The dark kinase STK32A regulates hair cell planar polarity opposite of EMX2 in the developing mouse inner ear

Author:

Jia Shihai1ORCID,Ratzan Evan M23,Goodrich Ellison J1,Abrar Raisa1,Heiland Luke4,Tarchini Basile56ORCID,Deans Michael R14ORCID

Affiliation:

1. Department of Neurobiology, Spencer Fox Eccles School of Medicine at the University of Utah

2. Interdepartmental Program in Neuroscience, Spencer Fox Eccles School of Medicine at the University of Utah

3. Departments of Otolaryngology and Neurology, Boston Children’s Hospital and Harvard Medical School

4. Department of Otolaryngology, Spencer Fox Eccles School of Medicine at the University of Utah

5. The Jackson Laboratory

6. Tufts University School of Medicine

Abstract

The vestibular maculae of the inner ear contain sensory receptor hair cells that detect linear acceleration and contribute to equilibrioception to coordinate posture and ambulatory movements. These hair cells are divided between two groups, separated by a line of polarity reversal (LPR), with oppositely oriented planar-polarized stereociliary bundles that detect motion in opposite directions. The transcription factor EMX2 is known to establish this planar polarized organization in mouse by regulating the distribution of the transmembrane receptor GPR156 at hair cell boundaries in one group of cells. However, the genes regulated by EMX2 in this context were previously not known. Using mouse as a model, we have identified the serine threonine kinase STK32A as a downstream effector negatively regulated by EMX2. Stk32a is expressed in hair cells on one side of the LPR in a pattern complementary to Emx2 expression in hair cells on the opposite side. Stk32a is necessary to align the intrinsic polarity of the bundle with the core planar cell polarity (PCP) proteins in EMX2-negative regions, and is sufficient to reorient bundles when ectopically expressed in neighboring EMX2-positive regions. We demonstrate that STK32A reinforces LPR formation by regulating the apical localization of GPR156. These observations support a model in which bundle orientation is determined through separate mechanisms in hair cells on opposite sides of the maculae, with EMX2-mediated repression of Stk32a determining the final position of the LPR.

Funder

National Institutes of Health

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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