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Brain-wide correspondence of neuronal epigenomics and distant projections
by
Liem, Michelle
, Huang, Hsiang-Hsuan
, Boggeman, Lara
, Bartlett, Anna
, Lagos, Will N.
, Tasic, Bosiljka
, Zeng, Qiurui
, Rashid, Mohammad
, O’Connor, Carolyn
, Rivkin, Angeline
, Claffey, Naomi
, Jacobs, Matthew
, Rink, Jon
, Nery, Joseph R.
, Osteen, Julia
, Aldridge, Andrew
, Lee, Jasper
, Valadon, Cynthia
, Ecker, Joseph R.
, Zeng, Hongkui
, Emerson, Nora
, Pinto-Duartec, António
, Altshul, Jordan
, Chen, Shengbo
, Smith, Jared B.
, Smith, Kimberly A.
, Ito, Tony
, Lee, Kuo-Fen
, Williams, Elora
, Jin, Xin
, Miyazaki, Paula Assakura
, Castanon, Rosa G.
, Vu, Minh
, Liu, Hanqing
, Salinda, J. L. Angelo
, Patne, Neelakshi S.
, Peng, Zihao
, Cho, Silvia
, Callaway, Edward M.
, Pang, Yan
, Zhou, Jingtian
, Mukamel, Eran A.
, Margarita Behrens, M.
, Lee, Cheng-Ta
, Wu, May
, Yao, Zizhen
, Dominguez, Bertha
, Zhang, Zhuzhu
, Ding, Wubin
, Fitzpatrick, Conor
, Kenworthy, Mia A.
in
13/1
/ 13/31
/ 38/22
/ 38/23
/ 38/32
/ 38/91
/ 631/208/177
/ 631/378/2584
/ 64/60
/ Amygdala
/ Animals
/ Brain
/ Brain - cytology
/ Brain - metabolism
/ Clusters
/ Consensus Sequence
/ Datasets
/ Datasets as Topic
/ DNA methylation
/ Epigenetics
/ Epigenomics
/ Gene expression
/ Gene Expression Profiling
/ Genetics
/ Hindbrain
/ Humanities and Social Sciences
/ Hypothalamus
/ Hypothalamus - cytology
/ Mesencephalon
/ Mesencephalon - cytology
/ Mice
/ multidisciplinary
/ Neural Pathways - cytology
/ Neurons
/ Neurons - metabolism
/ Neurotransmitter Agents - metabolism
/ Quality control
/ Regulatory sequences
/ Regulatory Sequences, Nucleic Acid
/ Rhombencephalon - cytology
/ Science
/ Science (multidisciplinary)
/ Single-Cell Analysis
/ Thalamus
/ Thalamus - cytology
/ Transcription Factors - metabolism
/ Transcriptomics
2023
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Brain-wide correspondence of neuronal epigenomics and distant projections
by
Liem, Michelle
, Huang, Hsiang-Hsuan
, Boggeman, Lara
, Bartlett, Anna
, Lagos, Will N.
, Tasic, Bosiljka
, Zeng, Qiurui
, Rashid, Mohammad
, O’Connor, Carolyn
, Rivkin, Angeline
, Claffey, Naomi
, Jacobs, Matthew
, Rink, Jon
, Nery, Joseph R.
, Osteen, Julia
, Aldridge, Andrew
, Lee, Jasper
, Valadon, Cynthia
, Ecker, Joseph R.
, Zeng, Hongkui
, Emerson, Nora
, Pinto-Duartec, António
, Altshul, Jordan
, Chen, Shengbo
, Smith, Jared B.
, Smith, Kimberly A.
, Ito, Tony
, Lee, Kuo-Fen
, Williams, Elora
, Jin, Xin
, Miyazaki, Paula Assakura
, Castanon, Rosa G.
, Vu, Minh
, Liu, Hanqing
, Salinda, J. L. Angelo
, Patne, Neelakshi S.
, Peng, Zihao
, Cho, Silvia
, Callaway, Edward M.
, Pang, Yan
, Zhou, Jingtian
, Mukamel, Eran A.
, Margarita Behrens, M.
, Lee, Cheng-Ta
, Wu, May
, Yao, Zizhen
, Dominguez, Bertha
, Zhang, Zhuzhu
, Ding, Wubin
, Fitzpatrick, Conor
, Kenworthy, Mia A.
in
13/1
/ 13/31
/ 38/22
/ 38/23
/ 38/32
/ 38/91
/ 631/208/177
/ 631/378/2584
/ 64/60
/ Amygdala
/ Animals
/ Brain
/ Brain - cytology
/ Brain - metabolism
/ Clusters
/ Consensus Sequence
/ Datasets
/ Datasets as Topic
/ DNA methylation
/ Epigenetics
/ Epigenomics
/ Gene expression
/ Gene Expression Profiling
/ Genetics
/ Hindbrain
/ Humanities and Social Sciences
/ Hypothalamus
/ Hypothalamus - cytology
/ Mesencephalon
/ Mesencephalon - cytology
/ Mice
/ multidisciplinary
/ Neural Pathways - cytology
/ Neurons
/ Neurons - metabolism
/ Neurotransmitter Agents - metabolism
/ Quality control
/ Regulatory sequences
/ Regulatory Sequences, Nucleic Acid
/ Rhombencephalon - cytology
/ Science
/ Science (multidisciplinary)
/ Single-Cell Analysis
/ Thalamus
/ Thalamus - cytology
/ Transcription Factors - metabolism
/ Transcriptomics
2023
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Brain-wide correspondence of neuronal epigenomics and distant projections
by
Liem, Michelle
, Huang, Hsiang-Hsuan
, Boggeman, Lara
, Bartlett, Anna
, Lagos, Will N.
, Tasic, Bosiljka
, Zeng, Qiurui
, Rashid, Mohammad
, O’Connor, Carolyn
, Rivkin, Angeline
, Claffey, Naomi
, Jacobs, Matthew
, Rink, Jon
, Nery, Joseph R.
, Osteen, Julia
, Aldridge, Andrew
, Lee, Jasper
, Valadon, Cynthia
, Ecker, Joseph R.
, Zeng, Hongkui
, Emerson, Nora
, Pinto-Duartec, António
, Altshul, Jordan
, Chen, Shengbo
, Smith, Jared B.
, Smith, Kimberly A.
, Ito, Tony
, Lee, Kuo-Fen
, Williams, Elora
, Jin, Xin
, Miyazaki, Paula Assakura
, Castanon, Rosa G.
, Vu, Minh
, Liu, Hanqing
, Salinda, J. L. Angelo
, Patne, Neelakshi S.
, Peng, Zihao
, Cho, Silvia
, Callaway, Edward M.
, Pang, Yan
, Zhou, Jingtian
, Mukamel, Eran A.
, Margarita Behrens, M.
, Lee, Cheng-Ta
, Wu, May
, Yao, Zizhen
, Dominguez, Bertha
, Zhang, Zhuzhu
, Ding, Wubin
, Fitzpatrick, Conor
, Kenworthy, Mia A.
in
13/1
/ 13/31
/ 38/22
/ 38/23
/ 38/32
/ 38/91
/ 631/208/177
/ 631/378/2584
/ 64/60
/ Amygdala
/ Animals
/ Brain
/ Brain - cytology
/ Brain - metabolism
/ Clusters
/ Consensus Sequence
/ Datasets
/ Datasets as Topic
/ DNA methylation
/ Epigenetics
/ Epigenomics
/ Gene expression
/ Gene Expression Profiling
/ Genetics
/ Hindbrain
/ Humanities and Social Sciences
/ Hypothalamus
/ Hypothalamus - cytology
/ Mesencephalon
/ Mesencephalon - cytology
/ Mice
/ multidisciplinary
/ Neural Pathways - cytology
/ Neurons
/ Neurons - metabolism
/ Neurotransmitter Agents - metabolism
/ Quality control
/ Regulatory sequences
/ Regulatory Sequences, Nucleic Acid
/ Rhombencephalon - cytology
/ Science
/ Science (multidisciplinary)
/ Single-Cell Analysis
/ Thalamus
/ Thalamus - cytology
/ Transcription Factors - metabolism
/ Transcriptomics
2023
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Brain-wide correspondence of neuronal epigenomics and distant projections
Journal Article
Brain-wide correspondence of neuronal epigenomics and distant projections
2023
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Overview
Single-cell analyses parse the brain’s billions of neurons into thousands of ‘cell-type’ clusters residing in different brain structures
1
. Many cell types mediate their functions through targeted long-distance projections allowing interactions between specific cell types. Here we used epi-retro-seq
2
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.
This study uses epi-retro-seq to link single-cell epigenomes and cell types to long-distance projections for neurons dissected from different regions projecting to different targets across the whole mouse brain.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
/ 13/31
/ 38/22
/ 38/23
/ 38/32
/ 38/91
/ 64/60
/ Amygdala
/ Animals
/ Brain
/ Clusters
/ Datasets
/ Genetics
/ Humanities and Social Sciences
/ Mice
/ Neurons
/ Neurotransmitter Agents - metabolism
/ Regulatory Sequences, Nucleic Acid
/ Science
/ Thalamus
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