Molecular dynamics of mesophilic-like mutants of a cold-adapted enzyme: insights into distal effects induced by the mutations.

Networks and clusters of intramolecular interactions, as well as their "communication" across the three-dimensional architecture have a prominent role in determining protein stability and function. Special attention has been dedicated to their role in thermal adaptation. In the present con...

Full description

Bibliographic Details
Main Authors: Elena Papaleo, Marco Pasi, Matteo Tiberti, Luca De Gioia
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3168468?pdf=render
id doaj-3b962c7b44f546b8a86dba2872b5d9cf
record_format Article
spelling doaj-3b962c7b44f546b8a86dba2872b5d9cf2020-11-25T02:42:44ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0169e2421410.1371/journal.pone.0024214Molecular dynamics of mesophilic-like mutants of a cold-adapted enzyme: insights into distal effects induced by the mutations.Elena PapaleoMarco PasiMatteo TibertiLuca De GioiaNetworks and clusters of intramolecular interactions, as well as their "communication" across the three-dimensional architecture have a prominent role in determining protein stability and function. Special attention has been dedicated to their role in thermal adaptation. In the present contribution, seven previously experimentally characterized mutants of a cold-adapted α-amylase, featuring mesophilic-like behavior, have been investigated by multiple molecular dynamics simulations, essential dynamics and analyses of correlated motions and electrostatic interactions. Our data elucidate the molecular mechanisms underlying the ability of single and multiple mutations to globally modulate dynamic properties of the cold-adapted α-amylase, including both local and complex unpredictable distal effects. Our investigation also shows, in agreement with the experimental data, that the conversion of the cold-adapted enzyme in a warm-adapted variant cannot be completely achieved by the introduction of few mutations, also providing the rationale behind these effects. Moreover, pivotal residues, which are likely to mediate the effects induced by the mutations, have been identified from our analyses, as well as a group of suitable candidates for protein engineering. In fact, a subset of residues here identified (as an isoleucine, or networks of mesophilic-like salt bridges in the proximity of the catalytic site) should be considered, in experimental studies, to get a more efficient modification of the features of the cold-adapted enzyme.http://europepmc.org/articles/PMC3168468?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Elena Papaleo
Marco Pasi
Matteo Tiberti
Luca De Gioia
spellingShingle Elena Papaleo
Marco Pasi
Matteo Tiberti
Luca De Gioia
Molecular dynamics of mesophilic-like mutants of a cold-adapted enzyme: insights into distal effects induced by the mutations.
PLoS ONE
author_facet Elena Papaleo
Marco Pasi
Matteo Tiberti
Luca De Gioia
author_sort Elena Papaleo
title Molecular dynamics of mesophilic-like mutants of a cold-adapted enzyme: insights into distal effects induced by the mutations.
title_short Molecular dynamics of mesophilic-like mutants of a cold-adapted enzyme: insights into distal effects induced by the mutations.
title_full Molecular dynamics of mesophilic-like mutants of a cold-adapted enzyme: insights into distal effects induced by the mutations.
title_fullStr Molecular dynamics of mesophilic-like mutants of a cold-adapted enzyme: insights into distal effects induced by the mutations.
title_full_unstemmed Molecular dynamics of mesophilic-like mutants of a cold-adapted enzyme: insights into distal effects induced by the mutations.
title_sort molecular dynamics of mesophilic-like mutants of a cold-adapted enzyme: insights into distal effects induced by the mutations.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description Networks and clusters of intramolecular interactions, as well as their "communication" across the three-dimensional architecture have a prominent role in determining protein stability and function. Special attention has been dedicated to their role in thermal adaptation. In the present contribution, seven previously experimentally characterized mutants of a cold-adapted α-amylase, featuring mesophilic-like behavior, have been investigated by multiple molecular dynamics simulations, essential dynamics and analyses of correlated motions and electrostatic interactions. Our data elucidate the molecular mechanisms underlying the ability of single and multiple mutations to globally modulate dynamic properties of the cold-adapted α-amylase, including both local and complex unpredictable distal effects. Our investigation also shows, in agreement with the experimental data, that the conversion of the cold-adapted enzyme in a warm-adapted variant cannot be completely achieved by the introduction of few mutations, also providing the rationale behind these effects. Moreover, pivotal residues, which are likely to mediate the effects induced by the mutations, have been identified from our analyses, as well as a group of suitable candidates for protein engineering. In fact, a subset of residues here identified (as an isoleucine, or networks of mesophilic-like salt bridges in the proximity of the catalytic site) should be considered, in experimental studies, to get a more efficient modification of the features of the cold-adapted enzyme.
url http://europepmc.org/articles/PMC3168468?pdf=render
work_keys_str_mv AT elenapapaleo moleculardynamicsofmesophiliclikemutantsofacoldadaptedenzymeinsightsintodistaleffectsinducedbythemutations
AT marcopasi moleculardynamicsofmesophiliclikemutantsofacoldadaptedenzymeinsightsintodistaleffectsinducedbythemutations
AT matteotiberti moleculardynamicsofmesophiliclikemutantsofacoldadaptedenzymeinsightsintodistaleffectsinducedbythemutations
AT lucadegioia moleculardynamicsofmesophiliclikemutantsofacoldadaptedenzymeinsightsintodistaleffectsinducedbythemutations
_version_ 1724771863202103296