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Single Cell Spatial Chromatin Analysis of Fixed Immunocytochemically Identified Neuronal Cells

Lee, J.; Lu, Y.; Wang, J.; Li, J.; Fisher, S.; Nordren, C. E.; Rosario, J.; Anderson, S.; Ulyanova, A.; Brem, S.; Chen, H. I.; Wolf, J.; Grady, M. S.; Healy, M.; Kim, J.; Eberwine, J.

2019-09-24 neuroscience
10.1101/780387 bioRxiv
Show abstract

Assays examining the open-chromatin landscape in single cells require isolation of the nucleus, resulting in the loss of spatial/microenvironment information. Here we describe CHEX-seq (CHromatin EXposed) for identifying single-stranded open-chromatin DNA regions in paraformaldehyde-fixed single cells. CHEX-seq uses light-activated DNA probes that binds to single-stranded DNA in open chromatin. In situ laser activation of the annealed probes 3-Lightning Terminator in selected cells permits the probe to act as a primer for in situ enzymatic copying of single-stranded DNA that is then sequenced. CHEX-seq is benchmarked with human K562 cells and its utility is demonstrated in dispersed primary mouse and human brain cells, and immunostained cells in mouse brain sections. Further, CHEX-seq queries the openness of mitochondrial DNA in single cells. Evaluation of an individual cells chromatin landscape in its tissue context enables \"spatial chromatin analysis\".\n\nOne Sentence SummaryA new method, CHEX-seq (CHromatin eXposed), identifies the open-chromatin landscape in single fixed cells thereby allowing spatial chromatin analysis of selected cells in complex cellular environments.

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