z-logo
open-access-imgOpen Access
Integrative single-cell analysis of allele-specific copy number alterations and chromatin accessibility in cancer
Author(s) -
Chi-Yun Wu,
Billy T. Lau,
Kim Hs,
Anuja Sathe,
Susan M. Grimes,
Hanlee P. Ji,
Nancy Zhang
Publication year - 2021
Publication title -
nature biotechnology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 15.358
H-Index - 445
eISSN - 1546-1696
pISSN - 1087-0156
DOI - 10.1038/s41587-021-00911-w
Subject(s) - biology , chromatin , genetics , copy number variation , loss of heterozygosity , cancer , allele , somatic cell , computational biology , chromatin remodeling , cancer research , genome , dna , gene
Cancer progression is driven by both somatic copy number aberrations (CNAs) and chromatin remodeling, yet little is known about the interplay between these two classes of events in shaping the clonal diversity of cancers. We present Alleloscope, a method for allele-specific copy number estimation that can be applied to single-cell DNA- and/or transposase-accessible chromatin-sequencing (scDNA-seq, ATAC-seq) data, enabling combined analysis of allele-specific copy number and chromatin accessibility. On scDNA-seq data from gastric, colorectal and breast cancer samples, with validation using matched linked-read sequencing, Alleloscope finds pervasive occurrence of highly complex, multiallelic CNAs, in which cells that carry varying allelic configurations adding to the same total copy number coevolve within a tumor. On scATAC-seq from two basal cell carcinoma samples and a gastric cancer cell line, Alleloscope detected multiallelic copy number events and copy-neutral loss-of-heterozygosity, enabling dissection of the contributions of chromosomal instability and chromatin remodeling to tumor evolution.

The content you want is available to Zendy users.

Already have an account? Click here to sign in.
Having issues? You can contact us here