Journal article

A molecular insight into the dissociable regulation of associative learning and motivation by the synaptic protein neuroligin-1

J Luo, JM Tan, J Nithianantharajah

BMC Biology | BMC | Published : 2020

Abstract

BACKGROUND: In a changing environment, a challenge for the brain is to flexibly guide adaptive behavior towards survival. Complex behavior and the underlying neural computations emerge from the structural components of the brain across many levels: circuits, cells, and ultimately the signaling complex of proteins at synapses. In line with this logic, dynamic modification of synaptic strength or synaptic plasticity is widely considered the cellular level implementation for adaptive behavior such as learning and memory. Predominantly expressed at excitatory synapses, the postsynaptic cell-adhesion molecule neuroligin-1 (Nlgn1) forms trans-synaptic complexes with presynaptic neurexins. Extensiv..

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University of Melbourne Researchers

Grants

Awarded by National Health and Medical Research Council


Funding Acknowledgements

This work was supported by an Australian Research Council Future Fellowship (FT140101327) and Brain and Behavior Research Foundation (NARSAD) Young Investigator Award to J.N., Australian Postgraduate Research Training Award to J.L, a National Health and Medical Research Council Project Grant (APP1083334), and philanthropic support from One In Five Mental Health Charity.