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Age-dependent instability of mature neuronal fate in induced neurons from Alzheimer’s patients

Sporadic Alzheimer’s disease (AD) exclusively affects elderly people. Using direct conversion of AD patient fibroblasts into induced neurons (iNs), we generated an age-equivalent neuronal model. AD patient-derived iNs exhibit strong neuronal transcriptome signatures characterized by downregulation o...

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Autores principales: Mertens, Jerome, Herdy, Joseph R., Traxler, Larissa, Schafer, Simon T., Schlachetzki, Johannes C.M., Böhnke, Lena, Reid, Dylan A., Lee, Hyungjun, Zangwill, Dina, Fernandes, Diana P., Agarwal, Ravi K., Lucciola, Raffaella, Zhou-Yang, Lucia, Karbacher, Lukas, Edenhofer, Frank, Stern, Shani, Horvath, Steve, Paquola, Apua C.M., Glass, Christopher K., Yuan, Shauna H., Ku, Manching, Szücs, Attila, Goldstein, Lawrence S.B., Galasko, Douglas, Gage, Fred H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8423435/
https://www.ncbi.nlm.nih.gov/pubmed/33910058
http://dx.doi.org/10.1016/j.stem.2021.04.004
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author Mertens, Jerome
Herdy, Joseph R.
Traxler, Larissa
Schafer, Simon T.
Schlachetzki, Johannes C.M.
Böhnke, Lena
Reid, Dylan A.
Lee, Hyungjun
Zangwill, Dina
Fernandes, Diana P.
Agarwal, Ravi K.
Lucciola, Raffaella
Zhou-Yang, Lucia
Karbacher, Lukas
Edenhofer, Frank
Stern, Shani
Horvath, Steve
Paquola, Apua C.M.
Glass, Christopher K.
Yuan, Shauna H.
Ku, Manching
Szücs, Attila
Goldstein, Lawrence S.B.
Galasko, Douglas
Gage, Fred H.
author_facet Mertens, Jerome
Herdy, Joseph R.
Traxler, Larissa
Schafer, Simon T.
Schlachetzki, Johannes C.M.
Böhnke, Lena
Reid, Dylan A.
Lee, Hyungjun
Zangwill, Dina
Fernandes, Diana P.
Agarwal, Ravi K.
Lucciola, Raffaella
Zhou-Yang, Lucia
Karbacher, Lukas
Edenhofer, Frank
Stern, Shani
Horvath, Steve
Paquola, Apua C.M.
Glass, Christopher K.
Yuan, Shauna H.
Ku, Manching
Szücs, Attila
Goldstein, Lawrence S.B.
Galasko, Douglas
Gage, Fred H.
author_sort Mertens, Jerome
collection PubMed
description Sporadic Alzheimer’s disease (AD) exclusively affects elderly people. Using direct conversion of AD patient fibroblasts into induced neurons (iNs), we generated an age-equivalent neuronal model. AD patient-derived iNs exhibit strong neuronal transcriptome signatures characterized by downregulation of mature neuronal properties and upregulation of immature and progenitor-like signaling pathways. Mapping iNs to longitudinal neuronal differentiation trajectory data demonstrated that AD iNs reflect a hypo-mature neuronal identity characterized by markers of stress, cell cycle, and de-differentiation. Epigenetic landscape profiling revealed an underlying aberrant neuronal state that shares similarities with malignant transformation and age-dependent epigenetic erosion. To probe for the involvement of aging, we generated rejuvenated iPSC-derived neurons that showed no significant disease-related transcriptome signatures, a feature that is consistent with epigenetic clock and brain ontogenesis mapping, which indicate that fibroblast-derived iNs more closely reflect old adult brain stages. Our findings identify AD-related neuronal changes as age-dependent cellular programs that impair neuronal identity.
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spelling pubmed-84234352021-09-08 Age-dependent instability of mature neuronal fate in induced neurons from Alzheimer’s patients Mertens, Jerome Herdy, Joseph R. Traxler, Larissa Schafer, Simon T. Schlachetzki, Johannes C.M. Böhnke, Lena Reid, Dylan A. Lee, Hyungjun Zangwill, Dina Fernandes, Diana P. Agarwal, Ravi K. Lucciola, Raffaella Zhou-Yang, Lucia Karbacher, Lukas Edenhofer, Frank Stern, Shani Horvath, Steve Paquola, Apua C.M. Glass, Christopher K. Yuan, Shauna H. Ku, Manching Szücs, Attila Goldstein, Lawrence S.B. Galasko, Douglas Gage, Fred H. Cell Stem Cell Article Sporadic Alzheimer’s disease (AD) exclusively affects elderly people. Using direct conversion of AD patient fibroblasts into induced neurons (iNs), we generated an age-equivalent neuronal model. AD patient-derived iNs exhibit strong neuronal transcriptome signatures characterized by downregulation of mature neuronal properties and upregulation of immature and progenitor-like signaling pathways. Mapping iNs to longitudinal neuronal differentiation trajectory data demonstrated that AD iNs reflect a hypo-mature neuronal identity characterized by markers of stress, cell cycle, and de-differentiation. Epigenetic landscape profiling revealed an underlying aberrant neuronal state that shares similarities with malignant transformation and age-dependent epigenetic erosion. To probe for the involvement of aging, we generated rejuvenated iPSC-derived neurons that showed no significant disease-related transcriptome signatures, a feature that is consistent with epigenetic clock and brain ontogenesis mapping, which indicate that fibroblast-derived iNs more closely reflect old adult brain stages. Our findings identify AD-related neuronal changes as age-dependent cellular programs that impair neuronal identity. Cell Press 2021-09-02 /pmc/articles/PMC8423435/ /pubmed/33910058 http://dx.doi.org/10.1016/j.stem.2021.04.004 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Mertens, Jerome
Herdy, Joseph R.
Traxler, Larissa
Schafer, Simon T.
Schlachetzki, Johannes C.M.
Böhnke, Lena
Reid, Dylan A.
Lee, Hyungjun
Zangwill, Dina
Fernandes, Diana P.
Agarwal, Ravi K.
Lucciola, Raffaella
Zhou-Yang, Lucia
Karbacher, Lukas
Edenhofer, Frank
Stern, Shani
Horvath, Steve
Paquola, Apua C.M.
Glass, Christopher K.
Yuan, Shauna H.
Ku, Manching
Szücs, Attila
Goldstein, Lawrence S.B.
Galasko, Douglas
Gage, Fred H.
Age-dependent instability of mature neuronal fate in induced neurons from Alzheimer’s patients
title Age-dependent instability of mature neuronal fate in induced neurons from Alzheimer’s patients
title_full Age-dependent instability of mature neuronal fate in induced neurons from Alzheimer’s patients
title_fullStr Age-dependent instability of mature neuronal fate in induced neurons from Alzheimer’s patients
title_full_unstemmed Age-dependent instability of mature neuronal fate in induced neurons from Alzheimer’s patients
title_short Age-dependent instability of mature neuronal fate in induced neurons from Alzheimer’s patients
title_sort age-dependent instability of mature neuronal fate in induced neurons from alzheimer’s patients
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8423435/
https://www.ncbi.nlm.nih.gov/pubmed/33910058
http://dx.doi.org/10.1016/j.stem.2021.04.004
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