Your browser doesn't support javascript.
loading
Membrane association via an amino-terminal amphipathic helix is required for the cellular organization and function of RNase II.
Lu, Feng; Taghbalout, Aziz.
Affiliation
  • Lu F; Department of Molecular, Microbial, and Structural Biology, University of Connecticut Health Center, Farmington, Connecticut 06032, USA.
J Biol Chem ; 288(10): 7241-51, 2013 Mar 08.
Article in En | MEDLINE | ID: mdl-23344958
The subcellular localization of the exoribonuclease RNase II is not known despite the advanced biochemical characterization of the enzyme. Here we report that RNase II is organized into cellular structures that appear to coil around the Escherichia coli cell periphery and that RNase II is associated with the cytoplasmic membrane by its amino-terminal amphipathic helix. The helix also acts as an autonomous transplantable membrane binding domain capable of directing normally cytoplasmic proteins to the membrane. Assembly of the organized cellular structures of RNase II required the RNase II amphipathic membrane binding domain. Co-immunoprecipitation of the protein from cell extracts indicated that RNase II interacts with itself. The RNase II self-interaction and the ability of the protein to assemble into organized cellular structures required the membrane binding domain. The ability of RNase II to maintain cell viability in the absence of the exoribonuclease polynucleotide phosphorylase was markedly diminished when the RNase II cellular structures were lost due to changes in the amphipathicity of the amino-terminal helix, suggesting that membrane association and assembly of RNase II into organized cellular structures play an important role in the normal function of the protein within the bacterial cell.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Protein Structure, Secondary / Escherichia coli Proteins / Escherichia coli / Exoribonucleases Type of study: Risk_factors_studies Language: En Journal: J Biol Chem Year: 2013 Document type: Article Affiliation country: United States Country of publication: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Protein Structure, Secondary / Escherichia coli Proteins / Escherichia coli / Exoribonucleases Type of study: Risk_factors_studies Language: En Journal: J Biol Chem Year: 2013 Document type: Article Affiliation country: United States Country of publication: United States