Zhang_2018_Cell_174_1450

Reference

Title : Heparan Sulfate Organizes Neuronal Synapses through Neurexin Partnerships - Zhang_2018_Cell_174_1450
Author(s) : Zhang P , Lu H , Peixoto RT , Pines MK , Ge Y , Oku S , Siddiqui TJ , Xie Y , Wu W , Archer-Hartmann S , Yoshida K , Tanaka KF , Aricescu AR , Azadi P , Gordon MD , Sabatini BL , Wong ROL , Craig AM
Ref : Cell , 174 :1450 , 2018
Abstract :

Synapses are fundamental units of communication in the brain. The prototypical synapse-organizing complex neurexin-neuroligin mediates synapse development and function and is central to a shared genetic risk pathway in autism and schizophrenia. Neurexin's role in synapse development is thought to be mediated purely by its protein domains, but we reveal a requirement for a rare glycan modification. Mice lacking heparan sulfate (HS) on neurexin-1 show reduced survival, as well as structural and functional deficits at central synapses. HS directly binds postsynaptic partners neuroligins and LRRTMs, revealing a dual binding mode involving intrinsic glycan and protein domains for canonical synapse-organizing complexes. Neurexin HS chains also bind novel ligands, potentially expanding the neurexin interactome to hundreds of HS-binding proteins. Because HS structure is heterogeneous, our findings indicate an additional dimension to neurexin diversity, provide a molecular basis for fine-tuning synaptic function, and open therapeutic directions targeting glycan-binding motifs critical for brain development.

PubMedSearch : Zhang_2018_Cell_174_1450
PubMedID: 30100184

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Citations formats

Zhang P, Lu H, Peixoto RT, Pines MK, Ge Y, Oku S, Siddiqui TJ, Xie Y, Wu W, Archer-Hartmann S, Yoshida K, Tanaka KF, Aricescu AR, Azadi P, Gordon MD, Sabatini BL, Wong ROL, Craig AM (2018)
Heparan Sulfate Organizes Neuronal Synapses through Neurexin Partnerships
Cell 174 :1450

Zhang P, Lu H, Peixoto RT, Pines MK, Ge Y, Oku S, Siddiqui TJ, Xie Y, Wu W, Archer-Hartmann S, Yoshida K, Tanaka KF, Aricescu AR, Azadi P, Gordon MD, Sabatini BL, Wong ROL, Craig AM (2018)
Cell 174 :1450