IBIOBA - MPSP   22718
INSTITUTO DE INVESTIGACION EN BIOMEDICINA DE BUENOS AIRES - INSTITUTO PARTNER DE LA SOCIEDAD MAX PLANCK
Unidad Ejecutora - UE
artículos
Título:
FBH1 mediates DNA double strand breakage and apoptosis in response to DNA replication stress
Autor/es:
JEONG YT, ROSSI M, CERMAK L, SARAF A, FLORENS L, WASHBURN MP, SUNG P, SCHILDKRAUT C, PAGANO M
Revista:
JOURNAL OF CELL BIOLOGY
Editorial:
ROCKEFELLER UNIV PRESS
Referencias:
Lugar: New York; Año: 2013 p. 141 - 149
ISSN:
0021-9525
Resumen:
Proper resolution of stalled replication forks is essential for genome stability. Purification of FBH1, a UvrD DNA helicase, identified a physical interaction with replication protein A (RPA), the major cellular singlestranded DNA (ssDNA)?binding protein complex. Compared with control cells, FBH1-depleted cells responded to replication stress with considerably fewer double-strand breaks (DSBs), a dramatic reduction in the activation ofATM and DNA-PK and phosphorylation of RPA2 and p53, and a significantly increased rate of survival. A minor decrease in ssDNA levels was also observed. All these phenotypes were rescued by wild-type FBH1, but not a FBH1 mutant lacking helicase activity. FBH1 depletion had no effect on other forms of genotoxic stress in which DSBs form by means that do not require ssDNA intermediates. In response to catastrophic genotoxic stress,  apoptosis prevents the persistence and propagation of DNA lesions. Our findings show that FBH1 helicase activity is required for the efficient induction of DSBs and apoptosis specifically in response to DNA replication stress.