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7
result(s) for
"Temkin, Vladislav"
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IL-1β-driven neutrophilia preserves antibacterial defense in the absence of the kinase IKKβ
by
Karin, Michael
,
Temkin, Vladislav
,
Lai, Liang-Chuan
in
631/250/127/1213
,
631/250/2504/223/1699
,
631/326/41/2533
2011
Pathways dependent on the transcription factor NF-κB provide innate immunity against microbes. Karin and colleagues show that mice lacking the kinase IKKβ have IL-1-dependent neutrophilia. Loss of IL-1 signaling restores blood cellularity but severely compromises antimicrobial defense.
Transcription factor NF-κB and its activating kinase IKKβ are associated with inflammation and are believed to be critical for innate immunity. Despite the likelihood of immune suppression, pharmacological blockade of IKKβ–NF-κB has been considered as a therapeutic strategy. However, we found neutrophilia in mice with inducible deletion of IKKβ (
Ikkβ
Δ
mice). These mice had hyperproliferative granulocyte-macrophage progenitors and pregranulocytes and a prolonged lifespan of mature neutrophils that correlated with the induction of genes encoding prosurvival molecules. Deletion of interleukin 1 receptor 1 (IL-1R1) in
Ikkβ
Δ
mice normalized blood cellularity and prevented neutrophil-driven inflammation. However,
Ikkβ
Δ
Il1r1
−/−
mice, unlike
Ikkβ
Δ
mice, were highly susceptible to bacterial infection, which indicated that signaling via IKKβ–NF-κB or IL-1R1 can maintain antimicrobial defenses in each other's absence, whereas inactivation of both pathways severely compromises innate immunity.
Journal Article
TNFα-induced macrophage death via caspase-dependent and independent pathways
by
Pagliari, Lisa
,
Temkin, Vladislav
,
Tran, Tri M
in
Biochemistry
,
Biomedical and Life Sciences
,
Biomedicine
2009
Macrophages are the principal source of TNFα, yet they are highly resistant to TNFα-mediated cell death. Previously, employing in vitro differentiated human macrophages, we showed that following the inhibition of NF-κB, TNFα-induced caspase-8 activation contributes to DNA fragmentation but is not necessary for the loss of the inner mitochondrial transmembrane potential (ΔΨm) or cell death. We here extend these observations to demonstrate that, when NF-κB is inhibited in macrophages, TNFα alters lysosomal membrane permeability (LMP). This results in the release of cathepsin B with subsequent loss of ΔΨm and caspase-8 independent cell death. Interestingly, the cytoprotective, NF-κB-dependent protein A20 was rapidly induced in macrophages treated with TNFα. Ectopic expression of A20 in macrophages preserves LMP following treatment with TNFα, and as a result, mitochondrial integrity is safeguarded and macrophages are protected from cell death. These observations demonstrate that TNFα triggers both caspase 8-dependent and -independent cell death pathways in macrophages and identify a novel mechanism by which A20 protects these cells against both pathways.
Journal Article
IL-1beta-driven neutrophilia preserves antibacterial defense in the absence of the kinase IKKbeta
by
Karin, Michael
,
Lai, Liang-chuan
,
Temkin, Vladislav
in
Bacterial diseases
,
Inactivation
,
Life span
2011
Transcription factor NF-κB and its activating kinase IKK[beta] are associated with inflammation and are believed to be critical for innate immunity. Despite the likelihood of immune suppression, pharmacological blockade of IKK[beta]-NF-κB has been considered as a therapeutic strategy. However, we found neutrophilia in mice with inducible deletion of IKK[beta] (Ikk[beta](Δ) mice). These mice had hyperproliferative granulocyte-macrophage progenitors and pregranulocytes and a prolonged lifespan of mature neutrophils that correlated with the induction of genes encoding prosurvival molecules. Deletion of interleukin 1 receptor 1 (IL-1R1) in Ikk[beta](Δ) mice normalized blood cellularity and prevented neutrophil-driven inflammation. However, Ikk[beta](Δ)Il1r1(-/-) mice, unlike Ikk[beta](Δ) mice, were highly susceptible to bacterial infection, which indicated that signaling via IKK[beta]-NF-κB or IL-1R1 can maintain antimicrobial defenses in each other's absence, whereas inactivation of both pathways severely compromises innate immunity.
Journal Article
TNFalpha-induced macrophage death via caspase-dependent and independent pathways
2009
Macrophages are the principal source of TNFα, yet they are highly resistant to TNFα-mediated cell death. Previously, employing in vitro differentiated human macrophages, we showed that following the inhibition of NF-κB, TNFα-induced caspase-8 activation contributes to DNA fragmentation but is not necessary for the loss of the inner mitochondrial transmembrane potential (ΔΨm) or cell death. We here extend these observations to demonstrate that, when NF-κB is inhibited in macrophages, TNFα alters lysosomal membrane permeability (LMP). This results in the release of cathepsin B with subsequent loss of ΔΨm and caspase-8 independent cell death. Interestingly, the cytoprotective, NF-κB-dependent protein A20 was rapidly induced in macrophages treated with TNFα. Ectopic expression of A20 in macrophages preserves LMP following treatment with TNFα, and as a result, mitochondrial integrity is safeguarded and macrophages are protected from cell death. These observations demonstrate that TNFα triggers both caspase 8-dependent and -independent cell death pathways in macrophages and identify a novel mechanism by which A20 protects these cells against both pathways.
Journal Article
TNFα-induced macrophage death via caspase-dependent and independent pathways
2009
Macrophages are the principal source of TNFα, yet they are highly resistant to TNFα-mediated cell death. Previously, employing in vitro differentiated human macrophages, we showed that following the inhibition of NF-κB, TNFα-induced caspase-8 activation contributes to DNA fragmentation but is not necessary for the loss of the inner mitochondrial transmembrane potential (∆Ψm) or cell death. We here extend these observations to demonstrate that, when NF-κB is inhibited in macrophages, TNFα alters lysosomal membrane permeability (LMP). This results in the release of cathepsin B with subsequent loss of ∆Ψm and caspase-8 independent cell death. Interestingly, the cytoprotective, NF-κB-dependent protein A20 was rapidly induced in macrophages treated with TNFα. Ectopic expression of A20 in macrophages preserves LMP following treatment with TNFα, and as a result, mitochondrial integrity is safeguarded and macrophages are protected from cell death. These observations demonstrate that TNFα triggers both caspase 8-dependent and -independent cell death pathways in macrophages and identify a novel mechanism by which A20 protects these cells against both pathways.
Journal Article
TNFalpha-induced macrophage death via caspase-dependent and independent pathways
by
Pagliari, Lisa
,
Temkin, Vladislav
,
Tran, Tri M
in
Apoptosis - drug effects
,
Apoptosis - physiology
,
Caspase 8 - metabolism
2009
Macrophages are the principal source of TNFalpha, yet they are highly resistant to TNFalpha-mediated cell death. Previously, employing in vitro differentiated human macrophages, we showed that following the inhibition of NF-kappaB, TNFalpha-induced caspase-8 activation contributes to DNA fragmentation but is not necessary for the loss of the inner mitochondrial transmembrane potential (DeltaPsim) or cell death. We here extend these observations to demonstrate that, when NF-kappaB is inhibited in macrophages, TNFalpha alters lysosomal membrane permeability (LMP). This results in the release of cathepsin B with subsequent loss of DeltaPsim and caspase-8 independent cell death. Interestingly, the cytoprotective, NF-kappaB-dependent protein A20 was rapidly induced in macrophages treated with TNFalpha. Ectopic expression of A20 in macrophages preserves LMP following treatment with TNFalpha, and as a result, mitochondrial integrity is safeguarded and macrophages are protected from cell death. These observations demonstrate that TNFalpha triggers both caspase 8-dependent and -independent cell death pathways in macrophages and identify a novel mechanism by which A20 protects these cells against both pathways.
Journal Article