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◆ Nature genetics2026-08-25

Improved spike-in normalization clarifies the relationship between active histone modifications and transcription.

Lauren Patel, Yuwei Cao, Tianyao Xu, Eduardo Modolo, Tamar Dishon, Lingzhi Zhang, Eric Mendenhall, Sven Heinz, Itamar Simon, Christopher Benner, Alon Goren

原始摘要(英文原文)· Original abstract
Spike-in normalization enables quantitative analysis of chromatin immunoprecipitation sequencing (ChIP-seq) signal. Here we introduce a robust dual spike-in normalization approach for ChIP-seq (ChIP-wrangler), optimize parameters and verify its accuracy in quantifying changes in ChIP-seq signal and detecting technical artifacts. We use ChIP-wrangler to revisit recent claims that active histone marks depend on transcription. We show that acute depletion of RNA polymerase II (RNAPII) has a modest impact on H3K27ac levels, with only 6% of peaks significantly changing after RNAPII depletion, indicating that histone acetylation maintenance is not entirely dependent on ongoing transcription. Promoters and enhancers are differentially affected, with 82% of decreasing acetylation peaks located at promoter-distal elements with enhancer-related motifs. ChIP-wrangler provides increased rigor and 'guardrails' for successful spike-in normalization and, as applied here, refines the understanding of crosstalk between RNAPII activity and transcription-associated histone marks.
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Improved spike-in normalization clarifies the relationship between active histone modifications and transcription. — 科研速览 Science Skim