B ;
Rodien, P ;
Rohmer, V ;
Bertucci, F ;
Birnbaum, D ;
Malthièry, Y ;
Reynier, P ;
Houlgatte, M .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2004, 89 (02) :994-1005
[5]   A comprehensive analysis of MNG1, TCO1, fPTC, PTEN, TSHR, and TRKA in familial nonmedullary thyroid cancer:: Confirmation of linkage to TCO1 [J].
Bevan, S ;
Pal, T ;
Greenberg, CR ;
Green, H ;
Wixey, J ;
Bignell, G ;
Narod, SA ;
Foulkes, WD ;
Stratton, MR ;
Houlston, RS .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2001, 86 (08) :3701-3704
[6]   Familial nontoxic multinodular thyroid goiter locus maps to chromosome 149 but does not account for familial nonmedullary thyroid cancer [J].
Bignell, GR ;
Canzian, F ;
Shayeghi, M ;
Stark, M ;
Shugart, YY ;
Biggs, P ;
Mangion, J ;
Hamoudi, R ;
Rosenblatt, J ;
Buu, P ;
Sun, S ;
Stoffer, SS ;
Goldgar, DE ;
Romeo, G ;
Houlston, RS ;
Narod, SA ;
Stratton, MR ;
Foulkes, WD .
AMERICAN JOURNAL OF HUMAN GENETICS, 1997, 61 (05) :1123-1130
[7]   Novel germline variants identified in the inner mitochondrial membrane transporter TIMM44 and their role in predisposition to oncocytic thyroid carcinomas [J].
Bonora, E. ;
Evangelisti, C. ;
Bonichon, F. ;
Tallini, G. ;
Romeo, G. .
BRITISH JOURNAL OF CANCER, 2006, 95 (11) :1529-1536
[8]   Defective oxidative phosphorylation in thyroid oncocytic carcinoma is associated with pathogenic mitochondrial DNA mutations affecting complexes I and III [J].
Bonora, Elena ;
Porcelli, Anna Maria ;
Gasparre, Giuseppe ;
Biondi, Annalisa ;
Ghelli, Anna ;
Carelli, Valerio ;
Baracca, Alessandra ;
Tallini, Giovanni ;
Martinuzzi, Andrea ;
Lenaz, Giorgio ;
Rugolo, Michela ;
Romeo, Giovanni .
CANCER RESEARCH, 2006, 66 (12) :6087-6096
[9]   The changing incidence and spectrum of thyroid carcinoma in Tasmania (1978-1998) during a transition from iodine sufficiency to iodine deficiency [J].
Burgess, JR ;
Dwyer, T ;
McArdle, K ;
Tucker, P ;
Shugg, D .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2000, 85 (04) :1513-1517
[10]   Two families with an autosomal dominant inheritance pattern for papillary carcinoma of the thyroid [J].
Burgess, JR ;
Duffield, A ;
Wilkinson, SJ ;
Ware, R ;
Greenaway, TM ;
Percival, J ;
Hoffman, L .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1997, 82 (02) :345-348