Ataxia telangiectasia (A-T) is a rare cancer-predisposing genetic disease, caused by the lack of functional ATM kinase, a major actor of the double strand brakes (DSB) DNA-damage response. A-T patients show a broad and diverse phenotype, which includes an increased rate of lymphoma and leukemia development. Fas-induced apoptosis plays a fundamental role in the homeostasis of the immune system and its defects have been associated with autoimmunity and lymphoma development. We therefore investigated the role of ATM kinase in Fas-induced apoptosis. Using A-T lymphoid cells, we could show that ATM deficiency causes resistance to Fas-induced apoptosis. A-T cells up-regulate FLIP protein levels, a well-known inhibitor of Fas-induced apoptosis. Reconstitution of ATM kinase activity was sufficient to decrease FLIP levels and to restore Fas sensitivity. Conversely, genetic and pharmacologic ATM kinase inactivation resulted in FLIP protein up-regulation and Fas resistance. Both ATM and FLIP are aberrantly regulated in Hodgkin lymphoma. Importantly, we found that reconstitution of ATM kinase activity decreases FLIP protein levels and restores Fas sensitivity in Hodgkin lymphoma-derived cells. Overall, these data identify a novel molecular mechanism through which ATM kinase may regulate the immune system homeostasis and impair lymphoma development.

Stagni, V., di Bari, M., Cursi, S., Condo', I., Cencioni, M., Testi, R., et al. (2008). ATM Kinase activity modulates Fas sensitivity through the regulation of FLIP in lymphoid cells. BLOOD, 111(2), 829-837 [10.1182/blood-2007-04-085399].

ATM Kinase activity modulates Fas sensitivity through the regulation of FLIP in lymphoid cells

CONDO', IVANO;TESTI, ROBERTO;BARILA', DANIELA
2008-01-15

Abstract

Ataxia telangiectasia (A-T) is a rare cancer-predisposing genetic disease, caused by the lack of functional ATM kinase, a major actor of the double strand brakes (DSB) DNA-damage response. A-T patients show a broad and diverse phenotype, which includes an increased rate of lymphoma and leukemia development. Fas-induced apoptosis plays a fundamental role in the homeostasis of the immune system and its defects have been associated with autoimmunity and lymphoma development. We therefore investigated the role of ATM kinase in Fas-induced apoptosis. Using A-T lymphoid cells, we could show that ATM deficiency causes resistance to Fas-induced apoptosis. A-T cells up-regulate FLIP protein levels, a well-known inhibitor of Fas-induced apoptosis. Reconstitution of ATM kinase activity was sufficient to decrease FLIP levels and to restore Fas sensitivity. Conversely, genetic and pharmacologic ATM kinase inactivation resulted in FLIP protein up-regulation and Fas resistance. Both ATM and FLIP are aberrantly regulated in Hodgkin lymphoma. Importantly, we found that reconstitution of ATM kinase activity decreases FLIP protein levels and restores Fas sensitivity in Hodgkin lymphoma-derived cells. Overall, these data identify a novel molecular mechanism through which ATM kinase may regulate the immune system homeostasis and impair lymphoma development.
15-gen-2008
Pubblicato
Rilevanza internazionale
Articolo
Sì, ma tipo non specificato
Settore MED/04 - PATOLOGIA GENERALE
Settore BIO/18 - GENETICA
English
Con Impact Factor ISI
protein-serine-threonine kinases; hodgkin disease; ataxia telangiectasia; tumor suppressor proteins; animals; CASP8 and FADD-like apoptosis regulating protein; DNA-binding proteins; humans; leukemia; cell line, tumor; DNA breaks, double-stranded; apoptosis; homeostasis; autoimmunity; cell cycle proteins; antigens, CD95; lymphocytes
Stagni, V., di Bari, M., Cursi, S., Condo', I., Cencioni, M., Testi, R., et al. (2008). ATM Kinase activity modulates Fas sensitivity through the regulation of FLIP in lymphoid cells. BLOOD, 111(2), 829-837 [10.1182/blood-2007-04-085399].
Stagni, V; di Bari, M; Cursi, S; Condo', I; Cencioni, M; Testi, R; Lerenthal, Y; Cundari, E; Barila', D
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/8804
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