Literature DB >> 31610238

Lateral A11 type tetramerization in lamins.

Anastasia V Lilina1, Anastasia A Chernyatina1, Dmytro Guzenko1, Sergei V Strelkov2.   

Abstract

The assembly of intermediate filaments (IFs) including nuclear lamins is driven by specific interactions of the elementary coiled-coil dimers in both lateral and longitudinal direction. The assembly mode A11 is dependent on lateral tetramerization of the second coiled-coil segment (coil1b) in antiparallel fashion. Recent cryo-electron microscopy studies pointed to 3.5 nm lamin filaments built from two antiparallel threads of longitudinally associated dimers but little molecular detail is available to date. Here we present the 2.6 Å resolution X-ray structure of a lamin A fragment including residues 65-222 which reveals the molecular basis of the A11 interaction. The crystal structure also indicates a continuous α-helical structure for the preceding linker L1 region. The middle part of the antiparallel tetramer reveals unique interactions due to the lamin-specific 42-residue insert in coil1b. At the same time, distinct characteristics of this insert provide for the preservation of common structural principles shared with lateral coil1b tetramers of vimentin and keratin K1/K10. In addition, structural analysis suggests that the A11 interaction in lamins is somewhat weaker than in cytoplasmic IFs, despite a 30% longer overlap. Establishing the structural detail of the A11 interaction across IF types is the first step towards a rational understanding of the IF assembly process which is indispensable for establishing the mechanism of disease-related mutations.
Copyright © 2019 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Coiled coil; Intermediate filaments; Nuclear lamins; X-ray crystallography

Mesh:

Substances:

Year:  2019        PMID: 31610238     DOI: 10.1016/j.jsb.2019.10.006

Source DB:  PubMed          Journal:  J Struct Biol        ISSN: 1047-8477            Impact factor:   2.867


  11 in total

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5.  In Silico and In Vivo Analysis of Amino Acid Substitutions That Cause Laminopathies.

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Review 7.  Lamin post-translational modifications: emerging toggles of nuclear organization and function.

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9.  Molecular Modeling of Pathogenic Mutations in the Keratin 1B Domain.

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10.  Crystal structure of progeria mutant S143F lamin A/C reveals increased hydrophobicity driving nuclear deformation.

Authors:  Jinsook Ahn; Soyeon Jeong; So-Mi Kang; Inseong Jo; Bum-Joon Park; Nam-Chul Ha
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