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Proteasome activation occurs at an early, premitochondrial step of thymocyte apoptosis
T Hirsch1, B Dallaporta, N Zamzami
1Centre National de la Recherche Scientifique, Unité Propre de Recherche 420, Villejuif, France.
Abstract:
Proteasomes and mitochondrial membrane changes are involved in thymocyte apoptosis. The hierarchical relationship between protease activation and mitochondrial alterations has been elusive. Here we show that inhibition of proteasomes by two specific agents, lactacystin or MG132, prevents all manifestations of thymocyte apoptosis induced by the glucocorticoid receptor agonist dexamethasone or by the topoisomerase II inhibitor etoposide. Lactacystin and MG132 prevent the early disruption of the mitochondrial transmembrane potential (delta psi(m)), which precedes caspase activation, exposure of phosphatidylserine, and nuclear DNA fragmentation. In contrast, stabilization of the delta psi(m) using the permeability transition pore inhibitor bongkrekic acid or inhibition of caspases by N-benzyloxycarbonyl-Val-Ala-Asp-fluoromethylketone does not prevent the activation of proteasomes, as determined with the fluorogenic substrate N-succinyl-L-leucyl-L-leucyl-L-valyl-L-tyrosine-7-amido-4-methylcoumarin . Thus, proteasome activation occurs upstream from mitochondrial changes and caspase activation. Whereas the proteasome-specific agents lactacystin and MG132 truly maintain thymocyte viability, a number of protease inhibitors that inhibit nuclear DNA fragmentation (acetyl-Asp-Glu-Val-Asp-fluoromethylketone; N-Boc-Asp(OMe)-fluoromethylketone; N-tosyl-L-Phe-chloromethylketone) do not prevent the cytolysis induced by DEX or etoposide. These latter agents fail to interfere with the preapoptotic delta psi(m) disruption. Altogether, our data indicate that different proteases may be involved in the pre- or postmitochondrial phase of apoptosis. Only those protease inhibitors that interrupt the apoptotic process at the premitochondrial stage can actually preserve cell viability.
Insights
Proteasome inhibition prevents thymocyte apoptosis by blocking early mitochondrial changes. Proteasome activation occurs upstream of mitochondrial damage and caspase activation, preserving cell viability.
Area of Science:
- Cell Biology
- Biochemistry
- Immunology
Background:
- Thymocyte apoptosis involves proteasomes and mitochondrial changes.
- The relationship between protease activation and mitochondrial alterations is unclear.
Purpose of the Study:
- To elucidate the hierarchical relationship between proteasome activation and mitochondrial alterations in thymocyte apoptosis.
- To determine if proteasome inhibition can prevent apoptosis and preserve thymocyte viability.
Main Methods:
- Inhibition of proteasomes using lactacystin or MG132.
- Induction of apoptosis with dexamethasone or etoposide.
- Assessment of mitochondrial transmembrane potential (Δψm) disruption, caspase activation, phosphatidylserine exposure, and DNA fragmentation.
Main Results:
- Proteasome inhibition by lactacystin or MG132 prevented all apoptosis manifestations, including Δψm disruption.
- Proteasome activation occurred upstream of mitochondrial changes and caspase activation.
- Other protease inhibitors that did not block early Δψm disruption failed to preserve cell viability.
Conclusions:
- Proteasome activation is an early, upstream event in thymocyte apoptosis.
- Targeting proteasomes at the pre-mitochondrial stage preserves cell viability.
- Different proteases may act at distinct stages of apoptosis.