Histones bundle F-actin filaments and affect actin structure.

Histones are small polycationic proteins complexed with DNA located in the cell nucleus. Upon apoptosis they are secreted from the cells and react with extracellular polyanionic compounds. Actin which is a polyanionic protein, is also secreted from necrotic cells and interacts with histones. We show...

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Main Authors: Edna Blotnick, Asaf Sol, Andras Muhlrad
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5573295?pdf=render
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author Edna Blotnick
Asaf Sol
Andras Muhlrad
author_facet Edna Blotnick
Asaf Sol
Andras Muhlrad
author_sort Edna Blotnick
collection DOAJ
description Histones are small polycationic proteins complexed with DNA located in the cell nucleus. Upon apoptosis they are secreted from the cells and react with extracellular polyanionic compounds. Actin which is a polyanionic protein, is also secreted from necrotic cells and interacts with histones. We showed that both histone mixture (histone type III) and the recombinant H2A histone bundles F-actin, increases the viscosity of the F-actin containing solution and polymerizes G-actin. The histone-actin bundles are relatively insensitive to increase of ionic strength, unlike other polycation, histatin, lysozyme, spermine and LL-37 induced F-actin bundles. The histone-actin bundles dissociate completely only in the presence of 300-400 mM NaCl. DNA, which competes with F-actin for histones, disassembles histone induced actin bundles. DNase1, which depolymerizes F- to G-actin, actively unbundles the H2A histone induced but slightly affects the histone mixture induced actin bundles. Cofilin decreases the amount of F-actin sedimented by low speed centrifugation, increases light scattering and viscosity of F-actin-histone mixture containing solutions and forms star like superstructures by copolymerizing G-actin with H2A histone. The results indicate that histones are tightly attached to F-actin by strong electrostatic and hydrophobic forces. Since both histones and F-actin are present in the sputum of patients with cystic fibrosis, therefore, the formation of the stable histone-actin bundles can contribute to the pathology of this disease by increasing the viscosity of the sputum. The actin-histone interaction in the nucleus might affect gene expression.
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spelling doaj.art-011ea2bb4bdf4bfbbf118870481245752022-12-22T01:13:28ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01128e018376010.1371/journal.pone.0183760Histones bundle F-actin filaments and affect actin structure.Edna BlotnickAsaf SolAndras MuhlradHistones are small polycationic proteins complexed with DNA located in the cell nucleus. Upon apoptosis they are secreted from the cells and react with extracellular polyanionic compounds. Actin which is a polyanionic protein, is also secreted from necrotic cells and interacts with histones. We showed that both histone mixture (histone type III) and the recombinant H2A histone bundles F-actin, increases the viscosity of the F-actin containing solution and polymerizes G-actin. The histone-actin bundles are relatively insensitive to increase of ionic strength, unlike other polycation, histatin, lysozyme, spermine and LL-37 induced F-actin bundles. The histone-actin bundles dissociate completely only in the presence of 300-400 mM NaCl. DNA, which competes with F-actin for histones, disassembles histone induced actin bundles. DNase1, which depolymerizes F- to G-actin, actively unbundles the H2A histone induced but slightly affects the histone mixture induced actin bundles. Cofilin decreases the amount of F-actin sedimented by low speed centrifugation, increases light scattering and viscosity of F-actin-histone mixture containing solutions and forms star like superstructures by copolymerizing G-actin with H2A histone. The results indicate that histones are tightly attached to F-actin by strong electrostatic and hydrophobic forces. Since both histones and F-actin are present in the sputum of patients with cystic fibrosis, therefore, the formation of the stable histone-actin bundles can contribute to the pathology of this disease by increasing the viscosity of the sputum. The actin-histone interaction in the nucleus might affect gene expression.http://europepmc.org/articles/PMC5573295?pdf=render
spellingShingle Edna Blotnick
Asaf Sol
Andras Muhlrad
Histones bundle F-actin filaments and affect actin structure.
PLoS ONE
title Histones bundle F-actin filaments and affect actin structure.
title_full Histones bundle F-actin filaments and affect actin structure.
title_fullStr Histones bundle F-actin filaments and affect actin structure.
title_full_unstemmed Histones bundle F-actin filaments and affect actin structure.
title_short Histones bundle F-actin filaments and affect actin structure.
title_sort histones bundle f actin filaments and affect actin structure
url http://europepmc.org/articles/PMC5573295?pdf=render
work_keys_str_mv AT ednablotnick histonesbundlefactinfilamentsandaffectactinstructure
AT asafsol histonesbundlefactinfilamentsandaffectactinstructure
AT andrasmuhlrad histonesbundlefactinfilamentsandaffectactinstructure