Glucocorticoids rescue cell surface trafficking of R451C Neuroligin3 and enhance synapse formation

Author:

Diamanti Tamara1,Trobiani Laura2,Mautone Lorenza34ORCID,Serafini Federica1,Gioia Roberta1,Ferrucci Laura5,Lauro Clotilde5,Bianchi Sara1,Perfetto Camilla1,Guglielmo Stefano1,Sollazzo Raimondo1ORCID,Giorda Ezio6,Setini Andrea1,Ragozzino Davide5,Miranda Elena1,Comoletti Davide27,Di Angelantonio Silvia458,Cacci Emanuele1,De Jaco Antonella1ORCID

Affiliation:

1. Department of Biology and Biotechnologies “Charles Darwin” Sapienza University of Rome Rome Italy

2. School of Biological Sciences Victoria University of Wellington Wellington New Zealand

3. Department of Biochemical Sciences “A. Rossi Fanelli” Sapienza University Rome Italy

4. Center for Life Nano‐ & Neuro‐Science Fondazione Istituto Italiano di Tecnologia (IIT) Rome Italy

5. Department of Physiology and Pharmacology “V. Erspamer” Sapienza University of Rome Rome Italy

6. Ospedale Pediatrico Bambino Gesù Rome Italy

7. Child Health Institute of New Jersey Rutgers University New Brunswick New Jersey USA

8. D‐tails s.r.l. Via di Torre Rossa Rome Italy

Abstract

AbstractNeuroligins are synaptic cell adhesion proteins with a role in synaptic function, implicated in neurodevelopmental disorders. The autism spectrum disorder‐associated substitution Arg451Cys (R451C) in NLGN3 promotes a partial misfolding of the extracellular domain of the protein leading to retention in the endoplasmic reticulum (ER) and the induction of the unfolded protein response (UPR). The reduced trafficking of R451C NLGN3 to the cell surface leads to altered synaptic function and social behavior. A screening in HEK‐293 cells overexpressing NLGN3 of 2662 compounds (FDA‐approved small molecule drug library), led to the identification of several glucocorticoids such as alclometasone dipropionate, desonide, prednisolone sodium phosphate, and dexamethasone (DEX), with the ability to favor the exit of full‐length R451C NLGN3 from the ER. DEX improved the stability of R451C NLGN3 and trafficking to the cell surface, reduced the activation of the UPR, and increased the formation of artificial synapses between HEK‐293 and hippocampal primary neurons. The effect of DEX was validated on a novel model system represented by neural stem progenitor cells and differentiated neurons derived from the R451C NLGN3 knock‐in mouse, expressing the endogenous protein. This work shows a potential rescue strategy for an autism‐linked mutation affecting cell surface trafficking of a synaptic protein.

Funder

Regione Lazio

Publisher

Wiley

Subject

Cell Biology,Genetics,Molecular Biology,Biochemistry,Structural Biology

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