Department of Physics, Illinois Institute of Technology, Chicago, Illinois; Center for Molecular Study of Condensed Soft Matter, Illinois Institute of Technology, Chicago, Illinois
Department of Biochemistry, Carver College of Medicine, University of Iowa, Iowa City, United States
Jeff Wereszczynski
Department of Physics, Illinois Institute of Technology, Chicago, Illinois; Center for Molecular Study of Condensed Soft Matter, Illinois Institute of Technology, Chicago, Illinois
Histone tails harbor a plethora of post-translational modifications that direct the function of chromatin regulators, which recognize them through effector domains. Effector domain/histone interactions have been broadly studied, but largely using peptide fragments of histone tails. Here, we extend these studies into the nucleosome context and find that the conformation adopted by the histone H3 tails is inhibitory to BPTF PHD finger binding. Using NMR spectroscopy and MD simulations, we show that the H3 tails interact robustly but dynamically with nucleosomal DNA, substantially reducing PHD finger association. Altering the electrostatics of the H3 tail via modification or mutation increases accessibility to the PHD finger, indicating that PTM crosstalk can regulate effector domain binding by altering nucleosome conformation. Together, our results demonstrate that the nucleosome context has a dramatic impact on signaling events at the histone tails, and highlights the importance of studying histone binding in the context of the nucleosome.