Complex formation of APP with GABAB receptors links axonal trafficking to amyloidogenic processing

The mechanisms that control the presynaptic abundance of GABAB receptors (GBRs) remains unclear. This study shows that sequence-related epitopes in APP, AJAP-1 and PIANP bind with nanomolar affinities to the N-terminal sushi-domain of presynaptic GBRs, and that selective loss of APP impaired GBR-med...

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Autores principales: Margarita C. Dinamarca, Adi Raveh, Andy Schneider, Thorsten Fritzius, Simon Früh, Pascal D. Rem, Michal Stawarski, Txomin Lalanne, Rostislav Turecek, Myeongjeong Choo, Valérie Besseyrias, Wolfgang Bildl, Detlef Bentrop, Matthias Staufenbiel, Martin Gassmann, Bernd Fakler, Jochen Schwenk, Bernhard Bettler
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Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/1122aad37c3e4affaea79ae9d7612a6d
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spelling oai:doaj.org-article:1122aad37c3e4affaea79ae9d7612a6d2021-12-02T16:57:20ZComplex formation of APP with GABAB receptors links axonal trafficking to amyloidogenic processing10.1038/s41467-019-09164-32041-1723https://doaj.org/article/1122aad37c3e4affaea79ae9d7612a6d2019-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09164-3https://doaj.org/toc/2041-1723The mechanisms that control the presynaptic abundance of GABAB receptors (GBRs) remains unclear. This study shows that sequence-related epitopes in APP, AJAP-1 and PIANP bind with nanomolar affinities to the N-terminal sushi-domain of presynaptic GBRs, and that selective loss of APP impaired GBR-mediated presynaptic inhibition and axonal GBR expressionMargarita C. DinamarcaAdi RavehAndy SchneiderThorsten FritziusSimon FrühPascal D. RemMichal StawarskiTxomin LalanneRostislav TurecekMyeongjeong ChooValérie BesseyriasWolfgang BildlDetlef BentropMatthias StaufenbielMartin GassmannBernd FaklerJochen SchwenkBernhard BettlerNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-17 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Margarita C. Dinamarca
Adi Raveh
Andy Schneider
Thorsten Fritzius
Simon Früh
Pascal D. Rem
Michal Stawarski
Txomin Lalanne
Rostislav Turecek
Myeongjeong Choo
Valérie Besseyrias
Wolfgang Bildl
Detlef Bentrop
Matthias Staufenbiel
Martin Gassmann
Bernd Fakler
Jochen Schwenk
Bernhard Bettler
Complex formation of APP with GABAB receptors links axonal trafficking to amyloidogenic processing
description The mechanisms that control the presynaptic abundance of GABAB receptors (GBRs) remains unclear. This study shows that sequence-related epitopes in APP, AJAP-1 and PIANP bind with nanomolar affinities to the N-terminal sushi-domain of presynaptic GBRs, and that selective loss of APP impaired GBR-mediated presynaptic inhibition and axonal GBR expression
format article
author Margarita C. Dinamarca
Adi Raveh
Andy Schneider
Thorsten Fritzius
Simon Früh
Pascal D. Rem
Michal Stawarski
Txomin Lalanne
Rostislav Turecek
Myeongjeong Choo
Valérie Besseyrias
Wolfgang Bildl
Detlef Bentrop
Matthias Staufenbiel
Martin Gassmann
Bernd Fakler
Jochen Schwenk
Bernhard Bettler
author_facet Margarita C. Dinamarca
Adi Raveh
Andy Schneider
Thorsten Fritzius
Simon Früh
Pascal D. Rem
Michal Stawarski
Txomin Lalanne
Rostislav Turecek
Myeongjeong Choo
Valérie Besseyrias
Wolfgang Bildl
Detlef Bentrop
Matthias Staufenbiel
Martin Gassmann
Bernd Fakler
Jochen Schwenk
Bernhard Bettler
author_sort Margarita C. Dinamarca
title Complex formation of APP with GABAB receptors links axonal trafficking to amyloidogenic processing
title_short Complex formation of APP with GABAB receptors links axonal trafficking to amyloidogenic processing
title_full Complex formation of APP with GABAB receptors links axonal trafficking to amyloidogenic processing
title_fullStr Complex formation of APP with GABAB receptors links axonal trafficking to amyloidogenic processing
title_full_unstemmed Complex formation of APP with GABAB receptors links axonal trafficking to amyloidogenic processing
title_sort complex formation of app with gabab receptors links axonal trafficking to amyloidogenic processing
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/1122aad37c3e4affaea79ae9d7612a6d
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