Multiscale causal networks identify VGF as a key regulator of Alzheimer’s disease

To investigate the molecular foundation of sporadic Alzheimer’s disease (AD), Beckmann et al. constructed multiscale causal networks on a large human AD multi-omics dataset, detecting AD-associated networks and their top predicted regulator, VGF, with extensive validation in the 5xFAD mouse model.

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Autores principales: Noam D. Beckmann, Wei-Jye Lin, Minghui Wang, Ariella T. Cohain, Alexander W. Charney, Pei Wang, Weiping Ma, Ying-Chih Wang, Cheng Jiang, Mickael Audrain, Phillip H. Comella, Amanda K. Fakira, Siddharth P. Hariharan, Gillian M. Belbin, Kiran Girdhar, Allan I. Levey, Nicholas T. Seyfried, Eric B. Dammer, Duc Duong, James J. Lah, Jean-Vianney Haure-Mirande, Ben Shackleton, Tomas Fanutza, Robert Blitzer, Eimear Kenny, Jun Zhu, Vahram Haroutunian, Pavel Katsel, Sam Gandy, Zhidong Tu, Michelle E. Ehrlich, Bin Zhang, Stephen R. Salton, Eric E. Schadt
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/f3a49830ea0b40449d13d63b2ea4d0a8
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spelling oai:doaj.org-article:f3a49830ea0b40449d13d63b2ea4d0a82021-12-02T16:35:43ZMultiscale causal networks identify VGF as a key regulator of Alzheimer’s disease10.1038/s41467-020-17405-z2041-1723https://doaj.org/article/f3a49830ea0b40449d13d63b2ea4d0a82020-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17405-zhttps://doaj.org/toc/2041-1723To investigate the molecular foundation of sporadic Alzheimer’s disease (AD), Beckmann et al. constructed multiscale causal networks on a large human AD multi-omics dataset, detecting AD-associated networks and their top predicted regulator, VGF, with extensive validation in the 5xFAD mouse model.Noam D. BeckmannWei-Jye LinMinghui WangAriella T. CohainAlexander W. CharneyPei WangWeiping MaYing-Chih WangCheng JiangMickael AudrainPhillip H. ComellaAmanda K. FakiraSiddharth P. HariharanGillian M. BelbinKiran GirdharAllan I. LeveyNicholas T. SeyfriedEric B. DammerDuc DuongJames J. LahJean-Vianney Haure-MirandeBen ShackletonTomas FanutzaRobert BlitzerEimear KennyJun ZhuVahram HaroutunianPavel KatselSam GandyZhidong TuMichelle E. EhrlichBin ZhangStephen R. SaltonEric E. SchadtNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-19 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Noam D. Beckmann
Wei-Jye Lin
Minghui Wang
Ariella T. Cohain
Alexander W. Charney
Pei Wang
Weiping Ma
Ying-Chih Wang
Cheng Jiang
Mickael Audrain
Phillip H. Comella
Amanda K. Fakira
Siddharth P. Hariharan
Gillian M. Belbin
Kiran Girdhar
Allan I. Levey
Nicholas T. Seyfried
Eric B. Dammer
Duc Duong
James J. Lah
Jean-Vianney Haure-Mirande
Ben Shackleton
Tomas Fanutza
Robert Blitzer
Eimear Kenny
Jun Zhu
Vahram Haroutunian
Pavel Katsel
Sam Gandy
Zhidong Tu
Michelle E. Ehrlich
Bin Zhang
Stephen R. Salton
Eric E. Schadt
Multiscale causal networks identify VGF as a key regulator of Alzheimer’s disease
description To investigate the molecular foundation of sporadic Alzheimer’s disease (AD), Beckmann et al. constructed multiscale causal networks on a large human AD multi-omics dataset, detecting AD-associated networks and their top predicted regulator, VGF, with extensive validation in the 5xFAD mouse model.
format article
author Noam D. Beckmann
Wei-Jye Lin
Minghui Wang
Ariella T. Cohain
Alexander W. Charney
Pei Wang
Weiping Ma
Ying-Chih Wang
Cheng Jiang
Mickael Audrain
Phillip H. Comella
Amanda K. Fakira
Siddharth P. Hariharan
Gillian M. Belbin
Kiran Girdhar
Allan I. Levey
Nicholas T. Seyfried
Eric B. Dammer
Duc Duong
James J. Lah
Jean-Vianney Haure-Mirande
Ben Shackleton
Tomas Fanutza
Robert Blitzer
Eimear Kenny
Jun Zhu
Vahram Haroutunian
Pavel Katsel
Sam Gandy
Zhidong Tu
Michelle E. Ehrlich
Bin Zhang
Stephen R. Salton
Eric E. Schadt
author_facet Noam D. Beckmann
Wei-Jye Lin
Minghui Wang
Ariella T. Cohain
Alexander W. Charney
Pei Wang
Weiping Ma
Ying-Chih Wang
Cheng Jiang
Mickael Audrain
Phillip H. Comella
Amanda K. Fakira
Siddharth P. Hariharan
Gillian M. Belbin
Kiran Girdhar
Allan I. Levey
Nicholas T. Seyfried
Eric B. Dammer
Duc Duong
James J. Lah
Jean-Vianney Haure-Mirande
Ben Shackleton
Tomas Fanutza
Robert Blitzer
Eimear Kenny
Jun Zhu
Vahram Haroutunian
Pavel Katsel
Sam Gandy
Zhidong Tu
Michelle E. Ehrlich
Bin Zhang
Stephen R. Salton
Eric E. Schadt
author_sort Noam D. Beckmann
title Multiscale causal networks identify VGF as a key regulator of Alzheimer’s disease
title_short Multiscale causal networks identify VGF as a key regulator of Alzheimer’s disease
title_full Multiscale causal networks identify VGF as a key regulator of Alzheimer’s disease
title_fullStr Multiscale causal networks identify VGF as a key regulator of Alzheimer’s disease
title_full_unstemmed Multiscale causal networks identify VGF as a key regulator of Alzheimer’s disease
title_sort multiscale causal networks identify vgf as a key regulator of alzheimer’s disease
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/f3a49830ea0b40449d13d63b2ea4d0a8
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