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Structural analysis of smooth muscle tropomyosin ? and ? isoforms.


ABSTRACT: A large number of tropomyosin (Tm) isoforms function as gatekeepers of the actin filament, controlling the spatiotemporal access of actin-binding proteins to specialized actin networks. Residues ?40-80 vary significantly among Tm isoforms, but the impact of sequence variation on Tm structure and interactions with actin is poorly understood, because structural studies have focused on skeletal muscle Tm?. We describe structures of N-terminal fragments of smooth muscle Tm? and Tm? (sm-Tm? and sm-Tm?). The 2.0-? structure of sm-Tm?81 (81-aa) resembles that of skeletal Tm?, displaying a similar super-helical twist matching the contours of the actin filament. The 1.8-? structure of sm-Tm?98 (98-aa) unexpectedly reveals an antiparallel coiled coil, with the two chains staggered by only 4 amino acids and displaying hydrophobic core interactions similar to those of the parallel dimer. In contrast, the 2.5-? structure of sm-Tm?98, containing Gly-Ala-Ser at the N terminus to mimic acetylation, reveals a parallel coiled coil. None of the structures contains coiled-coil stabilizing elements, favoring the formation of head-to-tail overlap complexes in four of five crystallographically independent parallel dimers. These complexes show similarly arranged 4-helix bundles stabilized by hydrophobic interactions, but the extent of the overlap varies between sm-Tm?98 and sm-Tm?81 from 2 to 3 helical turns. The formation of overlap complexes thus appears to be an intrinsic property of the Tm coiled coil, with the specific nature of hydrophobic contacts determining the extent of the overlap. Overall, the results suggest that sequence variation among Tm isoforms has a limited effect on actin binding but could determine its gatekeeper function.

SUBMITTER: Rao JN 

PROVIDER: S-EPMC3270971 | biostudies-literature | 2012 Jan

REPOSITORIES: biostudies-literature

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Structural analysis of smooth muscle tropomyosin α and β isoforms.

Rao Jampani Nageswara JN   Rivera-Santiago Roland R   Li Xiaochuan Edward XE   Lehman William W   Dominguez Roberto R  

The Journal of biological chemistry 20111127 5


A large number of tropomyosin (Tm) isoforms function as gatekeepers of the actin filament, controlling the spatiotemporal access of actin-binding proteins to specialized actin networks. Residues ∼40-80 vary significantly among Tm isoforms, but the impact of sequence variation on Tm structure and interactions with actin is poorly understood, because structural studies have focused on skeletal muscle Tmα. We describe structures of N-terminal fragments of smooth muscle Tmα and Tmβ (sm-Tmα and sm-Tm  ...[more]

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