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Distinct assemblies of heterodimeric cytokine receptors govern stemness programs in leukemia.

Winnie L KanUrmi DhagatKerstin B KaufmannTimothy R HercusTracy L NeroAndy Gx ZengJohn ToubiaEmma F BarrySophie E BroughtonGuillermo A GomezBrooks A BenardMara DottoreKaren S Cheung Tung ShingHelena BoutzenSaumya E SamaraweeraKaylene J SimpsonLiqing JinGregory J GoodallC Glenn BegleyDaniel ThomasPaul G EkertDenis TvorogovRichard J D'AndreaJohn E DickMichael W ParkerAngel F Lopez
Published in: Cancer discovery (2023)
Leukemia stem cells (LSC) possess distinct self-renewal and arrested differentiation properties that are responsible for disease emergence, therapy failure and recurrence in acute myeloid leukemia (AML). Despite AML displaying extensive biological and clinical heterogeneity, LSC with high interleukin-3 receptor (IL-3R) levels are a constant yet puzzling feature as this receptor lacks tyrosine kinase activity. Here we show that the heterodimeric IL3Ra/Bc receptor assembles into hexamers and dodecamers through a unique interface in the 3D structure, where high IL3Ra/Bc ratios bias hexamer formation. Importantly, receptor stoichiometry is clinically relevant as it varies across the individual cells in the AML hierarchy, where high IL3Ra/Bc ratios in LSCs drive hexamer-mediated stemness programs and poor patient survival, whilst low ratios mediate differentiation. Our study establishes a new paradigm where alternative cytokine receptor stoichiometries differentially regulate cell fate; a signaling mechanism that may be generalizable to other transformed cellular hierarchies and of potential therapeutic significance.
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