Aug 2026· Nature Communications· Vol 17· 0 citations· 85 references
Medicine
TL;DR
It is found that ULK3 contributes to autophagy and supports MM cell survival and calls for future development of more selective ULK3-directed therapies, calling for future development of more selective ULK3-directed therapies.
Abstract
Despite effective therapies such as proteasome inhibitors, multiple myeloma (MM) patients relapse with refractory disease. Analysis of RNA sequencing data from CD138 + MM patient cells (n = 813) across disease stages identifies an autophagy gene signature. Particularly elevated ULK3 expression is strongly associated with disease progression. Functional studies reveal that ULK3 supports MM cell survival via the ULK-ATG13-FIP200 complex. We generate small-molecule kinase inhibitors (SG3-014/MA9-060) exhibiting nanomolar potency against ULK3, with binding confirmed by co-crystallization. While exhibiting multikinase activity, pharmacologic targeting reduces MM burden in vivo, improves survival, and mitigates MM-associated bone disease. Here, we also show that MA9-060 enhances sensitivity to proteasome inhibitors in resistant MM cells, with effects confirmed ex vivo in primary patient samples, particularly those with high ULK3 expression. These findings implicate ULK3-associated autophagy in MM progression and support further evaluation of ULK3-directed kinase inhibition as a therapeutic strategy in newly diagnosed and refractory MM. Autophagy-related mechanisms in multiple myeloma (MM) remains to be understood. Here the authors find that ULK3 contributes to autophagy and supports MM cell survival, calling for future development of more selective ULK3-directed therapies.
Multiple myeloma (MM) remains largely incurable because of its complex biology and frequent disease relapse. Metabolic reprogramming is increasingly recognized as a critical contributor to MM progression. NAD (P)-dependent steroid dehydrogenase-like protein (NSDHL) has been highlighted as an unfavorable metabolism-rela...
Can Yue, Bei-Hui Huang, Lin Qi et al.· International Journal of Mol...· 0 citations
Background:
Multiple myeloma (MM) remains an incurable plasma-cell malignancy in which disease persistence is sustained not only by tumour-intrinsic oncogenic programmes but also by protective cues from the bone marrow microenvironment (BMME). In particular, cytokine-driven STAT3 signalling and CBP/p300-dependent enhan...
The ULK (Unc-51-like kinase) family, a group of serine/threonine protein kinases, plays a central regulatory role in the initiation of autophagy. Autophagy has a dual role in cancer, as it can both inhibit tumor formation and promote the survival and progression of established tumors, making targeting autophagy an attr...
Pancreatic ductal adenocarcinoma (PDAC) is dependent on mutant KRAS and elevated autophagy for growth. Previously, we and others demonstrated that pharmacological inhibition of the KRAS ERK-MAPK pathway caused increased autophagic flux. Targeting this increased autophagic flux with inhibitors that block autophagic pr...
Seamus E. Degan, Mallory K. Roach, Jonathan M. DeLiberty et al.· Cancer Research· 0 citations
The intrinsic role of LAMP2 in BLCA progression is clarified and MRGPRX4 modulator-2 (Mm-2), a LAMP2-binding small molecule with anti-tumor activity against BLCA, is identified as a candidate LAMP2-targeting agent acting on STING signaling via drug screening and molecular docking.
Yue Lv, Qiang Yin, Wu Li et al.· Apoptosis· 0 citations
Regulation of oncogenic transcriptional programs in multiple myeloma requires the interplay of histone modifications, their writers and readers with lineage-affiliated transcription factors. The transcription factors IKZF1/3, IRF4 and MYC form an aberrant, myeloma-specific regulatory loop that drives myelomagenesis and...
P. Sabbattini, Nikolaos Trasanidis, J. Taslim et al.· Blood· 0 citations
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