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The synthetic TRPML1 agonist ML-SA1 rescues Alzheimer-related alterations of the endosomal-autophagic-lysosomal system

Abnormalities in the endosomal-autophagic-lysosomal (EAL) system are an early event in Alzheimer's disease (AD) pathogenesis. However, the mechanisms underlying these abnormalities are unclear. The transient receptor potential channel mucolipin 1(TRPML1, also known as MCOLN1), a vital endosomal...

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Autores principales: Somogyi, Aleksandra, Kirkham, Emily D., Lloyd-Evans, Emyr, Winston, Jincy, Allen, Nicholas D., Mackrill, John J., Anderson, Karen E., Hawkins, Phillip T., Gardiner, Sian E., Waller-Evans, Helen, Sims, Rebecca, Boland, Barry, O'Neill, Cora
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10112969/
https://www.ncbi.nlm.nih.gov/pubmed/36825945
http://dx.doi.org/10.1242/jcs.259875
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author Somogyi, Aleksandra
Kirkham, Emily D.
Lloyd-Evans, Emyr
Winston, Jincy
Allen, Nicholas D.
Mackrill, John J.
Anderson, Karen E.
Hawkins, Phillip T.
Gardiner, Sian E.
Waller-Evans, Helen
Sims, Rebecca
Boland, Barry
O'Neill, Cora
author_facet Somogyi, Aleksandra
Kirkham, Emily D.
Lloyd-Evans, Emyr
Winston, Jincy
Allen, Nicholas D.
Mackrill, John J.
Anderson, Karen E.
Hawkins, Phillip T.
Gardiner, Sian E.
Waller-Evans, Helen
Sims, Rebecca
Boland, Barry
O'Neill, Cora
author_sort Somogyi, Aleksandra
collection PubMed
description Abnormalities in the endosomal-autophagic-lysosomal (EAL) system are an early event in Alzheimer's disease (AD) pathogenesis. However, the mechanisms underlying these abnormalities are unclear. The transient receptor potential channel mucolipin 1(TRPML1, also known as MCOLN1), a vital endosomal-lysosomal Ca(2+) channel whose loss of function leads to neurodegeneration, has not been investigated with respect to EAL pathogenesis in late-onset AD (LOAD). Here, we identify pathological hallmarks of TRPML1 dysregulation in LOAD neurons, including increased perinuclear clustering and vacuolation of endolysosomes. We reveal that induced pluripotent stem cell (iPSC)-derived human cortical neurons expressing APOE ε4, the strongest genetic risk factor for LOAD, have significantly diminished TRPML1-induced endolysosomal Ca(2+) release. Furthermore, we found that blocking TRPML1 function in primary neurons by depleting the TRPML1 agonist PI(3,5)P(2) via PIKfyve inhibition, recreated multiple features of EAL neuropathology evident in LOAD. This included increased endolysosomal Ca(2+) content, enlargement and perinuclear clustering of endolysosomes, autophagic vesicle accumulation and early endosomal enlargement. Strikingly, these AD-like neuronal EAL defects were rescued by TRPML1 reactivation using its synthetic agonist ML-SA1. These findings implicate defects in TRPML1 in LOAD EAL pathogenesis and present TRPML1 as a potential therapeutic target.
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spelling pubmed-101129692023-04-19 The synthetic TRPML1 agonist ML-SA1 rescues Alzheimer-related alterations of the endosomal-autophagic-lysosomal system Somogyi, Aleksandra Kirkham, Emily D. Lloyd-Evans, Emyr Winston, Jincy Allen, Nicholas D. Mackrill, John J. Anderson, Karen E. Hawkins, Phillip T. Gardiner, Sian E. Waller-Evans, Helen Sims, Rebecca Boland, Barry O'Neill, Cora J Cell Sci Research Article Abnormalities in the endosomal-autophagic-lysosomal (EAL) system are an early event in Alzheimer's disease (AD) pathogenesis. However, the mechanisms underlying these abnormalities are unclear. The transient receptor potential channel mucolipin 1(TRPML1, also known as MCOLN1), a vital endosomal-lysosomal Ca(2+) channel whose loss of function leads to neurodegeneration, has not been investigated with respect to EAL pathogenesis in late-onset AD (LOAD). Here, we identify pathological hallmarks of TRPML1 dysregulation in LOAD neurons, including increased perinuclear clustering and vacuolation of endolysosomes. We reveal that induced pluripotent stem cell (iPSC)-derived human cortical neurons expressing APOE ε4, the strongest genetic risk factor for LOAD, have significantly diminished TRPML1-induced endolysosomal Ca(2+) release. Furthermore, we found that blocking TRPML1 function in primary neurons by depleting the TRPML1 agonist PI(3,5)P(2) via PIKfyve inhibition, recreated multiple features of EAL neuropathology evident in LOAD. This included increased endolysosomal Ca(2+) content, enlargement and perinuclear clustering of endolysosomes, autophagic vesicle accumulation and early endosomal enlargement. Strikingly, these AD-like neuronal EAL defects were rescued by TRPML1 reactivation using its synthetic agonist ML-SA1. These findings implicate defects in TRPML1 in LOAD EAL pathogenesis and present TRPML1 as a potential therapeutic target. The Company of Biologists Ltd 2023-03-21 /pmc/articles/PMC10112969/ /pubmed/36825945 http://dx.doi.org/10.1242/jcs.259875 Text en © 2023. Published by The Company of Biologists Ltd https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Somogyi, Aleksandra
Kirkham, Emily D.
Lloyd-Evans, Emyr
Winston, Jincy
Allen, Nicholas D.
Mackrill, John J.
Anderson, Karen E.
Hawkins, Phillip T.
Gardiner, Sian E.
Waller-Evans, Helen
Sims, Rebecca
Boland, Barry
O'Neill, Cora
The synthetic TRPML1 agonist ML-SA1 rescues Alzheimer-related alterations of the endosomal-autophagic-lysosomal system
title The synthetic TRPML1 agonist ML-SA1 rescues Alzheimer-related alterations of the endosomal-autophagic-lysosomal system
title_full The synthetic TRPML1 agonist ML-SA1 rescues Alzheimer-related alterations of the endosomal-autophagic-lysosomal system
title_fullStr The synthetic TRPML1 agonist ML-SA1 rescues Alzheimer-related alterations of the endosomal-autophagic-lysosomal system
title_full_unstemmed The synthetic TRPML1 agonist ML-SA1 rescues Alzheimer-related alterations of the endosomal-autophagic-lysosomal system
title_short The synthetic TRPML1 agonist ML-SA1 rescues Alzheimer-related alterations of the endosomal-autophagic-lysosomal system
title_sort synthetic trpml1 agonist ml-sa1 rescues alzheimer-related alterations of the endosomal-autophagic-lysosomal system
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10112969/
https://www.ncbi.nlm.nih.gov/pubmed/36825945
http://dx.doi.org/10.1242/jcs.259875
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