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Biology subjects

Mayau, V.

Publications and source records attributed to Mayau, V..

2 recordsLinked to original sources

The Sec61 translocon is a therapeutic vulnerability in Multiple Myeloma

Multiple Myeloma (MM) is an incurable malignancy characterized by the uncontrolled expansion of plasma cells in the bone marrow. While proteasome inhibitors like bortezomib efficiently halt MM progression, drug resistance or toxicity inevitably develop. Here, we used a recently discovered inhibitor, mycolactone, to assess the interest of targeting the Sec61 translocon in MM. In human cell lines and tumors from MM patients, mycolactone triggered pro-apoptotic endoplasmic reticulum stress responses synergizing with bortezomib for induction of MM cell death, irrespective of their resistance to proteasome inhibition. Notably, this synergy was selective of cancer cells and extended to B cell acute lymphoblastic leukemia. Sec61 blockade also caused collateral defects in MM secretion of immunoglobulins and expression of pro-survival interleukin (IL)-6 receptor and CD40, whose activation stimulates IL-6 production. Further, the mycolactone-bortezomib combination demonstrated superior therapeutic efficacy over single drug treatments in immunodeficient mice engrafted with MM cells, without inducing toxic side effects. Collectively, these findings establish Sec61 blockers as novel anti-MM agents and reveal the interest of targeting both the translocon and the proteasome in proteostasis-addicted tumors.

cancer biology

De novo synthesized polyunsaturated fatty acids operate as both host immunomodulators and nutrients for Mycobacterium tuberculosis

Successful control of Mycobacterium tuberculosis (Mtb) infection by macrophages relies on immunometabolic reprogramming, where the role of fatty acids (FAs) remains poorly understood. Recent studies unraveled Mtbs capacity to acquire saturated and monounsaturated FAs via the Mce1 importer. However, upon activation macrophages produce polyunsaturated FAs (PUFAs), mammal-specific FAs mediating the generation of key immunomodulatory eicosanoids. Here, we asked whether de novo synthesis of PUFAs is modulated in Mtb-infected macrophages and benefits host or pathogen. Quantitative lipidomics revealed that Mtb infection activates the early PUFA biosynthetic pathway for production of eicosanoids. While PUFA synthesis blockade significantly impaired the inflammatory and antimicrobial responses of infected macrophages, it had no effect on Mtb growth in vivo. Using a click-chemistry approach, we found that Mtb efficiently imports PUFAs of the {omega}6 subset via Mce1 in axenic culture, including the eicosanoid precursor arachidonic acid (AA). Notably, Mtb preferentially internalized AA over all other FAs within infected macrophages, but here Mtbs import of AA was largely Mce1-independent and correlated with elevated AA uptake by host cells. Together, these findings reveal AA as a major FA substrate for intracellular Mtb. They suggest that Mtbs hijacking of host-derived AA may counteract its stimulatory effect on anti-mycobacterial immune responses.

immunology