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Cyclin-dependent kinase 1 depolymerizes nuclear lamin filaments by disrupting the head-to-tail interaction of the lamin central rod domain

Nuclear lamins maintain the nuclear envelope structure by forming long linear filaments via two alternating molecular arrangements of coiled-coil dimers, known as A11 and A22 binding modes. The A11 binding mode is characterized by the antiparallel interactions between coil 1b domains, whereas the A2...

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Autores principales: Jeong, Soyeon, Ahn, Jinsook, Jo, Inseong, Kang, So-Mi, Park, Bum-Joon, Cho, Hyun-Soo, Kim, Yong-Hak, Ha, Nam-Chul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9400090/
https://www.ncbi.nlm.nih.gov/pubmed/35839855
http://dx.doi.org/10.1016/j.jbc.2022.102256
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author Jeong, Soyeon
Ahn, Jinsook
Jo, Inseong
Kang, So-Mi
Park, Bum-Joon
Cho, Hyun-Soo
Kim, Yong-Hak
Ha, Nam-Chul
author_facet Jeong, Soyeon
Ahn, Jinsook
Jo, Inseong
Kang, So-Mi
Park, Bum-Joon
Cho, Hyun-Soo
Kim, Yong-Hak
Ha, Nam-Chul
author_sort Jeong, Soyeon
collection PubMed
description Nuclear lamins maintain the nuclear envelope structure by forming long linear filaments via two alternating molecular arrangements of coiled-coil dimers, known as A11 and A22 binding modes. The A11 binding mode is characterized by the antiparallel interactions between coil 1b domains, whereas the A22 binding mode is facilitated by interactions between the coil 2 domains of lamin. The junction between A11- and A22-interacting dimers in the lamin tetramer produces another parallel head–tail interaction between coil 1a and the C-terminal region of coil 2, called the ACN interaction. During mitosis, phosphorylation in the lamin N-terminal head region by the cyclin-dependent kinase (CDK) complex triggers depolymerization of lamin filaments, but the associated mechanisms remain unknown at the molecular level. In this study, we revealed using the purified proteins that phosphorylation by the CDK1 complex promotes disassembly of lamin filaments by directly abolishing the ACN interaction between coil 1a and the C-terminal portion of coil 2. We further observed that this interaction was disrupted as a result of alteration of the ionic interactions between coil 1a and coil 2. Combined with molecular modeling, we propose a mechanism for CDK1-dependent disassembly of the lamin filaments. Our results will help to elucidate the cell cycle–dependent regulation of nuclear morphology at the molecular level.
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spelling pubmed-94000902022-08-26 Cyclin-dependent kinase 1 depolymerizes nuclear lamin filaments by disrupting the head-to-tail interaction of the lamin central rod domain Jeong, Soyeon Ahn, Jinsook Jo, Inseong Kang, So-Mi Park, Bum-Joon Cho, Hyun-Soo Kim, Yong-Hak Ha, Nam-Chul J Biol Chem Research Article Nuclear lamins maintain the nuclear envelope structure by forming long linear filaments via two alternating molecular arrangements of coiled-coil dimers, known as A11 and A22 binding modes. The A11 binding mode is characterized by the antiparallel interactions between coil 1b domains, whereas the A22 binding mode is facilitated by interactions between the coil 2 domains of lamin. The junction between A11- and A22-interacting dimers in the lamin tetramer produces another parallel head–tail interaction between coil 1a and the C-terminal region of coil 2, called the ACN interaction. During mitosis, phosphorylation in the lamin N-terminal head region by the cyclin-dependent kinase (CDK) complex triggers depolymerization of lamin filaments, but the associated mechanisms remain unknown at the molecular level. In this study, we revealed using the purified proteins that phosphorylation by the CDK1 complex promotes disassembly of lamin filaments by directly abolishing the ACN interaction between coil 1a and the C-terminal portion of coil 2. We further observed that this interaction was disrupted as a result of alteration of the ionic interactions between coil 1a and coil 2. Combined with molecular modeling, we propose a mechanism for CDK1-dependent disassembly of the lamin filaments. Our results will help to elucidate the cell cycle–dependent regulation of nuclear morphology at the molecular level. American Society for Biochemistry and Molecular Biology 2022-07-15 /pmc/articles/PMC9400090/ /pubmed/35839855 http://dx.doi.org/10.1016/j.jbc.2022.102256 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Jeong, Soyeon
Ahn, Jinsook
Jo, Inseong
Kang, So-Mi
Park, Bum-Joon
Cho, Hyun-Soo
Kim, Yong-Hak
Ha, Nam-Chul
Cyclin-dependent kinase 1 depolymerizes nuclear lamin filaments by disrupting the head-to-tail interaction of the lamin central rod domain
title Cyclin-dependent kinase 1 depolymerizes nuclear lamin filaments by disrupting the head-to-tail interaction of the lamin central rod domain
title_full Cyclin-dependent kinase 1 depolymerizes nuclear lamin filaments by disrupting the head-to-tail interaction of the lamin central rod domain
title_fullStr Cyclin-dependent kinase 1 depolymerizes nuclear lamin filaments by disrupting the head-to-tail interaction of the lamin central rod domain
title_full_unstemmed Cyclin-dependent kinase 1 depolymerizes nuclear lamin filaments by disrupting the head-to-tail interaction of the lamin central rod domain
title_short Cyclin-dependent kinase 1 depolymerizes nuclear lamin filaments by disrupting the head-to-tail interaction of the lamin central rod domain
title_sort cyclin-dependent kinase 1 depolymerizes nuclear lamin filaments by disrupting the head-to-tail interaction of the lamin central rod domain
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9400090/
https://www.ncbi.nlm.nih.gov/pubmed/35839855
http://dx.doi.org/10.1016/j.jbc.2022.102256
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