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Transcript-indexed ATAC-seq for precision immune profiling

delete2018-04-23
delete125
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OA
AI
A
Ansuman T. Satpathy
N
Naresha Saligrama
J
Jason D. Buenrostro
Y
Yuning Wei
B
Beijing Wu
A
Adam J. Rubin
J
Jeffrey M. Granja
C
Caleb A. Lareau
R
Rui Li
Y
Yanyan Qi
K
Kevin R. Parker
M
Maxwell R. Mumbach
W
William S. Serratelli
D
David Gennert
A
Alicia N. Schep
M
M. Ryan Corces
M
Michael S. Khodadoust
Y
Youn H. Kim
P
Paul A. Khavari
W
William J. Greenleaf
M
Mark M. Davis *
H
Howard Y. Chang *
DOI:10.1038/s41591-018-0008-8delete
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Abstract

Abstract

En 中文
T cells create vast amounts of diversity in the genes that encode their T cell receptors (TCRs), which enables individual clones to recognize specific peptide-major histocompatibility complex (MHC) ligands. Here we combined sequencing of the TCR-encoding genes with assay for transposase-accessible chromatin with sequencing (ATAC-seq) analysis at the single-cell level to provide information on the TCR specificity and epigenomic state of individual T cells. By using this approach, termed transcript-indexed ATAC-seq (T-ATAC-seq), we identified epigenomic signatures in immortalized leukemic T cells, primary human T cells from healthy volunteers and primary leukemic T cells from patient samples. In peripheral blood CD4(+) T cells from healthy individuals, we identified cis and trans regulators of naive and memory T cell states and found substantial heterogeneity in surface-marker-defined T cell populations. In patients with a leukemic form of cutaneous T cell lymphoma, T-ATAC-seq enabled identification of leukemic and nonleukemic regulatory pathways in T cells from the same individual by allowing separation of the signals that arose from the malignant clone from the background T cell noise. Thus, T-ATAC-seq is a new tool that enables analysis of epigenomic landscapes in clonal T cells and should be valuable for studies of T cell malignancy, immunity and immunotherapy.
Keywords:
T-CELL LYMPHOMA
CHROMATIN ACCESSIBILITY
MYCOSIS-FUNGOIDES
SEZARY-SYNDROME
MESSENGER-RNA
HELPER-CELLS
C-MAF
REVEALS
DNA
DIFFERENTIATION
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Journal

Nature Medicine cover
Nature Medicine
IF:
50
Papers:
1.4W
Citations:
13.4W

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H
Harvard University
Scholars:
26.5W
Papers: 22.0W
Citations: 28.7W
S
Stanford University
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Papers: 8.2W
Citations: 17.0W
B
Broad Institute
Scholars:
5.7K
Papers: 3.3K
Citations: 4.0W
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