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Answer ALS, a large-scale resource for sporadic and familial ALS combining clinical and multi-omics data from induced pluripotent cell lines

Answer ALS is a biological and clinical resource of patient-derived, induced pluripotent stem (iPS) cell lines, multi-omic data derived from iPS neurons and longitudinal clinical and smartphone data from over 1,000 patients with ALS. This resource provides population-level biological and clinical da...

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Autores principales: Baxi, Emily G., Thompson, Terri, Li, Jonathan, Kaye, Julia A., Lim, Ryan G., Wu, Jie, Ramamoorthy, Divya, Lima, Leandro, Vaibhav, Vineet, Matlock, Andrea, Frank, Aaron, Coyne, Alyssa N., Landin, Barry, Ornelas, Loren, Mosmiller, Elizabeth, Thrower, Sara, Farr, S. Michelle, Panther, Lindsey, Gomez, Emilda, Galvez, Erick, Perez, Daniel, Meepe, Imara, Lei, Susan, Mandefro, Berhan, Trost, Hannah, Pinedo, Louis, Banuelos, Maria G., Liu, Chunyan, Moran, Ruby, Garcia, Veronica, Workman, Michael, Ho, Richie, Wyman, Stacia, Roggenbuck, Jennifer, Harms, Matthew B., Stocksdale, Jennifer, Miramontes, Ricardo, Wang, Keona, Venkatraman, Vidya, Holewenski, Ronald, Sundararaman, Niveda, Pandey, Rakhi, Manalo, Danica-Mae, Donde, Aneesh, Huynh, Nhan, Adam, Miriam, Wassie, Brook T., Vertudes, Edward, Amirani, Naufa, Raja, Krishna, Thomas, Reuben, Hayes, Lindsey, Lenail, Alex, Cerezo, Aianna, Luppino, Sarah, Farrar, Alanna, Pothier, Lindsay, Prina, Carolyn, Morgan, Todd, Jamil, Arish, Heintzman, Sarah, Jockel-Balsarotti, Jennifer, Karanja, Elizabeth, Markway, Jesse, McCallum, Molly, Joslin, Ben, Alibazoglu, Deniz, Kolb, Stephen, Ajroud-Driss, Senda, Baloh, Robert, Heitzman, Daragh, Miller, Tim, Glass, Jonathan D., Patel-Murray, Natasha Leanna, Yu, Hong, Sinani, Ervin, Vigneswaran, Prasha, Sherman, Alexander V., Ahmad, Omar, Roy, Promit, Beavers, Jay C., Zeiler, Steven, Krakauer, John W., Agurto, Carla, Cecchi, Guillermo, Bellard, Mary, Raghav, Yogindra, Sachs, Karen, Ehrenberger, Tobias, Bruce, Elizabeth, Cudkowicz, Merit E., Maragakis, Nicholas, Norel, Raquel, Van Eyk, Jennifer E., Finkbeiner, Steven, Berry, James, Sareen, Dhruv, Thompson, Leslie M., Fraenkel, Ernest, Svendsen, Clive N., Rothstein, Jeffrey D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group US 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8825283/
https://www.ncbi.nlm.nih.gov/pubmed/35115730
http://dx.doi.org/10.1038/s41593-021-01006-0
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author Baxi, Emily G.
Thompson, Terri
Li, Jonathan
Kaye, Julia A.
Lim, Ryan G.
Wu, Jie
Ramamoorthy, Divya
Lima, Leandro
Vaibhav, Vineet
Matlock, Andrea
Frank, Aaron
Coyne, Alyssa N.
Landin, Barry
Ornelas, Loren
Mosmiller, Elizabeth
Thrower, Sara
Farr, S. Michelle
Panther, Lindsey
Gomez, Emilda
Galvez, Erick
Perez, Daniel
Meepe, Imara
Lei, Susan
Mandefro, Berhan
Trost, Hannah
Pinedo, Louis
Banuelos, Maria G.
Liu, Chunyan
Moran, Ruby
Garcia, Veronica
Workman, Michael
Ho, Richie
Wyman, Stacia
Roggenbuck, Jennifer
Harms, Matthew B.
Stocksdale, Jennifer
Miramontes, Ricardo
Wang, Keona
Venkatraman, Vidya
Holewenski, Ronald
Sundararaman, Niveda
Pandey, Rakhi
Manalo, Danica-Mae
Donde, Aneesh
Huynh, Nhan
Adam, Miriam
Wassie, Brook T.
Vertudes, Edward
Amirani, Naufa
Raja, Krishna
Thomas, Reuben
Hayes, Lindsey
Lenail, Alex
Cerezo, Aianna
Luppino, Sarah
Farrar, Alanna
Pothier, Lindsay
Prina, Carolyn
Morgan, Todd
Jamil, Arish
Heintzman, Sarah
Jockel-Balsarotti, Jennifer
Karanja, Elizabeth
Markway, Jesse
McCallum, Molly
Joslin, Ben
Alibazoglu, Deniz
Kolb, Stephen
Ajroud-Driss, Senda
Baloh, Robert
Heitzman, Daragh
Miller, Tim
Glass, Jonathan D.
Patel-Murray, Natasha Leanna
Yu, Hong
Sinani, Ervin
Vigneswaran, Prasha
Sherman, Alexander V.
Ahmad, Omar
Roy, Promit
Beavers, Jay C.
Zeiler, Steven
Krakauer, John W.
Agurto, Carla
Cecchi, Guillermo
Bellard, Mary
Raghav, Yogindra
Sachs, Karen
Ehrenberger, Tobias
Bruce, Elizabeth
Cudkowicz, Merit E.
Maragakis, Nicholas
Norel, Raquel
Van Eyk, Jennifer E.
Finkbeiner, Steven
Berry, James
Sareen, Dhruv
Thompson, Leslie M.
Fraenkel, Ernest
Svendsen, Clive N.
Rothstein, Jeffrey D.
author_facet Baxi, Emily G.
Thompson, Terri
Li, Jonathan
Kaye, Julia A.
Lim, Ryan G.
Wu, Jie
Ramamoorthy, Divya
Lima, Leandro
Vaibhav, Vineet
Matlock, Andrea
Frank, Aaron
Coyne, Alyssa N.
Landin, Barry
Ornelas, Loren
Mosmiller, Elizabeth
Thrower, Sara
Farr, S. Michelle
Panther, Lindsey
Gomez, Emilda
Galvez, Erick
Perez, Daniel
Meepe, Imara
Lei, Susan
Mandefro, Berhan
Trost, Hannah
Pinedo, Louis
Banuelos, Maria G.
Liu, Chunyan
Moran, Ruby
Garcia, Veronica
Workman, Michael
Ho, Richie
Wyman, Stacia
Roggenbuck, Jennifer
Harms, Matthew B.
Stocksdale, Jennifer
Miramontes, Ricardo
Wang, Keona
Venkatraman, Vidya
Holewenski, Ronald
Sundararaman, Niveda
Pandey, Rakhi
Manalo, Danica-Mae
Donde, Aneesh
Huynh, Nhan
Adam, Miriam
Wassie, Brook T.
Vertudes, Edward
Amirani, Naufa
Raja, Krishna
Thomas, Reuben
Hayes, Lindsey
Lenail, Alex
Cerezo, Aianna
Luppino, Sarah
Farrar, Alanna
Pothier, Lindsay
Prina, Carolyn
Morgan, Todd
Jamil, Arish
Heintzman, Sarah
Jockel-Balsarotti, Jennifer
Karanja, Elizabeth
Markway, Jesse
McCallum, Molly
Joslin, Ben
Alibazoglu, Deniz
Kolb, Stephen
Ajroud-Driss, Senda
Baloh, Robert
Heitzman, Daragh
Miller, Tim
Glass, Jonathan D.
Patel-Murray, Natasha Leanna
Yu, Hong
Sinani, Ervin
Vigneswaran, Prasha
Sherman, Alexander V.
Ahmad, Omar
Roy, Promit
Beavers, Jay C.
Zeiler, Steven
Krakauer, John W.
Agurto, Carla
Cecchi, Guillermo
Bellard, Mary
Raghav, Yogindra
Sachs, Karen
Ehrenberger, Tobias
Bruce, Elizabeth
Cudkowicz, Merit E.
Maragakis, Nicholas
Norel, Raquel
Van Eyk, Jennifer E.
Finkbeiner, Steven
Berry, James
Sareen, Dhruv
Thompson, Leslie M.
Fraenkel, Ernest
Svendsen, Clive N.
Rothstein, Jeffrey D.
author_sort Baxi, Emily G.
collection PubMed
description Answer ALS is a biological and clinical resource of patient-derived, induced pluripotent stem (iPS) cell lines, multi-omic data derived from iPS neurons and longitudinal clinical and smartphone data from over 1,000 patients with ALS. This resource provides population-level biological and clinical data that may be employed to identify clinical–molecular–biochemical subtypes of amyotrophic lateral sclerosis (ALS). A unique smartphone-based system was employed to collect deep clinical data, including fine motor activity, speech, breathing and linguistics/cognition. The iPS spinal neurons were blood derived from each patient and these cells underwent multi-omic analytics including whole-genome sequencing, RNA transcriptomics, ATAC-sequencing and proteomics. The intent of these data is for the generation of integrated clinical and biological signatures using bioinformatics, statistics and computational biology to establish patterns that may lead to a better understanding of the underlying mechanisms of disease, including subgroup identification. A web portal for open-source sharing of all data was developed for widespread community-based data analytics.
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spelling pubmed-88252832022-02-18 Answer ALS, a large-scale resource for sporadic and familial ALS combining clinical and multi-omics data from induced pluripotent cell lines Baxi, Emily G. Thompson, Terri Li, Jonathan Kaye, Julia A. Lim, Ryan G. Wu, Jie Ramamoorthy, Divya Lima, Leandro Vaibhav, Vineet Matlock, Andrea Frank, Aaron Coyne, Alyssa N. Landin, Barry Ornelas, Loren Mosmiller, Elizabeth Thrower, Sara Farr, S. Michelle Panther, Lindsey Gomez, Emilda Galvez, Erick Perez, Daniel Meepe, Imara Lei, Susan Mandefro, Berhan Trost, Hannah Pinedo, Louis Banuelos, Maria G. Liu, Chunyan Moran, Ruby Garcia, Veronica Workman, Michael Ho, Richie Wyman, Stacia Roggenbuck, Jennifer Harms, Matthew B. Stocksdale, Jennifer Miramontes, Ricardo Wang, Keona Venkatraman, Vidya Holewenski, Ronald Sundararaman, Niveda Pandey, Rakhi Manalo, Danica-Mae Donde, Aneesh Huynh, Nhan Adam, Miriam Wassie, Brook T. Vertudes, Edward Amirani, Naufa Raja, Krishna Thomas, Reuben Hayes, Lindsey Lenail, Alex Cerezo, Aianna Luppino, Sarah Farrar, Alanna Pothier, Lindsay Prina, Carolyn Morgan, Todd Jamil, Arish Heintzman, Sarah Jockel-Balsarotti, Jennifer Karanja, Elizabeth Markway, Jesse McCallum, Molly Joslin, Ben Alibazoglu, Deniz Kolb, Stephen Ajroud-Driss, Senda Baloh, Robert Heitzman, Daragh Miller, Tim Glass, Jonathan D. Patel-Murray, Natasha Leanna Yu, Hong Sinani, Ervin Vigneswaran, Prasha Sherman, Alexander V. Ahmad, Omar Roy, Promit Beavers, Jay C. Zeiler, Steven Krakauer, John W. Agurto, Carla Cecchi, Guillermo Bellard, Mary Raghav, Yogindra Sachs, Karen Ehrenberger, Tobias Bruce, Elizabeth Cudkowicz, Merit E. Maragakis, Nicholas Norel, Raquel Van Eyk, Jennifer E. Finkbeiner, Steven Berry, James Sareen, Dhruv Thompson, Leslie M. Fraenkel, Ernest Svendsen, Clive N. Rothstein, Jeffrey D. Nat Neurosci Resource Answer ALS is a biological and clinical resource of patient-derived, induced pluripotent stem (iPS) cell lines, multi-omic data derived from iPS neurons and longitudinal clinical and smartphone data from over 1,000 patients with ALS. This resource provides population-level biological and clinical data that may be employed to identify clinical–molecular–biochemical subtypes of amyotrophic lateral sclerosis (ALS). A unique smartphone-based system was employed to collect deep clinical data, including fine motor activity, speech, breathing and linguistics/cognition. The iPS spinal neurons were blood derived from each patient and these cells underwent multi-omic analytics including whole-genome sequencing, RNA transcriptomics, ATAC-sequencing and proteomics. The intent of these data is for the generation of integrated clinical and biological signatures using bioinformatics, statistics and computational biology to establish patterns that may lead to a better understanding of the underlying mechanisms of disease, including subgroup identification. A web portal for open-source sharing of all data was developed for widespread community-based data analytics. Nature Publishing Group US 2022-02-03 2022 /pmc/articles/PMC8825283/ /pubmed/35115730 http://dx.doi.org/10.1038/s41593-021-01006-0 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/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/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Resource
Baxi, Emily G.
Thompson, Terri
Li, Jonathan
Kaye, Julia A.
Lim, Ryan G.
Wu, Jie
Ramamoorthy, Divya
Lima, Leandro
Vaibhav, Vineet
Matlock, Andrea
Frank, Aaron
Coyne, Alyssa N.
Landin, Barry
Ornelas, Loren
Mosmiller, Elizabeth
Thrower, Sara
Farr, S. Michelle
Panther, Lindsey
Gomez, Emilda
Galvez, Erick
Perez, Daniel
Meepe, Imara
Lei, Susan
Mandefro, Berhan
Trost, Hannah
Pinedo, Louis
Banuelos, Maria G.
Liu, Chunyan
Moran, Ruby
Garcia, Veronica
Workman, Michael
Ho, Richie
Wyman, Stacia
Roggenbuck, Jennifer
Harms, Matthew B.
Stocksdale, Jennifer
Miramontes, Ricardo
Wang, Keona
Venkatraman, Vidya
Holewenski, Ronald
Sundararaman, Niveda
Pandey, Rakhi
Manalo, Danica-Mae
Donde, Aneesh
Huynh, Nhan
Adam, Miriam
Wassie, Brook T.
Vertudes, Edward
Amirani, Naufa
Raja, Krishna
Thomas, Reuben
Hayes, Lindsey
Lenail, Alex
Cerezo, Aianna
Luppino, Sarah
Farrar, Alanna
Pothier, Lindsay
Prina, Carolyn
Morgan, Todd
Jamil, Arish
Heintzman, Sarah
Jockel-Balsarotti, Jennifer
Karanja, Elizabeth
Markway, Jesse
McCallum, Molly
Joslin, Ben
Alibazoglu, Deniz
Kolb, Stephen
Ajroud-Driss, Senda
Baloh, Robert
Heitzman, Daragh
Miller, Tim
Glass, Jonathan D.
Patel-Murray, Natasha Leanna
Yu, Hong
Sinani, Ervin
Vigneswaran, Prasha
Sherman, Alexander V.
Ahmad, Omar
Roy, Promit
Beavers, Jay C.
Zeiler, Steven
Krakauer, John W.
Agurto, Carla
Cecchi, Guillermo
Bellard, Mary
Raghav, Yogindra
Sachs, Karen
Ehrenberger, Tobias
Bruce, Elizabeth
Cudkowicz, Merit E.
Maragakis, Nicholas
Norel, Raquel
Van Eyk, Jennifer E.
Finkbeiner, Steven
Berry, James
Sareen, Dhruv
Thompson, Leslie M.
Fraenkel, Ernest
Svendsen, Clive N.
Rothstein, Jeffrey D.
Answer ALS, a large-scale resource for sporadic and familial ALS combining clinical and multi-omics data from induced pluripotent cell lines
title Answer ALS, a large-scale resource for sporadic and familial ALS combining clinical and multi-omics data from induced pluripotent cell lines
title_full Answer ALS, a large-scale resource for sporadic and familial ALS combining clinical and multi-omics data from induced pluripotent cell lines
title_fullStr Answer ALS, a large-scale resource for sporadic and familial ALS combining clinical and multi-omics data from induced pluripotent cell lines
title_full_unstemmed Answer ALS, a large-scale resource for sporadic and familial ALS combining clinical and multi-omics data from induced pluripotent cell lines
title_short Answer ALS, a large-scale resource for sporadic and familial ALS combining clinical and multi-omics data from induced pluripotent cell lines
title_sort answer als, a large-scale resource for sporadic and familial als combining clinical and multi-omics data from induced pluripotent cell lines
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8825283/
https://www.ncbi.nlm.nih.gov/pubmed/35115730
http://dx.doi.org/10.1038/s41593-021-01006-0
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AT maragakisnicholas answeralsalargescaleresourceforsporadicandfamilialalscombiningclinicalandmultiomicsdatafrominducedpluripotentcelllines
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AT finkbeinersteven answeralsalargescaleresourceforsporadicandfamilialalscombiningclinicalandmultiomicsdatafrominducedpluripotentcelllines
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AT sareendhruv answeralsalargescaleresourceforsporadicandfamilialalscombiningclinicalandmultiomicsdatafrominducedpluripotentcelllines
AT thompsonlesliem answeralsalargescaleresourceforsporadicandfamilialalscombiningclinicalandmultiomicsdatafrominducedpluripotentcelllines
AT fraenkelernest answeralsalargescaleresourceforsporadicandfamilialalscombiningclinicalandmultiomicsdatafrominducedpluripotentcelllines
AT svendsencliven answeralsalargescaleresourceforsporadicandfamilialalscombiningclinicalandmultiomicsdatafrominducedpluripotentcelllines
AT rothsteinjeffreyd answeralsalargescaleresourceforsporadicandfamilialalscombiningclinicalandmultiomicsdatafrominducedpluripotentcelllines