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dc.contributor.authorRegev, Aviv
dc.date.accessioned2023-01-11T16:58:20Z
dc.date.available2023-01-11T16:58:20Z
dc.date.issued2021
dc.identifier.urihttps://hdl.handle.net/1721.1/147059
dc.description.abstract<jats:title>Abstract</jats:title><jats:p>Here we report the generation of a multimodal cell census and atlas of the mammalian primary motor cortex as the initial product of the BRAIN Initiative Cell Census Network (BICCN). This was achieved by coordinated large-scale analyses of single-cell transcriptomes, chromatin accessibility, DNA methylomes, spatially resolved single-cell transcriptomes, morphological and electrophysiological properties and cellular resolution input–output mapping, integrated through cross-modal computational analysis. Our results advance the collective knowledge and understanding of brain cell-type organization<jats:sup>1–5</jats:sup>. First, our study reveals a unified molecular genetic landscape of cortical cell types that integrates their transcriptome, open chromatin and DNA methylation maps. Second, cross-species analysis achieves a consensus taxonomy of transcriptomic types and their hierarchical organization that is conserved from mouse to marmoset and human. Third, in situ single-cell transcriptomics provides a spatially resolved cell-type atlas of the motor cortex. Fourth, cross-modal analysis provides compelling evidence for the transcriptomic, epigenomic and gene regulatory basis of neuronal phenotypes such as their physiological and anatomical properties, demonstrating the biological validity and genomic underpinning of neuron types. We further present an extensive genetic toolset for targeting glutamatergic neuron types towards linking their molecular and developmental identity to their circuit function. Together, our results establish a unifying and mechanistic framework of neuronal cell-type organization that integrates multi-layered molecular genetic and spatial information with multi-faceted phenotypic properties.</jats:p>en_US
dc.language.isoen
dc.publisherSpringer Science and Business Media LLCen_US
dc.relation.isversionof10.1038/S41586-021-03950-0en_US
dc.rightsCreative Commons Attribution 4.0 International licenseen_US
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/en_US
dc.sourceNatureen_US
dc.titleA multimodal cell census and atlas of the mammalian primary motor cortexen_US
dc.typeArticleen_US
dc.identifier.citationRegev, Aviv. 2021. "A multimodal cell census and atlas of the mammalian primary motor cortex." Nature, 598 (7879).
dc.contributor.departmentMassachusetts Institute of Technology. Department of Biologyen_US
dc.relation.journalNatureen_US
dc.eprint.versionFinal published versionen_US
dc.type.urihttp://purl.org/eprint/type/JournalArticleen_US
eprint.statushttp://purl.org/eprint/status/PeerRevieweden_US
dc.date.updated2023-01-11T16:52:56Z
dspace.orderedauthorsCallaway, EM; Dong, H-W; Ecker, JR; Hawrylycz, MJ; Huang, ZJ; Lein, ES; Ngai, J; Osten, P; Ren, B; Tolias, AS; White, O; Zeng, H; Zhuang, X; Ascoli, GA; Behrens, MM; Chun, J; Feng, G; Gee, JC; Ghosh, SS; Halchenko, YO; Hertzano, R; Lim, BK; Martone, ME; Ng, L; Pachter, L; Ropelewski, AJ; Tickle, TL; Yang, XW; Zhang, K; Bakken, TE; Berens, P; Daigle, TL; Harris, JA; Jorstad, NL; Kalmbach, BE; Kobak, D; Li, YE; Liu, H; Matho, KS; Mukamel, EA; Naeemi, M; Scala, F; Tan, P; Ting, JT; Xie, F; Zhang, M; Zhang, Z; Zhou, J; Zingg, B; Armand, E; Yao, Z; Bertagnolli, D; Casper, T; Crichton, K; Dee, N; Diep, D; Ding, S-L; Dong, W; Dougherty, EL; Fong, O; Goldman, M; Goldy, J; Hodge, RD; Hu, L; Keene, CD; Krienen, FM; Kroll, M; Lake, BB; Lathia, K; Linnarsson, S; Liu, CS; Macosko, EZ; McCarroll, SA; McMillen, D; Nadaf, NM; Nguyen, TN; Palmer, CR; Pham, T; Plongthongkum, N; Reed, NM; Regev, A; Rimorin, C; Romanow, WJ; Savoia, S; Siletti, K; Smith, K; Sulc, J; Tasic, B; Tieu, M; Torkelson, A; Tung, H; van Velthoven, CTJ; Vanderburg, CR; Yanny, AM; Fang, R; Hou, X; Lucero, JD; Osteen, JK; Pinto-Duarte, A; Poirion, O; Preissl, S; Wang, X; Aldridge, AI; Bartlett, A; Boggeman, L; O’Connor, C; Castanon, RG; Chen, H; Fitzpatrick, C; Luo, C; Nery, JR; Nunn, M; Rivkin, AC; Tian, W; Dominguez, B; Ito-Cole, T; Jacobs, M; Jin, X; Lee, C-T; Lee, K-F; Miyazaki, PA; Pang, Y; Rashid, M; Smith, JB; Vu, M; Williams, E; Biancalani, T; Booeshaghi, AS; Crow, M; Dudoit, S; Fischer, S; Gillis, J; Hu, Q; Kharchenko, PV; Niu, S-Y; Ntranos, V; Purdom, E; Risso, D; de Bézieux, HR; Somasundaram, S; Street, K; Svensson, V; Vaishnav, ED; Van den Berge, K; Welch, JD; An, X; Bateup, HS; Bowman, I; Chance, RK; Foster, NN; Galbavy, W; Gong, H; Gou, L; Hatfield, JT; Hintiryan, H; Hirokawa, KE; Kim, G; Kramer, DJ; Li, A; Li, X; Luo, Q; Muñoz-Castañeda, R; Stafford, DA; Feng, Z; Jia, X; Jiang, S; Jiang, T; Kuang, X; Larsen, R; Lesnar, P; Li, Y; Li, Y; Liu, L; Peng, H; Qu, L; Ren, M; Ruan, Z; Shen, E; Song, Y; Wakeman, W; Wang, P; Wang, Y; Wang, Y; Yin, L; Yuan, J; Zhao, S; Zhao, X; Narasimhan, A; Palaniswamy, R; Banerjee, S; Ding, L; Huilgol, D; Huo, B; Kuo, H-C; Laturnus, S; Li, X; Mitra, PP; Mizrachi, J; Wang, Q; Xie, P; Xiong, F; Yu, Y; Eichhorn, SW; Berg, J; Bernabucci, M; Bernaerts, Y; Cadwell, CR; Castro, JR; Dalley, R; Hartmanis, L; Horwitz, GD; Jiang, X; Ko, AL; Miranda, E; Mulherkar, S; Nicovich, PR; Owen, SF; Sandberg, R; Sorensen, SA; Tan, ZH; Allen, S; Hockemeyer, D; Lee, AY; Veldman, MB; Adkins, RS; Ament, SA; Bravo, HC; Carter, R; Chatterjee, A; Colantuoni, C; Crabtree, J; Creasy, H; Felix, V; Giglio, M; Herb, BR; Kancherla, J; Mahurkar, A; McCracken, C; Nickel, L; Olley, D; Orvis, J; Schor, M; Hood, G; Dichter, B; Grauer, M; Helba, B; Bandrowski, A; Barkas, N; Carlin, B; D’Orazi, FD; Degatano, K; Gillespie, TH; Khajouei, F; Konwar, K; Thompson, C; Kelly, K; Mok, S; Sunkin, Sen_US
dspace.date.submission2023-01-11T16:53:00Z
mit.journal.volume598en_US
mit.journal.issue7879en_US
mit.licensePUBLISHER_CC
mit.metadata.statusAuthority Work and Publication Information Neededen_US


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