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Vol. 290, Issue 3, 1384-1392, September 1999
Departments of Medicine (W.D.J., S.G.), Microbiology/Immunology
(C.R.J., S.G.), Radiation Oncology (P.D.), and Pharmacology/Toxicology
(S.G.), Medical College of Virginia, Richmond, Virginia; and Dominion
Diagnostics, Richmond, Virginia (F.A.F.)
We recently demonstrated that physiological induction of apoptosis by
cytotoxic sphingolipid messengers proceeds via activating protein-1 (AP1)-dependent and AP1-independent mechanisms in U937 human monoblastic leukemia cells. Here we examine involvement of
the stress-activated protein kinase (SAPK) cascade and AP1 in the
initiation of apoptosis in U937 cells by podophyllotoxin-derived inhibitors of topoisomerase II. Induction of apoptotic cell death and
DNA damage by treatment of U937 cells with etoposide (100 µM) was
associated with phosphorylation and activation of the c-Jun
NH2-terminal kinase (JNK1) SAPK enzymes p46 and p54-JNK2 and transient increases in expression of the transcription factor c-Jun, a primary JNK substrate. These responses were accompanied by a
modest, but sustained, recruitment of the mitogen-activated protein
kinases p42-extracellular signal receptor-activated kinase (ERK)1 and
p44-extracellular signal receptor-activated kinase 2. The capacity of
etoposide to promote double-stranded DNA degradation and cell death was
unaffected by manipulations that interfere with SAPK signaling outflow
through c-Jun/AP1, including: 1) pharmacological inhibition of AP1
activity by diferuloylmethane and 2) molecular ablation of normal c-Jun
function by the Jun dominant-negative mutant TAM-67. Cytotoxicity of
the structurally related compound teniposide was similarly unaffected.
In parallel trials, the lethal actions of ceramide (but not of
sphingosine) were markedly diminished by pretreatment with
diferuloylmethane or expression of TAM-67, confirming the effectiveness
of these interventions in suppression of SAPK/AP1-dependent apoptosis.
The involvement of AP1 in the proapoptotic actions of other inhibitors
of topoisomerase II activity was also evaluated. Induction of cell
death by the anthracyclines daunorubicin, daunorubicin, and idarubicin
was found to be insensitive to pretreatment with diferuloylmethane or
expression of TAM-67. Collectively, the present data indicate that
induction of apoptosis by etoposide and related inhibitors of
topoisomerase II is mediated through a cell death pathway that does not
require SAPK-dependent recruitment of AP1. These findings additionally
suggest that activation of the SAPK represents a consequence, rather
than an underlying cause, of etoposide-induced apoptosis in myeloid
leukemia cells.
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