Therapeutic implications of mitochondrial stress-induced proteasome inhibitor resistance in multiple myeloma.

Sharma, Aditi; Nair, Remya; Achreja, Abhinav; Mittal, Anjali; Gupta, Pulkit; Balakrishnan, Kamakshi; Edgar, Claudia L; Animasahun, Olamide et al. · Sci Adv · 2022

basic_science · Level V

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Abstract

The connections between metabolic state and therapy resistance in multiple myeloma (MM) are poorly understood. We previously reported that electron transport chain (ETC) suppression promotes sensitivity to the BCL-2 antagonist venetoclax. Here, we show that ETC suppression promotes resistance to proteasome inhibitors (PIs). Interrogation of ETC-suppressed MM reveals integrated stress response-dependent suppression of protein translation and ubiquitination, leading to PI resistance. ETC and protein translation gene expression signatures from the CoMMpass trial are down-regulated in patients with poor outcome and relapse, corroborating our in vitro findings. ETC-suppressed MM exhibits up-regulation of the cystine-glutamate antiporter <i>SLC7A11</i>, and analysis of patient single-cell RNA-seq shows that clusters with low ETC gene expression correlate with higher <i>SLC7A11</i> expression. Furthermore, erastin or venetoclax treatment diminishes mitochondrial stress-induced PI resistance. In sum, our work demonstrates that mitochondrial stress promotes PI resistance and underscores the need for implementing combinatorial regimens in MM cognizant of mitochondrial metabolic state.

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