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Small-molecule inhibitors of the AAA+ ATPase motor cytoplasmic dynein

The conversion of chemical energy into mechanical force by AAA+ (ATPases associated with diverse cellular activities) ATPases is integral to cellular processes, including DNA replication, protein unfolding, cargo transport, and membrane fusion(1). The AAA+ ATPase motor cytoplasmic dynein regulates c...

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Autores principales: Firestone, Ari J., Weinger, Joshua S., Maldonado, Maria, Barlan, Kari, Langston, Lance D., O'Donnell, Michael, Gelfand, Vladimir I., Kapoor, Tarun M., Chen, James K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3321072/
https://www.ncbi.nlm.nih.gov/pubmed/22425997
http://dx.doi.org/10.1038/nature10936
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author Firestone, Ari J.
Weinger, Joshua S.
Maldonado, Maria
Barlan, Kari
Langston, Lance D.
O'Donnell, Michael
Gelfand, Vladimir I.
Kapoor, Tarun M.
Chen, James K.
author_facet Firestone, Ari J.
Weinger, Joshua S.
Maldonado, Maria
Barlan, Kari
Langston, Lance D.
O'Donnell, Michael
Gelfand, Vladimir I.
Kapoor, Tarun M.
Chen, James K.
author_sort Firestone, Ari J.
collection PubMed
description The conversion of chemical energy into mechanical force by AAA+ (ATPases associated with diverse cellular activities) ATPases is integral to cellular processes, including DNA replication, protein unfolding, cargo transport, and membrane fusion(1). The AAA+ ATPase motor cytoplasmic dynein regulates ciliary trafficking(2), mitotic spindle formation(3), and organelle transport(4), and dissecting its precise functions has been challenging due to its rapid timescale of action and the lack of cell-permeable, chemical modulators. Here we describe the discovery of ciliobrevins, the first specific small-molecule antagonists of cytoplasmic dynein. Ciliobrevins perturb protein trafficking within the primary cilium, leading to their malformation and Hedgehog signaling blockade. Ciliobrevins also prevent spindle pole focusing, kinetochore-microtubule attachment, melanosome aggregation, and peroxisome motility in cultured cells. We further demonstrate the ability of ciliobrevins to block dynein-dependent microtubule gliding and ATPase activity in vitro. Ciliobrevins therefore will be useful reagents for studying cellular processes that require this microtubule motor and may guide the development of additional AAA+ ATPase superfamily inhibitors.
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spelling pubmed-33210722012-10-05 Small-molecule inhibitors of the AAA+ ATPase motor cytoplasmic dynein Firestone, Ari J. Weinger, Joshua S. Maldonado, Maria Barlan, Kari Langston, Lance D. O'Donnell, Michael Gelfand, Vladimir I. Kapoor, Tarun M. Chen, James K. Nature Article The conversion of chemical energy into mechanical force by AAA+ (ATPases associated with diverse cellular activities) ATPases is integral to cellular processes, including DNA replication, protein unfolding, cargo transport, and membrane fusion(1). The AAA+ ATPase motor cytoplasmic dynein regulates ciliary trafficking(2), mitotic spindle formation(3), and organelle transport(4), and dissecting its precise functions has been challenging due to its rapid timescale of action and the lack of cell-permeable, chemical modulators. Here we describe the discovery of ciliobrevins, the first specific small-molecule antagonists of cytoplasmic dynein. Ciliobrevins perturb protein trafficking within the primary cilium, leading to their malformation and Hedgehog signaling blockade. Ciliobrevins also prevent spindle pole focusing, kinetochore-microtubule attachment, melanosome aggregation, and peroxisome motility in cultured cells. We further demonstrate the ability of ciliobrevins to block dynein-dependent microtubule gliding and ATPase activity in vitro. Ciliobrevins therefore will be useful reagents for studying cellular processes that require this microtubule motor and may guide the development of additional AAA+ ATPase superfamily inhibitors. 2012-03-18 /pmc/articles/PMC3321072/ /pubmed/22425997 http://dx.doi.org/10.1038/nature10936 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Firestone, Ari J.
Weinger, Joshua S.
Maldonado, Maria
Barlan, Kari
Langston, Lance D.
O'Donnell, Michael
Gelfand, Vladimir I.
Kapoor, Tarun M.
Chen, James K.
Small-molecule inhibitors of the AAA+ ATPase motor cytoplasmic dynein
title Small-molecule inhibitors of the AAA+ ATPase motor cytoplasmic dynein
title_full Small-molecule inhibitors of the AAA+ ATPase motor cytoplasmic dynein
title_fullStr Small-molecule inhibitors of the AAA+ ATPase motor cytoplasmic dynein
title_full_unstemmed Small-molecule inhibitors of the AAA+ ATPase motor cytoplasmic dynein
title_short Small-molecule inhibitors of the AAA+ ATPase motor cytoplasmic dynein
title_sort small-molecule inhibitors of the aaa+ atpase motor cytoplasmic dynein
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3321072/
https://www.ncbi.nlm.nih.gov/pubmed/22425997
http://dx.doi.org/10.1038/nature10936
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