Brain-wide correspondence of neuronal epigenomics and distant projections

被引:0
作者
Jingtian Zhou
Zhuzhu Zhang
May Wu
Hanqing Liu
Yan Pang
Anna Bartlett
Zihao Peng
Wubin Ding
Angeline Rivkin
Will N. Lagos
Elora Williams
Cheng-Ta Lee
Paula Assakura Miyazaki
Andrew Aldridge
Qiurui Zeng
J. L. Angelo Salinda
Naomi Claffey
Michelle Liem
Conor Fitzpatrick
Lara Boggeman
Zizhen Yao
Kimberly A. Smith
Bosiljka Tasic
Jordan Altshul
Mia A. Kenworthy
Cynthia Valadon
Joseph R. Nery
Rosa G. Castanon
Neelakshi S. Patne
Minh Vu
Mohammad Rashid
Matthew Jacobs
Tony Ito
Julia Osteen
Nora Emerson
Jasper Lee
Silvia Cho
Jon Rink
Hsiang-Hsuan Huang
António Pinto-Duartec
Bertha Dominguez
Jared B. Smith
Carolyn O’Connor
Hongkui Zeng
Shengbo Chen
Kuo-Fen Lee
Eran A. Mukamel
Xin Jin
M. Margarita Behrens
Joseph R. Ecker
机构
[1] The Salk Institute for Biological Studies,Genomic Analysis Laboratory
[2] University of California San Diego,Bioinformatics and Systems Biology Program
[3] The University of Chicago,Department of Human Genetics
[4] University of California San Diego,Division of Biological Sciences
[5] The Salk Institute for Biological Studies,Systems Neurobiology Laboratories
[6] Nanchang University,School of Mathematics and Computer Science
[7] Henan Engineering Research Center of Intelligent Technology and Application,Molecular Neurobiology Laboratory
[8] Henan University,Peptide Biology Laboratories
[9] The Salk Institute for Biological Studies,Computational Neurobiology Laboratory
[10] The Salk Institute for Biological Studies,School of Computer and Information Engineering
[11] Flow Cytometry Core Facility,Department of Cognitive Science
[12] The Salk Institute for Biological Studies,Center for Motor Control and Disease, Key Laboratory of Brain Functional Genomics
[13] Allen Institute for Brain Science,NYU–ECNU Institute of Brain and Cognitive Science
[14] The Salk Institute for Biological Studies,Howard Hughes Medical Institute
[15] Henan University,undefined
[16] University of California San Diego,undefined
[17] East China Normal University,undefined
[18] New York University Shanghai,undefined
[19] The Salk Institute for Biological Studies,undefined
来源
Nature | 2023年 / 624卷
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摘要
Single-cell analyses parse the brain’s billions of neurons into thousands of ‘cell-type’ clusters residing in different brain structures1. Many cell types mediate their functions through targeted long-distance projections allowing interactions between specific cell types. Here we used epi-retro-seq2 to link single-cell epigenomes and cell types to long-distance projections for 33,034 neurons dissected from 32 different regions projecting to 24 different targets (225 source-to-target combinations) across the whole mouse brain. We highlight uses of these data for interrogating principles relating projection types to transcriptomics and epigenomics, and for addressing hypotheses about cell types and connections related to genetics. We provide an overall synthesis with 926 statistical comparisons of discriminability of neurons projecting to each target for every source. We integrate this dataset into the larger BRAIN Initiative Cell Census Network atlas, composed of millions of neurons, to link projection cell types to consensus clusters. Integration with spatial transcriptomics further assigns projection-enriched clusters to smaller source regions than the original dissections. We exemplify this by presenting in-depth analyses of projection neurons from the hypothalamus, thalamus, hindbrain, amygdala and midbrain to provide insights into properties of those cell types, including differentially expressed genes, their associated cis-regulatory elements and transcription-factor-binding motifs, and neurotransmitter use.
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页码:355 / 365
页数:10
相关论文
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