Separation of Coiled-Coil Structures in Lamin A/C is Required for the Elongation of the Filament
Intermediate filaments (IFs) commonly have structural elements of a central α-helical coiled-coil domain consisting of coil 1a, coil 1b, coil 2, and their flanking linkers. Recently, the crystal structure of a long lamin A/C fragment was determined and showed detailed features of a tetrameric unit....
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doaj-f5a46fff13c1425eb23170446c77a0982021-01-01T00:05:29ZengMDPI AGCells2073-44092021-12-0110555510.3390/cells10010055Separation of Coiled-Coil Structures in Lamin A/C is Required for the Elongation of the FilamentJinsook Ahn0Soyeon Jeong1So-mi Kang2Inseong Jo3Bum-Joon Park4Nam-Chul Ha5Department of Agricultural Biotechnology, Centre for Food and Bioconvergence, and Research Institute for Agriculture and Life Sciences, CALS, Seoul National University, Seoul 08826, KoreaDepartment of Agricultural Biotechnology, Centre for Food and Bioconvergence, and Research Institute for Agriculture and Life Sciences, CALS, Seoul National University, Seoul 08826, KoreaDepartment of Molecular Biology, College of Natural Science, Pusan National University, Busan 46241, KoreaDepartment of Agricultural Biotechnology, Centre for Food and Bioconvergence, and Research Institute for Agriculture and Life Sciences, CALS, Seoul National University, Seoul 08826, KoreaDepartment of Molecular Biology, College of Natural Science, Pusan National University, Busan 46241, KoreaDepartment of Agricultural Biotechnology, Centre for Food and Bioconvergence, and Research Institute for Agriculture and Life Sciences, CALS, Seoul National University, Seoul 08826, KoreaIntermediate filaments (IFs) commonly have structural elements of a central α-helical coiled-coil domain consisting of coil 1a, coil 1b, coil 2, and their flanking linkers. Recently, the crystal structure of a long lamin A/C fragment was determined and showed detailed features of a tetrameric unit. The structure further suggested a new binding mode between tetramers, designated eA22, where a parallel overlap of coil 1a and coil 2 is the critical interaction. This study investigated the biochemical effects of genetic mutations causing human diseases, focusing on the eA22 interaction. The mutant proteins exhibited either weakened or augmented interactions between coil 1a and coil 2. The ensuing biochemical results indicated that the interaction requires the separation of the coiled-coils in the N-terminal of coil 1a and the C-terminal of coil 2, coupled with the structural transition in the central α-helical rod domain. This study provides insight into the role of coil 1a as a molecular regulator in the elongation of IF proteins.https://www.mdpi.com/2073-4409/10/1/55nuclear lamin A/Cfilament assemblyEDMDassembly mechanismlaminopathieseA22 interaction |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jinsook Ahn Soyeon Jeong So-mi Kang Inseong Jo Bum-Joon Park Nam-Chul Ha |
spellingShingle |
Jinsook Ahn Soyeon Jeong So-mi Kang Inseong Jo Bum-Joon Park Nam-Chul Ha Separation of Coiled-Coil Structures in Lamin A/C is Required for the Elongation of the Filament Cells nuclear lamin A/C filament assembly EDMD assembly mechanism laminopathies eA22 interaction |
author_facet |
Jinsook Ahn Soyeon Jeong So-mi Kang Inseong Jo Bum-Joon Park Nam-Chul Ha |
author_sort |
Jinsook Ahn |
title |
Separation of Coiled-Coil Structures in Lamin A/C is Required for the Elongation of the Filament |
title_short |
Separation of Coiled-Coil Structures in Lamin A/C is Required for the Elongation of the Filament |
title_full |
Separation of Coiled-Coil Structures in Lamin A/C is Required for the Elongation of the Filament |
title_fullStr |
Separation of Coiled-Coil Structures in Lamin A/C is Required for the Elongation of the Filament |
title_full_unstemmed |
Separation of Coiled-Coil Structures in Lamin A/C is Required for the Elongation of the Filament |
title_sort |
separation of coiled-coil structures in lamin a/c is required for the elongation of the filament |
publisher |
MDPI AG |
series |
Cells |
issn |
2073-4409 |
publishDate |
2021-12-01 |
description |
Intermediate filaments (IFs) commonly have structural elements of a central α-helical coiled-coil domain consisting of coil 1a, coil 1b, coil 2, and their flanking linkers. Recently, the crystal structure of a long lamin A/C fragment was determined and showed detailed features of a tetrameric unit. The structure further suggested a new binding mode between tetramers, designated eA22, where a parallel overlap of coil 1a and coil 2 is the critical interaction. This study investigated the biochemical effects of genetic mutations causing human diseases, focusing on the eA22 interaction. The mutant proteins exhibited either weakened or augmented interactions between coil 1a and coil 2. The ensuing biochemical results indicated that the interaction requires the separation of the coiled-coils in the N-terminal of coil 1a and the C-terminal of coil 2, coupled with the structural transition in the central α-helical rod domain. This study provides insight into the role of coil 1a as a molecular regulator in the elongation of IF proteins. |
topic |
nuclear lamin A/C filament assembly EDMD assembly mechanism laminopathies eA22 interaction |
url |
https://www.mdpi.com/2073-4409/10/1/55 |
work_keys_str_mv |
AT jinsookahn separationofcoiledcoilstructuresinlaminacisrequiredfortheelongationofthefilament AT soyeonjeong separationofcoiledcoilstructuresinlaminacisrequiredfortheelongationofthefilament AT somikang separationofcoiledcoilstructuresinlaminacisrequiredfortheelongationofthefilament AT inseongjo separationofcoiledcoilstructuresinlaminacisrequiredfortheelongationofthefilament AT bumjoonpark separationofcoiledcoilstructuresinlaminacisrequiredfortheelongationofthefilament AT namchulha separationofcoiledcoilstructuresinlaminacisrequiredfortheelongationofthefilament |
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