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Loss of NDR1/2 kinases impairs endomembrane trafficking and autophagy leading to neurodegeneration

Autophagy is essential for neuronal development and its deregulation contributes to neurodegenerative diseases. NDR1 and NDR2 are highly conserved kinases, implicated in neuronal development, mitochondrial health and autophagy, but how they affect mammalian brain development in vivo is not known. Us...

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Autores principales: Roşianu, Flavia, Mihaylov, Simeon R, Eder, Noreen, Martiniuc, Antonie, Claxton, Suzanne, Flynn, Helen R, Jalal, Shamsinar, Domart, Marie-Charlotte, Collinson, Lucy, Skehel, Mark, Snijders, Ambrosius P, Krause, Matthias, Tooze, Sharon A, Ultanir, Sila K
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9711861/
https://www.ncbi.nlm.nih.gov/pubmed/36446521
http://dx.doi.org/10.26508/lsa.202201712
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author Roşianu, Flavia
Mihaylov, Simeon R
Eder, Noreen
Martiniuc, Antonie
Claxton, Suzanne
Flynn, Helen R
Jalal, Shamsinar
Domart, Marie-Charlotte
Collinson, Lucy
Skehel, Mark
Snijders, Ambrosius P
Krause, Matthias
Tooze, Sharon A
Ultanir, Sila K
author_facet Roşianu, Flavia
Mihaylov, Simeon R
Eder, Noreen
Martiniuc, Antonie
Claxton, Suzanne
Flynn, Helen R
Jalal, Shamsinar
Domart, Marie-Charlotte
Collinson, Lucy
Skehel, Mark
Snijders, Ambrosius P
Krause, Matthias
Tooze, Sharon A
Ultanir, Sila K
author_sort Roşianu, Flavia
collection PubMed
description Autophagy is essential for neuronal development and its deregulation contributes to neurodegenerative diseases. NDR1 and NDR2 are highly conserved kinases, implicated in neuronal development, mitochondrial health and autophagy, but how they affect mammalian brain development in vivo is not known. Using single and double Ndr1/2 knockout mouse models, we show that only dual loss of Ndr1/2 in neurons causes neurodegeneration. This phenotype was present when NDR kinases were deleted both during embryonic development, as well as in adult mice. Proteomic and phosphoproteomic comparisons between Ndr1/2 knockout and control brains revealed novel kinase substrates and indicated that endocytosis is significantly affected in the absence of NDR1/2. We validated the endocytic protein Raph1/Lpd1, as a novel NDR1/2 substrate, and showed that both NDR1/2 and Raph1 are critical for endocytosis and membrane recycling. In NDR1/2 knockout brains, we observed prominent accumulation of transferrin receptor, p62 and ubiquitinated proteins, indicative of a major impairment of protein homeostasis. Furthermore, the levels of LC3-positive autophagosomes were reduced in knockout neurons, implying that reduced autophagy efficiency mediates p62 accumulation and neurotoxicity. Mechanistically, pronounced mislocalisation of the transmembrane autophagy protein ATG9A at the neuronal periphery, impaired axonal ATG9A trafficking and increased ATG9A surface levels further confirm defects in membrane trafficking, and could underlie the impairment in autophagy. We provide novel insight into the roles of NDR1/2 kinases in maintaining neuronal health.
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spelling pubmed-97118612022-12-01 Loss of NDR1/2 kinases impairs endomembrane trafficking and autophagy leading to neurodegeneration Roşianu, Flavia Mihaylov, Simeon R Eder, Noreen Martiniuc, Antonie Claxton, Suzanne Flynn, Helen R Jalal, Shamsinar Domart, Marie-Charlotte Collinson, Lucy Skehel, Mark Snijders, Ambrosius P Krause, Matthias Tooze, Sharon A Ultanir, Sila K Life Sci Alliance Research Articles Autophagy is essential for neuronal development and its deregulation contributes to neurodegenerative diseases. NDR1 and NDR2 are highly conserved kinases, implicated in neuronal development, mitochondrial health and autophagy, but how they affect mammalian brain development in vivo is not known. Using single and double Ndr1/2 knockout mouse models, we show that only dual loss of Ndr1/2 in neurons causes neurodegeneration. This phenotype was present when NDR kinases were deleted both during embryonic development, as well as in adult mice. Proteomic and phosphoproteomic comparisons between Ndr1/2 knockout and control brains revealed novel kinase substrates and indicated that endocytosis is significantly affected in the absence of NDR1/2. We validated the endocytic protein Raph1/Lpd1, as a novel NDR1/2 substrate, and showed that both NDR1/2 and Raph1 are critical for endocytosis and membrane recycling. In NDR1/2 knockout brains, we observed prominent accumulation of transferrin receptor, p62 and ubiquitinated proteins, indicative of a major impairment of protein homeostasis. Furthermore, the levels of LC3-positive autophagosomes were reduced in knockout neurons, implying that reduced autophagy efficiency mediates p62 accumulation and neurotoxicity. Mechanistically, pronounced mislocalisation of the transmembrane autophagy protein ATG9A at the neuronal periphery, impaired axonal ATG9A trafficking and increased ATG9A surface levels further confirm defects in membrane trafficking, and could underlie the impairment in autophagy. We provide novel insight into the roles of NDR1/2 kinases in maintaining neuronal health. Life Science Alliance LLC 2022-11-29 /pmc/articles/PMC9711861/ /pubmed/36446521 http://dx.doi.org/10.26508/lsa.202201712 Text en © 2022 Roşianu et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Roşianu, Flavia
Mihaylov, Simeon R
Eder, Noreen
Martiniuc, Antonie
Claxton, Suzanne
Flynn, Helen R
Jalal, Shamsinar
Domart, Marie-Charlotte
Collinson, Lucy
Skehel, Mark
Snijders, Ambrosius P
Krause, Matthias
Tooze, Sharon A
Ultanir, Sila K
Loss of NDR1/2 kinases impairs endomembrane trafficking and autophagy leading to neurodegeneration
title Loss of NDR1/2 kinases impairs endomembrane trafficking and autophagy leading to neurodegeneration
title_full Loss of NDR1/2 kinases impairs endomembrane trafficking and autophagy leading to neurodegeneration
title_fullStr Loss of NDR1/2 kinases impairs endomembrane trafficking and autophagy leading to neurodegeneration
title_full_unstemmed Loss of NDR1/2 kinases impairs endomembrane trafficking and autophagy leading to neurodegeneration
title_short Loss of NDR1/2 kinases impairs endomembrane trafficking and autophagy leading to neurodegeneration
title_sort loss of ndr1/2 kinases impairs endomembrane trafficking and autophagy leading to neurodegeneration
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9711861/
https://www.ncbi.nlm.nih.gov/pubmed/36446521
http://dx.doi.org/10.26508/lsa.202201712
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