The Runx genes:: lineage-specific oncogenes and tumor suppressors

被引:132
作者
Cameron, ER [1 ]
Neil, JC [1 ]
机构
[1] Univ Glasgow, Sch Vet, Inst Comparat Med, Mol Oncol Lab, Glasgow G61 1QH, Lanark, Scotland
关键词
Runx; Amh1; corebinding factor; oncogene; leukemia;
D O I
10.1038/sj.onc.1207130
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
The Runx genes present a challenge to the simple binary classification of cancer genes as oncogenes or tumor suppressors. There is evidence that loss of function of two of the three mammalian Runx genes promotes cancer, but in a highly lineage-restricted manner. In human leukemias, the RUNX1 gene is involved in various chromosomal translocation events that create oncogenic fusion proteins, at least some of which appear to function as dominant-negative inhibitors of the normal gene product. Paradoxically, evidence is mounting that structurally intact Runx genes are also oncogenic when overexpressed. All the three murine genes act as targets for transcriptional activation by retroviral insertional mutagenesis, and the oncogenic potential of Runx2 has been confirmed in transgenic mice. Moreover, the RUNX1 gene is often amplified or overexpressed in cases of acute leukemia. The state of progress in elucidating the oncogenic roles of the Runx genes is the subject of this review, and we draw together recent observations in a tentative model for the effects of Runx deregulation on hematopoietic cell differentiation. We suggest that lineage-specific factors determine the sensitivity to the oncogenic effects of loss or overexpression of Runx factors.
引用
收藏
页码:4308 / 4314
页数:7
相关论文
共 88 条
[1]
The leukemic protein core binding factor β (CBFβ)-smooth-muscle myosin heavy chain sequesters CBFα2 into cytoskeletal filaments and aggregates [J].
Adya, N ;
Stacy, T ;
Speck, NA ;
Liu, PP .
MOLECULAR AND CELLULAR BIOLOGY, 1998, 18 (12) :7432-7443
[2]
ETV6/AML1 fusion by FISH in adult acute lymphoblastic leukemia [J].
Al-Obaidi, MSJ ;
Martineau, M ;
Bennett, CF ;
Franklin, IM ;
Goldstone, AH ;
Harewood, L ;
Jalali, GR ;
Prentice, HG ;
Richards, SM ;
Roberts, K ;
Harrison, CJ .
LEUKEMIA, 2002, 16 (04) :669-674
[3]
AML1 amplification in a child with acute lymphoblastic leukemia [J].
Alvarez, Y ;
Coll, MD ;
Bastida, P ;
Ortega, JJ ;
Caballín, MR .
CANCER GENETICS AND CYTOGENETICS, 2003, 140 (01) :58-61
[4]
The RUNX3 gene -: sequence, structure and regulated expression [J].
Bangsow, C ;
Rubins, N ;
Glusman, G ;
Bernstein, Y ;
Negreanu, V ;
Goldenberg, D ;
Lotem, J ;
Ben-Asher, E ;
Lancet, D ;
Levanon, D ;
Groner, Y .
GENE, 2001, 279 (02) :221-232
[5]
AML1 stimulates G1 to S progression via its transactivation domain [J].
Bernardin, F ;
Friedman, AD .
ONCOGENE, 2002, 21 (20) :3247-3252
[6]
THE MOLECULAR-GENETICS OF CANCER [J].
BISHOP, JM .
SCIENCE, 1987, 235 (4786) :305-311
[7]
Runx2:: A novel oncogenic effector revealed by in vivo complementation and retroviral tagging [J].
Blyth, K ;
Terry, A ;
Mackay, N ;
Vaillant, F ;
Bell, M ;
Cameron, ER ;
Neil, JC ;
Stewart, M .
ONCOGENE, 2001, 20 (03) :295-302
[8]
Chromosome 21 abnormalities with AMLI amplification in acute lymphoblastic leukemia [J].
Busson-Le Coniat, M ;
Khac, FN ;
Daniel, MT ;
Bernard, OA ;
Berger, R .
GENES CHROMOSOMES & CANCER, 2001, 32 (03) :244-249
[9]
The Runx genes as dominant oncogenes [J].
Cameron, ER ;
Blyth, K ;
Hanlon, L ;
Kilbey, A ;
Mackay, N ;
Stewart, M ;
Terry, A ;
Vaillant, F ;
Wotton, S ;
Neil, JC .
BLOOD CELLS MOLECULES AND DISEASES, 2003, 30 (02) :194-200
[10]
Runt and Lozenge function in Drosophila development [J].
Canon, J ;
Banerjee, U .
SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY, 2000, 11 (05) :327-336