Splicing factor YBX1 mediates persistence of JAK2-mutated neoplasms

Janus激酶2 造血 贾纳斯激酶 MAPK/ERK通路 RNA剪接 癌症研究 激酶 生物 信号转导 车站3 细胞生物学 干细胞 基因 遗传学 核糖核酸
作者
Ashok Kumar Jayavelu,Tina M. Schnöder,Florian Perner,Carolin Herzog,Arno Meiler,Gurumoorthy Krishnamoorthy,Nicolas Huber,Juliane Mohr,Bärbel Edelmann-Stephan,Rebecca Austin,Sabine Brandt,Francesca Palandri,Nicolas W.J. Schröder,Berend Isermann,Frank Edlich,Amit Sinha,Martin Ungelenk,Christian A. Hübner,Robert Zeiser,Susann Rahmig,Claudia Waskow,Iain Coldham,Thomas Ernst,Andreas Hochhaus,Stefanie Jilg,Philipp J. Jost,Ann Mullally,Lars Bullinger,Peter R. Mertens,Steven Lane,Matthias Mann,Florian H. Heidel
出处
期刊:Nature [Springer Nature]
卷期号:588 (7836): 157-163 被引量:92
标识
DOI:10.1038/s41586-020-2968-3
摘要

Janus kinases (JAKs) mediate responses to cytokines, hormones and growth factors in haematopoietic cells1,2. The JAK gene JAK2 is frequently mutated in the ageing haematopoietic system3,4 and in haematopoietic cancers5. JAK2 mutations constitutively activate downstream signalling and are drivers of myeloproliferative neoplasm (MPN). In clinical use, JAK inhibitors have mixed effects on the overall disease burden of JAK2-mutated clones6,7, prompting us to investigate the mechanism underlying disease persistence. Here, by in-depth phosphoproteome profiling, we identify proteins involved in mRNA processing as targets of mutant JAK2. We found that inactivation of YBX1, a post-translationally modified target of JAK2, sensitizes cells that persist despite treatment with JAK inhibitors to apoptosis and results in RNA mis-splicing, enrichment for retained introns and disruption of the transcriptional control of extracellular signal-regulated kinase (ERK) signalling. In combination with pharmacological JAK inhibition, YBX1 inactivation induces apoptosis in JAK2-dependent mouse and primary human cells, causing regression of the malignant clones in vivo, and inducing molecular remission. This identifies and validates a cell-intrinsic mechanism whereby differential protein phosphorylation causes splicing-dependent alterations of JAK2–ERK signalling and the maintenance of JAK2V617F malignant clones. Therapeutic targeting of YBX1-dependent ERK signalling in combination with JAK2 inhibition could thus eradicate cells harbouring mutations in JAK2. Inhibition of YBX1, a downstream target of the Janus kinase JAK2, sensitizes myeloproliferative neoplasm cells to JAK and could provide a means to eradicate such cells in human haematopoietic cancers.
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