Role of post synaptic scaffolding proteins picki and tamalin in group i matabotropic glutamate receptor trafficking
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Abstract
G-protein-coupled receptors (GPCRs) are seven transmembrane receptors that transduce
newlineinformation provided by the extracellular stimuli into intracellular signals via their coupling
newlineto G-proteins. Activation of GPCR also triggers a variety of cellular and molecular
newlinemechanisms, viz., receptor desensitization and internalization. Due to the diversity in the
newlineGPCR regulation, each GPCR is unique and an extensively studied GPCR may not provide
newlineall the details about other GPCRs. Glutamate is a major excitatory neurotransmitter in the
newlinecentral nervous system. It activates three types of receptors, viz., NMDARs, AMPARs and
newlinemetabotropic glutamate receptors (mGluRs). Among these three types of receptors, mGluRs
newlinebelong to the GPCR family. Group I mGluR family consists of mGluR1 and mGluR5. These
newlinereceptors play important roles in the brain and are believed to be involved in multiple forms
newlineof experience dependent synaptic plasticity including learning and memory. In addition,
newlinegroup I mGluRs also have been implicated in various neuropsychiatric disorders like Fragile
newlineX syndrome, autism etc. Similar to many other GPCRs, group I mGluRs have been reported
newlineto get desensitized subsequent to the ligand exposure and undergo rapid internalization.
newlineThese receptors are localized in a protein dense region at the post-synaptic membrane called
newlinepost-synaptic density (PSD). The post-synaptic density of excitatory synapses is very
newlinecomplex in composition and dynamic in nature. This region contains a large number of
newlinedifferent kinds of proteins, some of which are involved in cognitive function and have been
newlineimplicated in various psychiatric disorders. The involvement of post-synaptic density proteins
newlinein the ligand-mediated trafficking of group I mGluRs is relatively an unexplored area. The
newlineobjective of this study is to investigate the role of post-synaptic scaffolding proteins PICK1
newlineand Tamalin in the ligand-mediated trafficking of group I mGluRs and its implications in the
newlinebrain.
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