[PDF][PDF] Time-resolved analysis reveals rapid dynamics and broad scope of the CBP/p300 acetylome

BT Weinert, T Narita, S Satpathy, B Srinivasan… - Cell, 2018 - cell.com
BT Weinert, T Narita, S Satpathy, B Srinivasan, BK Hansen, C Schölz, WB Hamilton…
Cell, 2018cell.com
The acetyltransferases CBP and p300 are multifunctional transcriptional co-activators. Here,
we combined quantitative proteomics with CBP/p300-specific catalytic inhibitors,
bromodomain inhibitor, and gene knockout to reveal a comprehensive map of regulated
acetylation sites and their dynamic turnover rates. CBP/p300 acetylates thousands of sites,
including signature histone sites and a multitude of sites on signaling effectors and
enhancer-associated transcriptional regulators. Time-resolved acetylome analyses …
Summary
The acetyltransferases CBP and p300 are multifunctional transcriptional co-activators. Here, we combined quantitative proteomics with CBP/p300-specific catalytic inhibitors, bromodomain inhibitor, and gene knockout to reveal a comprehensive map of regulated acetylation sites and their dynamic turnover rates. CBP/p300 acetylates thousands of sites, including signature histone sites and a multitude of sites on signaling effectors and enhancer-associated transcriptional regulators. Time-resolved acetylome analyses identified a subset of CBP/p300-regulated sites with very rapid (<30 min) acetylation turnover, revealing a dynamic balance between acetylation and deacetylation. Quantification of acetylation, mRNA, and protein abundance after CBP/p300 inhibition reveals a kinetically competent network of gene expression that strictly depends on CBP/p300-catalyzed rapid acetylation. Collectively, our in-depth acetylome analyses reveal systems attributes of CBP/p300 targets, and the resource dataset provides a framework for investigating CBP/p300 functions and for understanding the impact of small-molecule inhibitors targeting its catalytic and bromodomain activities.
cell.com