BtubA-BtubB heterodimer is an essential intermediate in protofilament assembly.

BACKGROUND:BtubA and BtubB are two tubulin-like genes found in the bacterium Prosthecobacter. Our work and a previous crystal structure suggest that BtubB corresponds to alpha-tubulin and BtubA to beta-tubulin. A 1:1 mixture of the two proteins assembles into tubulin-like protofilaments, which furth...

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Main Authors: Christopher A Sontag, Harvey Sage, Harold P Erickson
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2009-09-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2746283?pdf=render
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spelling doaj-673ff550cb16441b9b93b2e9c95097962020-11-24T21:55:52ZengPublic Library of Science (PLoS)PLoS ONE1932-62032009-09-0149e725310.1371/journal.pone.0007253BtubA-BtubB heterodimer is an essential intermediate in protofilament assembly.Christopher A SontagHarvey SageHarold P EricksonBACKGROUND:BtubA and BtubB are two tubulin-like genes found in the bacterium Prosthecobacter. Our work and a previous crystal structure suggest that BtubB corresponds to alpha-tubulin and BtubA to beta-tubulin. A 1:1 mixture of the two proteins assembles into tubulin-like protofilaments, which further aggregate into pairs and bundles. The proteins also form a BtubA/B heterodimer, which appears to be a repeating subunit in the protofilament. METHODOLOGY/PRINCIPAL FINDINGS:We have designed point mutations to disrupt the longitudinal interfaces bonding subunits into protofilaments. The mutants are in two classes, within dimers and between dimers. We have characterized one mutant of each class for BtubA and BtubB. When mixed 1:1 with a wild type partner, none of the mutants were capable of assembly. An excess of between-dimer mutants could depolymerize preformed wild type polymers, while within-dimer mutants had no activity. CONCLUSIONS:An essential first step in assembly of BtubA + BtubB is formation of a heterodimer. An excess of between-dimer mutants depolymerize wild type BtubA/B by sequestering the partner wild type subunit into inactive dimers. Within-dimer mutants cannot form dimers and have no activity.http://europepmc.org/articles/PMC2746283?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Christopher A Sontag
Harvey Sage
Harold P Erickson
spellingShingle Christopher A Sontag
Harvey Sage
Harold P Erickson
BtubA-BtubB heterodimer is an essential intermediate in protofilament assembly.
PLoS ONE
author_facet Christopher A Sontag
Harvey Sage
Harold P Erickson
author_sort Christopher A Sontag
title BtubA-BtubB heterodimer is an essential intermediate in protofilament assembly.
title_short BtubA-BtubB heterodimer is an essential intermediate in protofilament assembly.
title_full BtubA-BtubB heterodimer is an essential intermediate in protofilament assembly.
title_fullStr BtubA-BtubB heterodimer is an essential intermediate in protofilament assembly.
title_full_unstemmed BtubA-BtubB heterodimer is an essential intermediate in protofilament assembly.
title_sort btuba-btubb heterodimer is an essential intermediate in protofilament assembly.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2009-09-01
description BACKGROUND:BtubA and BtubB are two tubulin-like genes found in the bacterium Prosthecobacter. Our work and a previous crystal structure suggest that BtubB corresponds to alpha-tubulin and BtubA to beta-tubulin. A 1:1 mixture of the two proteins assembles into tubulin-like protofilaments, which further aggregate into pairs and bundles. The proteins also form a BtubA/B heterodimer, which appears to be a repeating subunit in the protofilament. METHODOLOGY/PRINCIPAL FINDINGS:We have designed point mutations to disrupt the longitudinal interfaces bonding subunits into protofilaments. The mutants are in two classes, within dimers and between dimers. We have characterized one mutant of each class for BtubA and BtubB. When mixed 1:1 with a wild type partner, none of the mutants were capable of assembly. An excess of between-dimer mutants could depolymerize preformed wild type polymers, while within-dimer mutants had no activity. CONCLUSIONS:An essential first step in assembly of BtubA + BtubB is formation of a heterodimer. An excess of between-dimer mutants depolymerize wild type BtubA/B by sequestering the partner wild type subunit into inactive dimers. Within-dimer mutants cannot form dimers and have no activity.
url http://europepmc.org/articles/PMC2746283?pdf=render
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