4.5 Article

Cereblon regulates NK cell cytotoxicity and migration via Rac1 activation

Journal

EUROPEAN JOURNAL OF IMMUNOLOGY
Volume 51, Issue 11, Pages 2607-2617

Publisher

WILEY
DOI: 10.1002/eji.202149269

Keywords

Cereblon; E3 ubiquitin ligase; Natural killer cells; Lenalidomide; Rac1

Categories

Funding

  1. Italian Association for Cancer Research (AIRC 5x1000) [21147]
  2. Italian Ministry for University and Research [20174T7NXL, 2017NTK4HY]
  3. Sapienza University of Rome [RM11715C353C47A9]
  4. Regione Lazio Progetto Gruppi di Ricerca [85-2017-15012 B81G18000840005]

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The protein CRBN plays a critical role in regulating NK cell functions, including cytoskeleton rearrangement, cytotoxicity, and migration. CRBN depletion leads to reduced cytotoxicity, impairment of synapse formation, and decreased migration ability in NK cells. Additionally, CRBN is involved in the activation of Rac1, a key mediator of cytoskeleton dynamics.
Rearrangement of the actin cytoskeleton is critical for cytotoxic and immunoregulatory functions as well as migration of natural killer (NK) cells. However, dynamic reorganization of actin is a complex process, which remains largely unknown. Here, we investigated the role of the protein Cereblon (CRBN), an E3 ubiquitin ligase complex co-receptor and the primary target of the immunomodulatory drugs, in NK cells. We observed that CRBN partially colocalizes with F-actin in chemokine-treated NK cells and is recruited to the immunological synapse, thus suggesting a role for this protein in cytoskeleton reorganization. Accordingly, silencing of CRBN in NK cells results in a reduced cytotoxicity that correlates with a defect in conjugate and lytic synapse formation. Moreover, CRBN depletion significantly impairs the ability of NK cells to migrate and reduces the enhancing effect of lenalidomide on NK cell migration. Finally, we provided evidence that CRBN is required for activation of the small GTPase Rac1, a critical mediator of cytoskeleton dynamics. Indeed, in CRBN-depleted NK cells, chemokine-mediated or target cell-mediated Rac1 activation is significantly reduced. Altogether our data identify a critical role for CRBN in regulating NK cell functions and suggest that this protein may mediate the stimulatory effect of lenalidomide on NK cells.

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