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RNA helicase DDX3X promotes NK cell survival by supporting MCL1 expression
Eshana Mukhopadhyay1,2, Nora Lakes2,3,4, Durga Krishnamurthy2
1Development, Stem Cells, and Regenerative Medicine Graduate Program, University of Cincinnati College of Medicine, Cincinnati, OH, United States.
Abstract:
DDX3 and other DEAD-box RNA helicases regulate nuclear export, translation, splicing, and metabolism of RNA. Perturbation of Ddx3x on the mouse X-chromosome in all hematopoietic cells resulted in a loss of natural killer (NK) cells, yet whether DDX3X is important only in progenitors or within NK cells remained unexplored. Herein, we deleted Ddx3x from committed NK cells by crossing Ddx3x-floxed mice to Ncr1-iCre mice. The resulting Cre+ offspring exhibited a profound deficiency of NK cells in the spleen and bone marrow. Ncr1-iCre-mediated deletion of Ddx3x also blocked in vitro generation of NK cells. CRISPR-mediated deletion of Ddx3x or pharmacological inhibition of DDX3 helicase activity in mature mouse NK cells resulted in rapid loss of cell viability, consistent with a role for DDX3X in NK cell survival. Indeed, perturbation of DDX3X in NK cells caused a substantial decrease in protein expression levels of the prosurvival mediator MCL1 but did not affect expression of the related prosurvival proteins BCL-2 or BCL-xL. Genetic deletion of the pro-apoptotic targets of MCL1, Bak and Bax, rescued the survival of NK cells following inhibition of DDX3. Mechanistically, expression levels of Mcl1 mRNA and proteasomal degradation of MCL1 protein were independent of DDX3. Instead, DDX3 bolstered MCL1 expression by supporting de novo translation of MCL1 protein. Collectively, these findings highlight a crucial role for the RNA helicase DDX3X in maintaining the NK cell compartment by supporting efficient translation of MCL1.
Insights
The DEAD-box RNA helicase DDX3X is crucial for natural killer (NK) cell survival. It supports NK cell maintenance by enhancing the translation of the prosurvival protein MCL1.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- DEAD-box RNA helicases, including DDX3X, are vital regulators of RNA processing and metabolism.
- Previous studies showed Ddx3x perturbation in hematopoietic cells led to NK cell loss, but its specific role within NK cells was unclear.
Purpose of the Study:
- To investigate the specific role of DDX3X in the development and survival of natural killer (NK) cells.
- To elucidate the molecular mechanisms by which DDX3X influences NK cell viability.
Main Methods:
- Generated Ddx3x-deficient NK cells using Ddx3x-floxed and Ncr1-iCre mice.
- Utilized CRISPR-mediated deletion and pharmacological inhibition to study DDX3X function in mature NK cells.
- Assessed cell viability, protein expression (MCL1, BCL-2, BCL-xL), and apoptosis-related gene deletion (Bak, Bax).
Main Results:
- Deletion of Ddx3x in committed NK cells caused a significant deficiency in NK cell populations in vivo and blocked in vitro generation.
- Inhibition of DDX3X in mature NK cells led to rapid cell death, linked to decreased MCL1 protein levels.
- DDX3X supports MCL1 protein expression by promoting its de novo translation, not affecting mRNA levels or protein degradation.
Conclusions:
- DDX3X plays a critical role in maintaining the NK cell compartment.
- The RNA helicase DDX3X is essential for NK cell survival through the translational regulation of the prosurvival protein MCL1.
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