Literature DB >> 33955328

Rac-maninoff and Rho-vel: The symphony of Rho-GTPase signaling at excitatory synapses.

Joseph G Duman1, Francisco A Blanco1,2, Christopher A Cronkite3,4, Qin Ru1, Kelly C Erikson1, Shalaka Mulherkar1, Ali Bin Saifullah1, Karen Firozi1, Kimberley F Tolias1,3.   

Abstract

Synaptic connections between neurons are essential for every facet of human cognition and are thus regulated with extreme precision. Rho-family GTPases, molecular switches that cycle between an active GTP-bound state and an inactive GDP-bound state, comprise a critical feature of synaptic regulation. Rho-GTPases are exquisitely controlled by an extensive suite of activators (GEFs) and inhibitors (GAPs and GDIs) and interact with many different signalling pathways to fulfill their roles in orchestrating the development, maintenance, and plasticity of excitatory synapses of the central nervous system. Among the mechanisms that control Rho-GTPase activity and signalling are cell surface receptors, GEF/GAP complexes that tightly regulate single Rho-GTPase dynamics, GEF/GAP and GEF/GEF functional complexes that coordinate multiple Rho-family GTPase activities, effector positive feedback loops, and mutual antagonism of opposing Rho-GTPase pathways. These complex regulatory mechanisms are employed by the cells of the nervous system in almost every step of development, and prominently figure into the processes of synaptic plasticity that underlie learning and memory. Finally, misregulation of Rho-GTPases plays critical roles in responses to neuronal injury, such as traumatic brain injury and neuropathic pain, and in neurodevelopmental and neurodegenerative disorders, including intellectual disability, autism spectrum disorder, schizophrenia, and Alzheimer's Disease. Thus, decoding the mechanisms of Rho-GTPase regulation and function at excitatory synapses has great potential for combatting many of the biggest current challenges in mental health.

Entities:  

Keywords:  AMPA receptor; Cdc42; LTD; LTP; NMDA receptor; Rac1; RhoA; dendritic spine

Year:  2021        PMID: 33955328     DOI: 10.1080/21541248.2021.1885264

Source DB:  PubMed          Journal:  Small GTPases        ISSN: 2154-1248


  1 in total

1.  Cerebrospinal Fluid MicroRNA Changes in Cognitively Normal Veterans With a History of Deployment-Associated Mild Traumatic Brain Injury.

Authors:  Theresa A Lusardi; Ursula S Sandau; Nikita A Sakhanenko; Sarah Catherine B Baker; Jack T Wiedrick; Jodi A Lapidus; Murray A Raskind; Ge Li; Elaine R Peskind; David J Galas; Joseph F Quinn; Julie A Saugstad
Journal:  Front Neurosci       Date:  2021-09-09       Impact factor: 4.677

  1 in total

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