Structural differences between C-terminal regions of tropomyosin isoforms

Tropomyosins are actin-binding regulatory proteins which overlap end-to-end along the filament. High resolution structures of the overlap regions were determined for muscle and non-muscle tropomyosins in the absence of actin. Conformations of the junction regions bound to actin are unknown. In this...

Full description

Bibliographic Details
Main Authors: Małgorzata Śliwińska, Joanna Moraczewska
Format: Article
Language:English
Published: PeerJ Inc. 2013-10-01
Series:PeerJ
Subjects:
Online Access:https://peerj.com/articles/181.pdf
id doaj-1450c9a60ea24be394956d2a9e421bf9
record_format Article
spelling doaj-1450c9a60ea24be394956d2a9e421bf92020-11-24T21:07:35ZengPeerJ Inc.PeerJ2167-83592013-10-011e18110.7717/peerj.181181Structural differences between C-terminal regions of tropomyosin isoformsMałgorzata Śliwińska0Joanna Moraczewska1Institute of Experimental Biology, Kazimierz Wielki University, Bydgoszcz, PolandInstitute of Experimental Biology, Kazimierz Wielki University, Bydgoszcz, PolandTropomyosins are actin-binding regulatory proteins which overlap end-to-end along the filament. High resolution structures of the overlap regions were determined for muscle and non-muscle tropomyosins in the absence of actin. Conformations of the junction regions bound to actin are unknown. In this work, orientation of the overlap on actin alone and on actin–myosin complex was evaluated by measuring FRET distances between a donor (AEDANS) attached to tropomyosin and an acceptor (DABMI) bound to actin’s Cys374. Donor was attached to the Cys residue introduced by site-directed mutagenesis near the C-terminal half of the overlap. The recombinant alpha-tropomyosin isoforms used in this study – skeletal muscle skTM, non-muscle TM2 and TM5a, and chimeric TM1b9a had various amino acid sequences of the N- and C-termini involved in the end-to-end overlap. The donor-acceptor distances calculated for each isoform varied between 36.4 Å and 48.1 Å. Rigor binding of myosin S1 increased the apparent FRET distances of skTM and TM2, but decreased the distances separating TM5a and TM1b9a from actin. The results show that isoform-specific sequences of the end-to-end overlaps determine orientations and dynamics of tropomyosin isoforms on actin. This can be important for specificity of tropomyosin in the regulation of actin filament diverse functions.https://peerj.com/articles/181.pdfActin filamentTropomyosinFRETIsoforms
collection DOAJ
language English
format Article
sources DOAJ
author Małgorzata Śliwińska
Joanna Moraczewska
spellingShingle Małgorzata Śliwińska
Joanna Moraczewska
Structural differences between C-terminal regions of tropomyosin isoforms
PeerJ
Actin filament
Tropomyosin
FRET
Isoforms
author_facet Małgorzata Śliwińska
Joanna Moraczewska
author_sort Małgorzata Śliwińska
title Structural differences between C-terminal regions of tropomyosin isoforms
title_short Structural differences between C-terminal regions of tropomyosin isoforms
title_full Structural differences between C-terminal regions of tropomyosin isoforms
title_fullStr Structural differences between C-terminal regions of tropomyosin isoforms
title_full_unstemmed Structural differences between C-terminal regions of tropomyosin isoforms
title_sort structural differences between c-terminal regions of tropomyosin isoforms
publisher PeerJ Inc.
series PeerJ
issn 2167-8359
publishDate 2013-10-01
description Tropomyosins are actin-binding regulatory proteins which overlap end-to-end along the filament. High resolution structures of the overlap regions were determined for muscle and non-muscle tropomyosins in the absence of actin. Conformations of the junction regions bound to actin are unknown. In this work, orientation of the overlap on actin alone and on actin–myosin complex was evaluated by measuring FRET distances between a donor (AEDANS) attached to tropomyosin and an acceptor (DABMI) bound to actin’s Cys374. Donor was attached to the Cys residue introduced by site-directed mutagenesis near the C-terminal half of the overlap. The recombinant alpha-tropomyosin isoforms used in this study – skeletal muscle skTM, non-muscle TM2 and TM5a, and chimeric TM1b9a had various amino acid sequences of the N- and C-termini involved in the end-to-end overlap. The donor-acceptor distances calculated for each isoform varied between 36.4 Å and 48.1 Å. Rigor binding of myosin S1 increased the apparent FRET distances of skTM and TM2, but decreased the distances separating TM5a and TM1b9a from actin. The results show that isoform-specific sequences of the end-to-end overlaps determine orientations and dynamics of tropomyosin isoforms on actin. This can be important for specificity of tropomyosin in the regulation of actin filament diverse functions.
topic Actin filament
Tropomyosin
FRET
Isoforms
url https://peerj.com/articles/181.pdf
work_keys_str_mv AT małgorzatasliwinska structuraldifferencesbetweencterminalregionsoftropomyosinisoforms
AT joannamoraczewska structuraldifferencesbetweencterminalregionsoftropomyosinisoforms
_version_ 1716762287235137536