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Single-cell chromatin accessibility reveals malignant regulatory programs in primary human cancers.

Authors :
Sundaram L
Kumar A
Zatzman M
Salcedo A
Ravindra N
Shams S
Louie BH
Bagdatli ST
Myers MA
Sarmashghi S
Choi HY
Choi WY
Yost KE
Zhao Y
Granja JM
Hinoue T
Hayes DN
Cherniack A
Felau I
Choudhry H
Zenklusen JC
Farh KK
McPherson A
Curtis C
Laird PW
Demchok JA
Yang L
Tarnuzzer R
Caesar-Johnson SJ
Wang Z
Doane AS
Khurana E
Castro MAA
Lazar AJ
Broom BM
Weinstein JN
Akbani R
Kumar SV
Raphael BJ
Wong CK
Stuart JM
Safavi R
Benz CC
Johnson BK
Kyi C
Shen H
Corces MR
Chang HY
Greenleaf WJ
Source :
Science (New York, N.Y.) [Science] 2024 Sep 06; Vol. 385 (6713), pp. eadk9217. Date of Electronic Publication: 2024 Sep 06.
Publication Year :
2024

Abstract

To identify cancer-associated gene regulatory changes, we generated single-cell chromatin accessibility landscapes across eight tumor types as part of The Cancer Genome Atlas. Tumor chromatin accessibility is strongly influenced by copy number alterations that can be used to identify subclones, yet underlying cis-regulatory landscapes retain cancer type-specific features. Using organ-matched healthy tissues, we identified the "nearest healthy" cell types in diverse cancers, demonstrating that the chromatin signature of basal-like-subtype breast cancer is most similar to secretory-type luminal epithelial cells. Neural network models trained to learn regulatory programs in cancer revealed enrichment of model-prioritized somatic noncoding mutations near cancer-associated genes, suggesting that dispersed, nonrecurrent, noncoding mutations in cancer are functional. Overall, these data and interpretable gene regulatory models for cancer and healthy tissue provide a framework for understanding cancer-specific gene regulation.

Details

Language :
English
ISSN :
1095-9203
Volume :
385
Issue :
6713
Database :
MEDLINE
Journal :
Science (New York, N.Y.)
Publication Type :
Academic Journal
Accession number :
39236169
Full Text :
https://doi.org/10.1126/science.adk9217