HRK downregulation and augmented BCL-xL binding to BAK confer apoptotic protection to therapy-induced senescent melanoma cells.

Author:

Montero Joan1,Alcon Clara1ORCID,Kovatcheva Marta2ORCID,Sanchez Paula Morales1ORCID,Torres Teresa3,Puig Susana3,Samitier Josep4ORCID,Enrich Carlos1,Serrano Manuel5ORCID

Affiliation:

1. University of Barcelona

2. IFOM ETS - The AIRC Institute of Molecular Oncology

3. Hospital Clinic and Fundació Clínic per la Recerca Biomèdica

4. Institute for Bioengineering of Catalonia (IBEC), Barcelona Institute of Science and Technology (BIST)

5. Cambridge Institute of Science, Altos Labs

Abstract

Abstract

Senescent cells are commonly detected in tumors after chemo and radiotherapy, leading to a characteristic cellular phenotype that resists apoptotic cell death. In this study, we used multiple melanoma cell lines, molecular markers, and therapies to investigate the key role of the BCL-2 family proteins in the survival of senescent cells. We first used BH3 profiling to assess changes in apoptotic priming upon senescence induction. Unexpectedly, not all cell types analyzed showed a decrease in apoptotic priming, BIM was downregulated, there was variability in BAX expression and BAK remained constant or increased; therefore, there was not a clear pattern for pro-survival adaptation. Many studies have been devoted to find ways to eliminate senescent cells, leading to one of the most studied senolytic agents: navitoclax, a promiscuous BH3 mimetic that inhibits BCL-2, BCL-xL and BCL-W. While it is known the BCL-2 family of proteins is commonly upregulated in senescent cells, the complexity of the apoptotic network has not been fully explored. Interestingly, we found distinct protein expression changes always leading to a BCL-xL mediated pro-survival adaptation, as assessed by BH3 profiling. When analyzing potential therapeutic strategies, we observed a stronger senolytic activity in these melanoma cell lines when specifically targeting BCL-xL using A-1331852, navitoclax or the PROTAC BCL-xL degrader DT2216. We found that the sensitizer protein HRK was systematically downregulated when senescence was induced, leading to an increased availability of BCL-xL. Furthermore, we identified that the main apoptotic inhibition was shaped by BCL-xL and BAK binding increase that prevented mitochondrial permeabilization and apoptosis. To our knowledge, this is the first time that the molecular basis for BCL-xL anti-apoptotic dependence in senescence is described, paving the way for molecules that either prevent HRK downregulation or displace BCL-xL binding to BAK to be used as senolytics.

Publisher

Springer Science and Business Media LLC

Reference40 articles.

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