“…Biochemical isolation of H3.1 (the replication-dependent H3 variant) containing complexes suggests it folds with H4 soon after synthesis, interacting with a number of histone chaperones to form a cytosolic chaperoning network that coordinates nuclear import (Mosammaparast et al, 2002;Campos et al, 2010;Alvarez et al, 2011;Ask et al, 2012). Key cytosolic events in the proposed pathway include H3.1 and H4 forming a heterodimer in the cytosol and interacting with NASP, ASF1, HAT1 and RbAp46 (Mosammaparast et al, 2002;Campos et al, 2010;Alvarez et al, 2011), HAT1 modification of H4 K5 and K12 by acetylation (Alvarez et al, 2011;Parthun, 2011), modification of H3 K9 by methylation (Pinheiro et al, 2012;Rivera et al, 2015) and association with the importin-b protein IPO4 (Imp4b) (Mosammaparast et al, 2002;Blackwell et al, 2007;Campos et al, 2010;Ask et al, 2012;Keck & Pemberton, 2012;Gurard-Levin et al, 2014;Hammond et al, 2017). In addition, a number of importin-b proteins have been suggested to provide chaperoning roles for basic nuclear cargo including ribosomal proteins and linker histones (Jakel et al, 2002), but not, as yet, the core histones.…”