4.6 Article

Acute RhoA/Rho Kinase Inhibition Is Sufficient to Restore Phagocytic Capacity to Retinal Pigment Epithelium Lacking the Engulfment Receptor MerTK

Journal

CELLS
Volume 10, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/cells10081927

Keywords

F-actin; MerTK; phagocytosis; TAM receptors; retinal pigment epithelium; RhoA; ROCK

Categories

Funding

  1. National Institutes of Health [R01-EY026215]
  2. Kim B. and Stephen E. Bepler Professorship in Biology

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The diurnal phagocytosis of spent photoreceptor outer segment fragments by retinal pigment epithelial cells is essential for visual function. Formation of phagocytic cups beneath surface-tethered POS requires the signaling of MerTK and activation of Rac1, with RhoA pathway inactivation playing a crucial role in the phagocytic process. Ultimately, manipulating RhoA pathway can restore phagocytic capacity to MerTK-deficient RPE.
The diurnal phagocytosis of spent photoreceptor outer segment fragments (POS) by retinal pigment epithelial (RPE) cells is essential for visual function. POS internalization by RPE cells requires the assembly of F-actin phagocytic cups beneath surface-tethered POS and Mer tyrosine kinase (MerTK) signaling. The activation of the Rho family GTPase Rac1 is necessary for phagocytic cup formation, and Rac1 is activated normally in MerTK-deficient RPE. We show here that mutant RPE lacking MerTK and wild-type RPE deprived of MerTK ligand both fail to form phagocytic cups regardless of Rac1 activation. However, in wild-type RPE in vivo, a decrease in RhoA activity coincides with the daily phagocytosis burst, while RhoA activity in MerTK-deficient RPE is constant. Elevating RhoA activity blocks phagocytic cup formation and phagocytosis by wild-type RPE. Conversely, inhibiting RhoA effector Rho kinases (ROCKs) rescues both F-actin assembly and POS internalization of primary RPE if MerTK or its ligand are lacking. Most strikingly, acute ROCK inhibition is sufficient to induce the formation and acidification of endogenous POS phagosomes by MerTK-deficient RPE ex vivo. Altogether, RhoA pathway inactivation is a necessary and sufficient downstream effect of MerTK phagocytic signaling such that the acute manipulation of cytosolic ROCK activity suffices to restore phagocytic capacity to MerTK-deficient RPE.

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