Unified molecular approach for spatial epigenome, transcriptome, and cell lineages

Y Yung-Hsin Huang J Julia A. Belk R Ruochi Zhang N Natasha E. Weiser (Department of Dermatology, Center for Personal Dynamic Regulomes and Program in Epithelial Biology, Stanford University School of Medicine) Z Zachary Chiang (Broad Institute of Massachusetts Institute of Technology and Harvard) M Matthew G. Jones P Paul S. Mischel J Jason D. Buenrostro H Howard Y. Chang

Abstract

Spatial epigenomics and multiomics can provide fine-grained insights into cellular states but their widespread adoption is limited by the requirement for bespoke slides and capture chemistries for each data modality. Here, we present SPatial assay for Accessible chromatin, Cell lineages, and gene Expression with sequencing (SPACE-seq), a method that utilizes polyadenine-tailed epigenomic libraries to enable facile spatial multiomics using standard whole transcriptome reagents. Applying SPACE-seq to a human glioblastoma specimen, we reveal the state of the tumor microenvironment, extrachromosomal DNA copy numbers, and identify putative mitochondrial DNA variants.

Article Details

Volume / Issue Vol. 122, Issue 16
Published April 22, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (9)

Y

Yung-Hsin Huang

J

Julia A. Belk

R

Ruochi Zhang

N

Natasha E. Weiser

Department of Dermatology, Center for Personal Dynamic Regulomes and Program in Epithelial Biology, Stanford University School of Medicine

Z

Zachary Chiang

Broad Institute of Massachusetts Institute of Technology and Harvard

M

Matthew G. Jones

P

Paul S. Mischel

J

Jason D. Buenrostro

H

Howard Y. Chang