A Novel Layer 4 Corticofugal Cell Type/Projection Involved in Thalamo-Cortico-Striatal Sensory Processing.


Journal

The Journal of neuroscience : the official journal of the Society for Neuroscience
ISSN: 1529-2401
Titre abrégé: J Neurosci
Pays: United States
ID NLM: 8102140

Informations de publication

Date de publication:
23 02 2022
Historique:
received: 26 08 2021
revised: 11 10 2021
accepted: 14 12 2021
pubmed: 6 1 2022
medline: 22 4 2022
entrez: 5 1 2022
Statut: ppublish

Résumé

In sensory cortices, the information flow has been thought to be processed vertically across cortical layers, with layer 4 being the major thalamo-recipient which relays thalamic signals to layer 2/3, which in turn transmits thalamic information to layer 5 and 6 to then leave the cortex to reach subcortical and cortical long-range structures. Although several exceptions to this model have been described, neurons in layer 4 are still considered to establish only local (i.e., interlaminar and short-range) connections. Here, taking advantage of anatomic, electrophysiological, and optogenetic techniques, we describe, for the first time, a long-range corticostriatal class of pyramidal neurons in layer 4 (CS-L4) of the mouse auditory cortex that receive direct thalamic inputs. The CS-L4 neurons are embedded in a feedforward inhibitory circuit involving local parvalbumin neurons and establish connections in the posterior striatum in yet another feedforward inhibitory thalamo→cortico(L4)→striatal circuit which potentially contributes in controlling control the output of striatal spiny projection neurons.

Identifiants

pubmed: 34983816
pii: JNEUROSCI.1738-21.2021
doi: 10.1523/JNEUROSCI.1738-21.2021
pmc: PMC8883864
doi:

Substances chimiques

Parvalbumins 0

Types de publication

Journal Article Research Support, N.I.H., Extramural

Langues

eng

Sous-ensembles de citation

IM

Pagination

1383-1405

Subventions

Organisme : NIMH NIH HHS
ID : R01 MH123260
Pays : United States
Organisme : NIGMS NIH HHS
ID : SC1 GM122645
Pays : United States

Informations de copyright

Copyright © 2022 the authors.

Références

J Neurophysiol. 2012 Mar;107(5):1476-88
pubmed: 22090462
Front Cell Neurosci. 2018 Mar 06;12:53
pubmed: 29559891
J Neurosci. 2019 Jan 9;39(2):271-280
pubmed: 30459227
J Neurosci. 2013 Mar 20;33(12):5326-39
pubmed: 23516297
Neuron. 2020 Jan 8;105(1):122-137.e8
pubmed: 31784285
J Neurophysiol. 2005 Sep;94(3):2019-30
pubmed: 15928054
Neuroscience. 1991;41(2-3):365-79
pubmed: 1870696
Science. 2013 Jun 28;340(6140):1591-4
pubmed: 23812718
Cold Spring Harb Perspect Biol. 2015 Aug 03;7(8):a021691
pubmed: 26238359
Front Neuroanat. 2018 Nov 08;12:91
pubmed: 30467465
J Comp Neurol. 1984 Apr 20;224(4):535-67
pubmed: 6725630
J Neurosci. 2010 Nov 3;30(44):14610-8
pubmed: 21048118
Nat Neurosci. 2015 Feb;18(2):170-81
pubmed: 25622573
Front Neuroanat. 2010 Dec 29;4:150
pubmed: 21228905
J Neurophysiol. 2002 Jan;87(1):361-84
pubmed: 11784756
Nat Neurosci. 2007 Apr;10(4):462-8
pubmed: 17334362
Elife. 2016 May 09;5:
pubmed: 27159237
Cereb Cortex. 2009 May;19(5):1008-18
pubmed: 18775844
Prog Brain Res. 1983;58:209-18
pubmed: 6138809
Cereb Cortex. 2018 Aug 1;28(8):2817-2833
pubmed: 29077796
Front Neural Circuits. 2020 Jul 23;14:45
pubmed: 32792912
J Comp Neurol. 1987 Sep 22;263(4):567-80
pubmed: 2822779
Front Neural Circuits. 2014 Mar 11;8:15
pubmed: 24653677
Annu Rev Neurosci. 2004;27:419-51
pubmed: 15217339
Cereb Cortex. 2003 Jan;13(1):83-9
pubmed: 12466219
J Neurophysiol. 2006 Dec;96(6):3194-208
pubmed: 16971682
Cereb Cortex. 2018 Apr 1;28(4):1154-1167
pubmed: 28174907
PLoS Comput Biol. 2020 Jul 27;16(7):e1008016
pubmed: 32716912
J Neurosci. 1993 Mar;13(3):1120-37
pubmed: 7680067
Proc Natl Acad Sci U S A. 2007 Oct 9;104(41):16353-8
pubmed: 17913876
Nature. 2015 May 21;521(7552):348-51
pubmed: 25731173
Nat Methods. 2012 Jun 28;9(7):676-82
pubmed: 22743772
J Neurosci. 2013 Jan 23;33(4):1498-508
pubmed: 23345224
Science. 1994 Sep 23;265(5180):1826-31
pubmed: 8091209
Cell Rep. 2020 Jan 28;30(4):1178-1194.e3
pubmed: 31995757
Brain Res Dev Brain Res. 1999 Jun 2;115(2):131-44
pubmed: 10407131
eNeuro. 2021 Mar 11;8(2):
pubmed: 33547044
Cereb Cortex. 2016 Jun;26(6):2612-25
pubmed: 25979090
J Neurosci. 2004 Oct 27;24(43):9598-611
pubmed: 15509747
J Neurosci. 1993 Nov;13(11):4908-23
pubmed: 7693897
Nat Commun. 2021 Feb 15;12(1):1040
pubmed: 33589613
Nature. 1979 Jul 12;280(5718):120-5
pubmed: 552600
J Comp Neurol. 2008 Apr 20;507(6):1879-900
pubmed: 18271026
Elife. 2017 Sep 11;6:
pubmed: 28891466
Nat Neurosci. 2013 Jun;16(6):665-7
pubmed: 23666180
Neuron. 2005 Oct 20;48(2):315-27
pubmed: 16242411
J Comp Neurol. 2000 Nov 13;427(2):302-31
pubmed: 11054695
Biol Psychiatry. 2008 Aug 1;64(3):173-4
pubmed: 18617023
J Neurophysiol. 2008 Jul;100(1):317-26
pubmed: 18436628
PLoS One. 2015 Apr 01;10(4):e0123381
pubmed: 25830919
Front Neural Circuits. 2010 Aug 26;4:100
pubmed: 21960959
Prog Brain Res. 2007;160:3-7
pubmed: 17499105
J Neurosci. 2019 Oct 23;39(43):8424-8438
pubmed: 31511429
Science. 1997 Mar 14;275(5306):1593-9
pubmed: 9054347
Exp Brain Res. 1984;57(1):177-90
pubmed: 6097471
J Neurophysiol. 1994 Jan;71(1):17-32
pubmed: 8158226
J Comp Neurol. 1985 May 22;235(4):430-47
pubmed: 3998218
Nat Rev Neurosci. 2013 Apr;14(4):278-91
pubmed: 23511908
J Neurosci. 2004 Sep 22;24(38):8289-99
pubmed: 15385612
Nat Neurosci. 2014 Jun;17(6):841-50
pubmed: 24747575
J Physiol. 1991;440:735-69
pubmed: 1666655
Nature. 2013 May 23;497(7450):482-5
pubmed: 23636333
J Comp Neurol. 1985 May 22;235(4):417-29
pubmed: 2987316
Nature. 2019 Nov;575(7781):195-202
pubmed: 31666704
Nat Commun. 2019 Jan 24;10(1):418
pubmed: 30679433

Auteurs

Alice Bertero (A)

Department of Biology, Neurosciences Institute, University of Texas at San Antonio, San Antonio, Texas 78249.

Lucia Verrillo (L)

Department of Biology, Neurosciences Institute, University of Texas at San Antonio, San Antonio, Texas 78249.

Alfonso Junior Apicella (AJ)

Department of Biology, Neurosciences Institute, University of Texas at San Antonio, San Antonio, Texas 78249 alfonso.apicella@utsa.edu.

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Classifications MeSH