Article
Nanobody-tethered transposition allows for multifactorial chromatin profiling at single-cell resolution
2022-03-09
Abstract excerpt
Chromatin states are functionally defined by a complex combination of histone modifications, transcription factor binding, DNA accessibility, and other factors. However, most current single-cell-resolution methods are unable to measure more than one aspect of chromatin state in a single experiment, limiting our ability to accurately measure chromatin states. Here, we introduce nanobody-tethered transposition follo...
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Identifiers and source
- Literature Corpus work
- c386eca3-2c50-5209-a54c-cf25fcc69790
- DOI
- 10.1101/2022.03.08.483436
