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Alternative Splicing and the Intracellular Domain Mediate TM-agrin's Ability to Differentially Regulate the Density of Excitatory and Inhibitory Synapse-like Specializations in Developing CNS Neurons.

Neuroscience. 2019; 
Handara G, Kröger S.
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Gene Synthesis … 1) were generated as previously described (Porten et al, 2010) The constructs containing point mutations (TM-agrinS17A, TM-agrinS17D) were generated commercially by site-directed mutagenesis (Genscript Biotech Corporation, Piscataway, NJ, USA) … Get A Quote

摘要

Agrin is a multi-domain protein best known for its essential function during formation of the neuromuscular junction. Alternative mRNA splicing at sites named y and z in the C-terminal part of agrin regulates its interaction with a receptor complex consisting of the agrin-binding low-density lipoprotein receptor-related protein 4 (Lrp4) and the muscle-specific kinase (MuSK). Isoforms with inserts at both splice sites bind to Lrp4, activate MuSK and are synaptogenic at the neuromuscular junction. Agrin is also expressed as a transmembrane protein in the central nervous system (CNS) but its function during interneuronal synapse formation is unclear. Recently we demonstrated that transfection of a full-length cDNA... More

关键词

GABA(A) receptor; PSD-95; gephyrin; synaptogenesis; vGAT; vGluT1