NALP3 inflammasome up-regulation and CASP1 cleavage of the glucocorticoid receptor causes glucocorticoid resistance in leukemia cells
Glucocorticoids are universally used in the treatment of acute lymphoblastic leukemia (ALL), and leukemia cell resistant to glucocorticoids confers a poor prognosis. To elucidate mechanisms of glucocorticoid resistance, we determined the sensitivity to prednisolone of primary leukemia cells from 444...
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Veröffentlicht in: | Nature genetics 2015-05, Vol.47 (6), p.607-614 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Glucocorticoids are universally used in the treatment of acute lymphoblastic leukemia (ALL), and leukemia cell resistant to glucocorticoids confers a poor prognosis. To elucidate mechanisms of glucocorticoid resistance, we determined the sensitivity to prednisolone of primary leukemia cells from 444 newly diagnosed ALL patients, revealing significantly higher expression of
caspase 1 (CASP1)
and its activator
NLRP3
in glucocorticoid resistant leukemia cells, due to significantly lower somatic methylation of
CASP1
and
NLRP3
promoters. Over-expression of
CASP1
resulted in cleavage of the glucocorticoid receptor, diminished glucocorticoid-induced transcriptional response and increased glucocorticoid resistance. Knockdown or inhibition of
CASP1
significantly increased glucocorticoid receptor levels and mitigated glucocorticoid resistance in
CASP1
overexpressing ALL. Our findings establish a new mechanism by which the NLRP3/CASP1 inflammasome modulates cellular levels of the glucocorticoid receptor and diminishes cell sensitivity to glucocorticoids. The broad impact on glucocorticoid transcriptional response suggests this mechanism could also modify glucocorticoid effects in other diseases. |
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ISSN: | 1061-4036 1546-1718 |
DOI: | 10.1038/ng.3283 |