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Dissecting transcriptomic signatures of neuronal differentiation and maturation using iPSCs

Human induced pluripotent stem cells (hiPSCs) are a powerful model of neural differentiation and maturation. We present a hiPSC transcriptomics resource on corticogenesis from 5 iPSC donor and 13 subclonal lines across 9 time points over 5 broad conditions: self-renewal, early neuronal differentiati...

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Autores principales: Burke, Emily E., Chenoweth, Joshua G., Shin, Joo Heon, Collado-Torres, Leonardo, Kim, Suel-Kee, Micali, Nicola, Wang, Yanhong, Colantuoni, Carlo, Straub, Richard E., Hoeppner, Daniel J., Chen, Huei-Ying, Sellers, Alana, Shibbani, Kamel, Hamersky, Gregory R., Diaz Bustamante, Marcelo, Phan, BaDoi N., Ulrich, William S., Valencia, Cristian, Jaishankar, Amritha, Price, Amanda J., Rajpurohit, Anandita, Semick, Stephen A., Bürli, Roland W., Barrow, James C., Hiler, Daniel J., Page, Stephanie C., Martinowich, Keri, Hyde, Thomas M., Kleinman, Joel E., Berman, Karen F., Apud, Jose A., Cross, Alan J., Brandon, Nicholas J., Weinberger, Daniel R., Maher, Brady J., McKay, Ronald D. G., Jaffe, Andrew E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6978526/
https://www.ncbi.nlm.nih.gov/pubmed/31974374
http://dx.doi.org/10.1038/s41467-019-14266-z
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author Burke, Emily E.
Chenoweth, Joshua G.
Shin, Joo Heon
Collado-Torres, Leonardo
Kim, Suel-Kee
Micali, Nicola
Wang, Yanhong
Colantuoni, Carlo
Straub, Richard E.
Hoeppner, Daniel J.
Chen, Huei-Ying
Sellers, Alana
Shibbani, Kamel
Hamersky, Gregory R.
Diaz Bustamante, Marcelo
Phan, BaDoi N.
Ulrich, William S.
Valencia, Cristian
Jaishankar, Amritha
Price, Amanda J.
Rajpurohit, Anandita
Semick, Stephen A.
Bürli, Roland W.
Barrow, James C.
Hiler, Daniel J.
Page, Stephanie C.
Martinowich, Keri
Hyde, Thomas M.
Kleinman, Joel E.
Berman, Karen F.
Apud, Jose A.
Cross, Alan J.
Brandon, Nicholas J.
Weinberger, Daniel R.
Maher, Brady J.
McKay, Ronald D. G.
Jaffe, Andrew E.
author_facet Burke, Emily E.
Chenoweth, Joshua G.
Shin, Joo Heon
Collado-Torres, Leonardo
Kim, Suel-Kee
Micali, Nicola
Wang, Yanhong
Colantuoni, Carlo
Straub, Richard E.
Hoeppner, Daniel J.
Chen, Huei-Ying
Sellers, Alana
Shibbani, Kamel
Hamersky, Gregory R.
Diaz Bustamante, Marcelo
Phan, BaDoi N.
Ulrich, William S.
Valencia, Cristian
Jaishankar, Amritha
Price, Amanda J.
Rajpurohit, Anandita
Semick, Stephen A.
Bürli, Roland W.
Barrow, James C.
Hiler, Daniel J.
Page, Stephanie C.
Martinowich, Keri
Hyde, Thomas M.
Kleinman, Joel E.
Berman, Karen F.
Apud, Jose A.
Cross, Alan J.
Brandon, Nicholas J.
Weinberger, Daniel R.
Maher, Brady J.
McKay, Ronald D. G.
Jaffe, Andrew E.
author_sort Burke, Emily E.
collection PubMed
description Human induced pluripotent stem cells (hiPSCs) are a powerful model of neural differentiation and maturation. We present a hiPSC transcriptomics resource on corticogenesis from 5 iPSC donor and 13 subclonal lines across 9 time points over 5 broad conditions: self-renewal, early neuronal differentiation, neural precursor cells (NPCs), assembled rosettes, and differentiated neuronal cells. We identify widespread changes in the expression of both individual features and global patterns of transcription. We next demonstrate that co-culturing human NPCs with rodent astrocytes results in mutually synergistic maturation, and that cell type-specific expression data can be extracted using only sequencing read alignments without cell sorting. We lastly adapt a previously generated RNA deconvolution approach to single-cell expression data to estimate the relative neuronal maturity of iPSC-derived neuronal cultures and human brain tissue. Using many public datasets, we demonstrate neuronal cultures are maturationally heterogeneous but contain subsets of neurons more mature than previously observed.
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spelling pubmed-69785262020-01-27 Dissecting transcriptomic signatures of neuronal differentiation and maturation using iPSCs Burke, Emily E. Chenoweth, Joshua G. Shin, Joo Heon Collado-Torres, Leonardo Kim, Suel-Kee Micali, Nicola Wang, Yanhong Colantuoni, Carlo Straub, Richard E. Hoeppner, Daniel J. Chen, Huei-Ying Sellers, Alana Shibbani, Kamel Hamersky, Gregory R. Diaz Bustamante, Marcelo Phan, BaDoi N. Ulrich, William S. Valencia, Cristian Jaishankar, Amritha Price, Amanda J. Rajpurohit, Anandita Semick, Stephen A. Bürli, Roland W. Barrow, James C. Hiler, Daniel J. Page, Stephanie C. Martinowich, Keri Hyde, Thomas M. Kleinman, Joel E. Berman, Karen F. Apud, Jose A. Cross, Alan J. Brandon, Nicholas J. Weinberger, Daniel R. Maher, Brady J. McKay, Ronald D. G. Jaffe, Andrew E. Nat Commun Article Human induced pluripotent stem cells (hiPSCs) are a powerful model of neural differentiation and maturation. We present a hiPSC transcriptomics resource on corticogenesis from 5 iPSC donor and 13 subclonal lines across 9 time points over 5 broad conditions: self-renewal, early neuronal differentiation, neural precursor cells (NPCs), assembled rosettes, and differentiated neuronal cells. We identify widespread changes in the expression of both individual features and global patterns of transcription. We next demonstrate that co-culturing human NPCs with rodent astrocytes results in mutually synergistic maturation, and that cell type-specific expression data can be extracted using only sequencing read alignments without cell sorting. We lastly adapt a previously generated RNA deconvolution approach to single-cell expression data to estimate the relative neuronal maturity of iPSC-derived neuronal cultures and human brain tissue. Using many public datasets, we demonstrate neuronal cultures are maturationally heterogeneous but contain subsets of neurons more mature than previously observed. Nature Publishing Group UK 2020-01-23 /pmc/articles/PMC6978526/ /pubmed/31974374 http://dx.doi.org/10.1038/s41467-019-14266-z Text en © The Author(s) 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Burke, Emily E.
Chenoweth, Joshua G.
Shin, Joo Heon
Collado-Torres, Leonardo
Kim, Suel-Kee
Micali, Nicola
Wang, Yanhong
Colantuoni, Carlo
Straub, Richard E.
Hoeppner, Daniel J.
Chen, Huei-Ying
Sellers, Alana
Shibbani, Kamel
Hamersky, Gregory R.
Diaz Bustamante, Marcelo
Phan, BaDoi N.
Ulrich, William S.
Valencia, Cristian
Jaishankar, Amritha
Price, Amanda J.
Rajpurohit, Anandita
Semick, Stephen A.
Bürli, Roland W.
Barrow, James C.
Hiler, Daniel J.
Page, Stephanie C.
Martinowich, Keri
Hyde, Thomas M.
Kleinman, Joel E.
Berman, Karen F.
Apud, Jose A.
Cross, Alan J.
Brandon, Nicholas J.
Weinberger, Daniel R.
Maher, Brady J.
McKay, Ronald D. G.
Jaffe, Andrew E.
Dissecting transcriptomic signatures of neuronal differentiation and maturation using iPSCs
title Dissecting transcriptomic signatures of neuronal differentiation and maturation using iPSCs
title_full Dissecting transcriptomic signatures of neuronal differentiation and maturation using iPSCs
title_fullStr Dissecting transcriptomic signatures of neuronal differentiation and maturation using iPSCs
title_full_unstemmed Dissecting transcriptomic signatures of neuronal differentiation and maturation using iPSCs
title_short Dissecting transcriptomic signatures of neuronal differentiation and maturation using iPSCs
title_sort dissecting transcriptomic signatures of neuronal differentiation and maturation using ipscs
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6978526/
https://www.ncbi.nlm.nih.gov/pubmed/31974374
http://dx.doi.org/10.1038/s41467-019-14266-z
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