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Publication : Intact synapse structure and function after combined knockout of PTPδ, PTPσ, and LAR.

First Author  Emperador-Melero J Year  2021
Journal  Elife Volume  10
PubMed ID  33656439 Mgi Jnum  J:307756
Mgi Id  MGI:6724616 Doi  10.7554/eLife.66638
Citation  Emperador-Melero J, et al. (2021) Intact synapse structure and function after combined knockout of PTPdelta, PTPsigma, and LAR. Elife 10:e66638
abstractText  It has long been proposed that leukocyte common antigen-related receptor protein tyrosine phosphatases (LAR-RPTPs) are cell-adhesion proteins that control synapse assembly. Their synaptic nanoscale localization, however, is not established, and synapse fine structure after knockout of the three vertebrate LAR-RPTPs (PTPdelta, PTPsigma, and LAR) has not been tested. Here, superresolution microscopy reveals that PTPdelta localizes to the synaptic cleft precisely apposed to postsynaptic scaffolds of excitatory and inhibitory synapses. We next assessed synapse structure in newly generated triple-conditional-knockout mice for PTPdelta, PTPsigma, and LAR, complementing a recent independent study of synapse function after LAR-RPTP ablation (Sclip and Sudhof, 2020). While mild effects on synaptic vesicle clustering and active zone architecture were detected, synapse numbers and their overall structure were unaffected, membrane anchoring of the active zone persisted, and vesicle docking and release were normal. Hence, despite their localization at synaptic appositions, LAR-RPTPs are dispensable for presynapse structure and function.
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