The radioresistance biological function of the SCF/kit signaling pathway is mediated by the zinc-finger transcription factor Slug

被引:70
作者
Pérez-Losada, J [1 ]
Sánchez-Martín, M [1 ]
Pérez-Caro, M [1 ]
Pérez-Mancera, PA [1 ]
Sánchez-García, I [1 ]
机构
[1] Univ Salamanca, Inst Biol Mol & Celular Canc, Ctr Invest Canc, CSIC, Salamanca 37007, Spain
关键词
growth factors; hematopoietic development; transcription factor; radioresistance;
D O I
10.1038/sj.onc.1206467
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Radiation-induced destruction of the hematopoietic system is the primary cause of death based on the findings that transfer of normal bone marrow cells prevents death from lethal irradiation. The stem cell factor-c-kit signaling pathway (SCF/c-kit) has been previously implicated in the hematopoietic recovery which prevents death from lethal irradiation, but the molecular mechanisms that mediate this biological effect are unknown. Since mutations on SCF, c-kit and Slug genes have a similar phenotype in mice, we examined if Slug could complement the radiosensitivity of kit-deficient mice. In this report, we show that Slug acts as a radioprotection agent as lack of Slug results in increased radiosensitivity. This effect cannot be recovered by activating SCF/c-kit in lethally irradiated Slug-deficient mice, as SCF-treated mice did not demonstrate stimulation of hematopoietic recovery leading to survival of the Slug-deficient mice. We found that we could complement the hematopoietic failure in lethally irradiated c-kit-deficient mice by transducing them with a TAT-Slug protein. We conclude that the zinc-finger transcription factor Slug is absolutely necessary for survival from lethal irradiation and identify Slug as the molecular target that mediates the radioprotection through SCF/c-kit. These results indicate that Slug may be a molecular component conferring radioresistance to cancer cells.
引用
收藏
页码:4205 / 4211
页数:7
相关论文
共 38 条
[1]   Correlation of Snail expression with histological grade and lymph node status in breast carcinomas [J].
Blanco, MJ ;
Moreno-Bueno, G ;
Sarrio, D ;
Locascio, A ;
Cano, A ;
Palacios, J ;
Nieto, MA .
ONCOGENE, 2002, 21 (20) :3241-3246
[2]   Stem cell factor and hematopoiesis [J].
Broudy, VC .
BLOOD, 1997, 90 (04) :1345-1364
[3]   THE PROTO-ONCOGENE C-KIT ENCODING A TRANSMEMBRANE TYROSINE KINASE RECEPTOR MAPS TO THE MOUSE W-LOCUS [J].
CHABOT, B ;
STEPHENSON, DA ;
CHAPMAN, VM ;
BESMER, P ;
BERNSTEIN, A .
NATURE, 1988, 335 (6185) :88-89
[4]   Mechanisms of inactivation of E-cadherin in breast carcinoma: modification of the two-hit hypothesis of tumor suppressor gene [J].
Cheng, CW ;
Wu, PE ;
Yu, JC ;
Huang, CS ;
Yue, CT ;
Wu, CW ;
Shen, CY .
ONCOGENE, 2001, 20 (29) :3814-3823
[5]   MAST-CELL GROWTH-FACTOR MAPS NEAR THE STEEL LOCUS ON MOUSE CHROMOSOME-10 AND IS DELETED IN A NUMBER OF STEEL ALLELES [J].
COPELAND, NG ;
GILBERT, DJ ;
CHO, BC ;
DONOVAN, PJ ;
JENKINS, NA ;
COSMAN, D ;
ANDERSON, D ;
LYMAN, SD ;
WILLIAMS, DE .
CELL, 1990, 63 (01) :175-183
[6]  
del Barrio MG, 2002, DEVELOPMENT, V129, P1583
[7]   STEEL FACTOR INFLUENCES THE DISTRIBUTION AND ACTIVITY OF MURINE HEMATOPOIETIC STEM-CELLS INVIVO [J].
FLEMING, WH ;
ALPERN, EJ ;
UCHIDA, N ;
IKUTA, K ;
WEISSMAN, IL .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1993, 90 (08) :3760-3764
[8]   IDENTIFICATION OF MUTATIONS IN THE CODING SEQUENCE OF THE PROTOONCOGENE C-KIT IN A HUMAN MAST-CELL LEUKEMIA-CELL LINE CAUSING LIGAND-INDEPENDENT ACTIVATION OF C-KIT PRODUCT [J].
FURITSU, T ;
TSUJIMURA, T ;
TONO, T ;
IKEDA, H ;
KITAYAMA, H ;
KOSHIMIZU, U ;
SUGAHARA, H ;
BUTTERFIELD, JH ;
ASHMAN, LK ;
KANAYAMA, Y ;
MATSUZAWA, Y ;
KITAMURA, Y ;
KANAKURA, Y .
JOURNAL OF CLINICAL INVESTIGATION, 1993, 92 (04) :1736-1744
[9]   THE DOMINANT-WHITE SPOTTING (W) LOCUS OF THE MOUSE ENCODES THE C-KIT PROTO-ONCOGENE [J].
GEISSLER, EN ;
RYAN, MA ;
HOUSMAN, DE .
CELL, 1988, 55 (01) :185-192
[10]  
Hajra KM, 2002, CANCER RES, V62, P1613