Accès ouvert déclaré
2024
article
Massively parallel characterization of regulatory elements in the developing human cortex
Chengyu Deng, Ryan Ziffra, Daniela A. Pereira, Schahram Akbarian, Alexej Abyzov, Dhivya Arasappan, José Juan Almagro Armenteros, Brian J. Beliveau, Jaroslav Bendl, Sabina Berretta, Rahul Bharadwaj, Arjun Bhattacharya, Lucy Bicks, Kristen Brennand, Frances A. Champagne, Tanima Chatterjee, Chris Chatzinakos, Yuyan Cheng, Lijun Cheng, Andrew Chess, Jo-fan Chien, Zhiyuan Chu, Declan Clarke, Ashley Clement, Leonardo Collado‐Torres, Gregory M. Cooper, Gregory E. Crawford, Rujia Dai, Nikolaos P. Daskalakis, José Dávila-Velderrain, Amy Deep‐Soboslay, Christopher P. DiPietro, Stella Dracheva, Shiron Drusinsky, Ziheng Duan, Duc M. Duong, Cagatay Dursun, Nicholas J. Eagles, Jonathan I. Edelstein, Prashant S. Emani, John F. Fullard, Kiki Galani, Timur R. Galeev, Michael J. Gandal, Sophia C. Gaynor, Mark Gerstein, Daniel H. Geschwind, Kiran Girdhar, Fernando S. Goes, William J. Greenleaf, Jennifer Grundman, Hanmin Guo, Qiuyu Guo, Chirag Gupta, Yoav Hadas, Joachim Hallmayer, Vahram Haroutunian, Natalie Hawken, Chuan He, Ella Henry, Stephanie C. Hicks, Marcus Ho, Li‐Lun Ho, Gabriel E. Hoffman, Yi‐Ling Huang, Louise A. Huuki-Myers, Ahyeon Hwang, Thomas M. Hyde, Artemis Iatrou, Aarti Jajoo, Matthew L. Jensen, Lihua Jiang, Jin Peng, Ting Jin, Connor Jops, Alexandre Jourdon, Riki Kawaguchi, Manolis Kellis, Saniya Khullar, Joel E. Kleinman, Steven P. Kleopoulos, Arnold R. Kriegstein, Anshul Kundaje, Soumya Kundu, Donghoon Lee, Shuang Liu, Mingfeng Li, Xiao Lin, Chunyu Liu, Jason Liu, Shaoke Lou, Dan Lü, Jacob M. Loupe, Shaojie Ma, Liang Ma, Michael Margolis, Jessica Mariani, Keri Martinowich, Kristen R. Maynard, Samantha Mazariegos, Ran Meng, Richard M. Myers, Courtney Micallef, Tatiana Mikhailova, Guo‐li Ming, Shahin Mohammadi, Emma Monte, Kelsey S. Montgomery, Jill E. Moore, Jennifer Moran, Eran A. Mukamel, Angus C. Nairn, Charles B. Nemeroff, Pengyu Ni, Larsson Omberg, Stephanie C. Page, Saejeong Park, Ashok Patowary, Reenal Pattni, Geo Pertea, Mette A. Peters, Nishigandha Phalke, Dalila Pinto, Milos Pjanic, Sirisha Pochareddy, Henry Pratt, Carolin Purmann, Zhaohui Qin, Pingping Qu, Diana Quintero, Towfique Raj, Ananya S. Rajagopalan, Sarah Reach, Thomas Reimonn, Kerry J. Ressler, D D Ross, Panos Roussos, Joel Rozowsky, Misir Ruth, W. Brad Ruzicka, Stephan Sanders, Juliane M. Schneider, Soraya Scuderi, Robert Sebra, Nenad Šestan, Nicholas T. Seyfried, Nicole Shedd, Annie W. Shieh, Joo Heon Shin, Mario Škarica, Clara Snijders, Hongjun Song, Matthew W. State, Jason L. Stein, Sivan Subburaju, Thomas C. Südhof, M Snyder, Ran Tao, Karen Therrien, Li‐Huei Tsai, Alexander E. Urban, Harm van Bakel, Daniel Vo, Georgios Voloudakis, Brie Wamsley, Yifan Wang, Sidney H. Wang, Daifeng Wang, Jonathan Warrell, Cindy Wen, Annika K. Weimer, Daniel R. Weinberger, Zhiping Weng, Kevin P. White, A. Jeremy Willsey, Hyejung Won, Wing H. Wong, Siwei Xu, Feinan Wu, Stefan Wuchty, Dennis Wylie, Chloe X. Yap, Yanqiong Zhang, Chunling Zhang, Bin Zhang, Jing Zhang, Xiao Zhou, Zane Zeier, Trisha M. Zintel
68Citations signalées — pas une note de qualité
8Institutions déclarées
3Pays d’affiliation déclarés
Résumé fourni par la source
Nucleotide changes in gene regulatory elements are important determinants of neuronal development and diseases. Using massively parallel reporter assays in primary human cells from mid-gestation cortex and cerebral organoids, we interrogated the cis-regulatory activity of 102,767 open chromatin regions, including thousands of sequences with cell type-specific accessibility and variants associated with brain gene regulation. In primary cells, we identified 46,802 active enhancer sequences and 164 variants that alter enhancer activity. Activity was comparable in organoids and primary cells, suggesting that organoids provide an adequate model for the developing cortex. Using deep learning we decoded the sequence basis and upstream regulators of enhancer activity. This work establishes a comprehensive catalog of functional gene regulatory elements and variants in human neuronal development.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Massively parallel characterization of regulatory elements in the developing human cortex
- Date Crossref
- 24/05/2024
- Éditeur
- American Association for the Advancement of Science (AAAS)
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude et ne compte pas comme une seconde source scientifique indépendante.
Institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Sujets associés
Genomics and Chromatin DynamicsRNA Research and SplicingRNA and protein synthesis mechanisms