Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Synaptic AMPA receptor composition in development, plasticity and disease
by
Wilkinson, Kevin A.
, Henley, Jeremy M.
in
631/378/2591
/ 631/378/2591/2592
/ 631/378/548/1964
/ 64/110
/ 64/60
/ 64/86
/ 9/30
/ 9/74
/ 9/97
/ Amino Acid Sequence - genetics
/ Amino acids
/ Animal Genetics and Genomics
/ Animals
/ Behavioral Sciences
/ Biological Techniques
/ Biomedicine
/ Cell receptors
/ Disease
/ Disease susceptibility
/ Genetic aspects
/ Health aspects
/ Humans
/ Kinases
/ Ligands
/ Nervous System Diseases - genetics
/ Nervous System Diseases - metabolism
/ Neural transmission
/ Neurobiology
/ Neurogenesis - physiology
/ Neuronal Plasticity - physiology
/ Neurons
/ Neurons - physiology
/ Neurosciences
/ Properties
/ Protein Subunits - genetics
/ Protein Subunits - metabolism
/ Protein Transport - physiology
/ Proteins
/ Receptors, AMPA - genetics
/ Receptors, AMPA - metabolism
/ review-article
/ Synapses - genetics
/ Synapses - metabolism
2016
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Synaptic AMPA receptor composition in development, plasticity and disease
by
Wilkinson, Kevin A.
, Henley, Jeremy M.
in
631/378/2591
/ 631/378/2591/2592
/ 631/378/548/1964
/ 64/110
/ 64/60
/ 64/86
/ 9/30
/ 9/74
/ 9/97
/ Amino Acid Sequence - genetics
/ Amino acids
/ Animal Genetics and Genomics
/ Animals
/ Behavioral Sciences
/ Biological Techniques
/ Biomedicine
/ Cell receptors
/ Disease
/ Disease susceptibility
/ Genetic aspects
/ Health aspects
/ Humans
/ Kinases
/ Ligands
/ Nervous System Diseases - genetics
/ Nervous System Diseases - metabolism
/ Neural transmission
/ Neurobiology
/ Neurogenesis - physiology
/ Neuronal Plasticity - physiology
/ Neurons
/ Neurons - physiology
/ Neurosciences
/ Properties
/ Protein Subunits - genetics
/ Protein Subunits - metabolism
/ Protein Transport - physiology
/ Proteins
/ Receptors, AMPA - genetics
/ Receptors, AMPA - metabolism
/ review-article
/ Synapses - genetics
/ Synapses - metabolism
2016
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Synaptic AMPA receptor composition in development, plasticity and disease
by
Wilkinson, Kevin A.
, Henley, Jeremy M.
in
631/378/2591
/ 631/378/2591/2592
/ 631/378/548/1964
/ 64/110
/ 64/60
/ 64/86
/ 9/30
/ 9/74
/ 9/97
/ Amino Acid Sequence - genetics
/ Amino acids
/ Animal Genetics and Genomics
/ Animals
/ Behavioral Sciences
/ Biological Techniques
/ Biomedicine
/ Cell receptors
/ Disease
/ Disease susceptibility
/ Genetic aspects
/ Health aspects
/ Humans
/ Kinases
/ Ligands
/ Nervous System Diseases - genetics
/ Nervous System Diseases - metabolism
/ Neural transmission
/ Neurobiology
/ Neurogenesis - physiology
/ Neuronal Plasticity - physiology
/ Neurons
/ Neurons - physiology
/ Neurosciences
/ Properties
/ Protein Subunits - genetics
/ Protein Subunits - metabolism
/ Protein Transport - physiology
/ Proteins
/ Receptors, AMPA - genetics
/ Receptors, AMPA - metabolism
/ review-article
/ Synapses - genetics
/ Synapses - metabolism
2016
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Synaptic AMPA receptor composition in development, plasticity and disease
Journal Article
Synaptic AMPA receptor composition in development, plasticity and disease
2016
Request Book From Autostore
and Choose the Collection Method
Overview
Key Points
AMPA receptors (AMPARs) mediate nearly all fast excitatory neurotransmission in the mammalian CNS.
AMPARs are heteromeric assemblies of four core subunits, GluA1–4, together with auxiliary subunits and a dynamically changing set of interacting proteins.
The assembly and subunit composition of AMPARs undergo activity-dependent regulation during biogenesis.
The presence or absence of the edited form of the GluA2 subunit, GluA2(R), determines whether the assembled AMPAR gates Ca
2+
.
There is a wealth of evidence suggesting that the synaptic trafficking, retention and removal of AMPARs of specific subunit combinations and that have specific biophysical properties are of paramount importance for synaptic plasticity. These AMPAR-subtype-specific events are regulated both by protein interactions and by phosphorylation events within the carboxy-terminal tails.
Recent studies reporting that the C-terminal tails are not essential for plasticity and that very few GluA1 subunits are phosphorylated have prompted a major re-evaluation of the fundamental mechanisms of AMPAR trafficking and synaptic plasticity.
Understanding the molecular details of AMPAR assembly, trafficking, recycling and degradation, and how dysfunction affects synapses, neurons and networks will provide invaluable insights into neurological and neurodegenerative disease.
AMPA receptor (AMPAR) subunit composition is thought to influence trafficking, but recent findings have challenged previously accepted models for how this might occur. In this Review, Henley and Wilkinson provide an overview of how different receptor subunits affect AMPAR assembly, trafficking and function under normal and pathological conditions.
AMPA receptors (AMPARs) are assemblies of four core subunits, GluA1–4, that mediate most fast excitatory neurotransmission. The component subunits determine the functional properties of AMPARs, and the prevailing view is that the subunit composition also determines AMPAR trafficking, which is dynamically regulated during development, synaptic plasticity and in response to neuronal stress in disease. Recently, the subunit dependence of AMPAR trafficking has been questioned, leading to a reappraisal of this field. In this Review, we discuss what is known, uncertain, conjectured and unknown about the roles of the individual subunits, and how they affect AMPAR assembly, trafficking and function under both normal and pathological conditions.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
/ 64/110
/ 64/60
/ 64/86
/ 9/30
/ 9/74
/ 9/97
/ Amino Acid Sequence - genetics
/ Animal Genetics and Genomics
/ Animals
/ Disease
/ Humans
/ Kinases
/ Ligands
/ Nervous System Diseases - genetics
/ Nervous System Diseases - metabolism
/ Neuronal Plasticity - physiology
/ Neurons
/ Protein Subunits - metabolism
/ Protein Transport - physiology
/ Proteins
This website uses cookies to ensure you get the best experience on our website.