The neuronal transcription factor MEIS2 is a calpain-2 protease target

Author:

Müller Tanja123,Reichlmeir Marina1,Hau Ann-Christin2,Wittig Ilka4,Schulte Dorothea1ORCID

Affiliation:

1. Goethe University, Faculty of Medicine, University Hospital Frankfurt, Institute of Neurology (Edinger Institute) 1 , 60528 Frankfurt , Germany

2. Goethe University, University Hospital Frankfurt, Dr. Senckenberg Institute of Neurooncology and Institute of Neurology (Edinger Institute), Frankfurt Cancer Institute (FCI), University Cancer Center Frankfurt (UCT), MSNZ Junior Group Translational Neurooncology 2 , 60528 Frankfurt , Germany

3. Department of Cancer Research (DoCR), Luxembourg Institute of Health (LIH), Luxembourg Centre of Neuropathology (LCNP) 3 , 1445 Luxembourg , Luxembourg

4. Goethe University, Faculty of Medicine, Institute for Cardiovascular Physiology, Functional Proteomics 4 , 60590, Frankfurt , Germany

Abstract

ABSTRACT Tight control over transcription factor activity is necessary for a sensible balance between cellular proliferation and differentiation in the embryo and during tissue homeostasis by adult stem cells, but mechanistic details have remained incomplete. The homeodomain transcription factor MEIS2 is an important regulator of neurogenesis in the ventricular–subventricular zone (V-SVZ) adult stem cell niche in mice. We here identify MEIS2 as direct target of the intracellular protease calpain-2 (composed of the catalytic subunit CAPN2 and the regulatory subunit CAPNS1). Phosphorylation at conserved serine and/or threonine residues, or dimerization with PBX1, reduced the sensitivity of MEIS2 towards cleavage by calpain-2. In the adult V-SVZ, calpain-2 activity is high in stem and progenitor cells, but rapidly declines during neuronal differentiation, which is accompanied by increased stability of MEIS2 full-length protein. In accordance with this, blocking calpain-2 activity in stem and progenitor cells, or overexpression of a cleavage-insensitive form of MEIS2, increased the production of neurons, whereas overexpression of a catalytically active CAPN2 reduced it. Collectively, our results support a key role for calpain-2 in controlling the output of adult V-SVZ neural stem and progenitor cells through cleavage of the neuronal fate determinant MEIS2.

Funder

Deutsche Forschungsgemeinschaft

Goethe-Universität Frankfurt am Main

Paul and Ursula Klein Foundation

Deutsche Krebshilfe

Publisher

The Company of Biologists

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