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Nucleotide-free structures of KIF20A illuminate atypical mechanochemistry in this kinesin-6

KIF20A is a critical kinesin for cell division and a promising anti-cancer drug target. The mechanisms underlying its cellular roles remain elusive. Interestingly, unusual coupling between the nucleotide- and microtubule-binding sites of this kinesin-6 has been reported, but little is known about ho...

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Autores principales: Ranaivoson, Fanomezana Moutse, Crozet, Vincent, Benoit, Matthieu P. M. H., Abdalla Mohammed Khalid, Amna, Kikuti, Carlos, Sirkia, Helena, El Marjou, Ahmed, Miserey-Lenkei, Stéphanie, Asenjo, Ana B., Sosa, Hernando, Schmidt, Christoph F., Rosenfeld, Steven S., Houdusse, Anne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10508983/
https://www.ncbi.nlm.nih.gov/pubmed/37726093
http://dx.doi.org/10.1098/rsob.230122
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author Ranaivoson, Fanomezana Moutse
Crozet, Vincent
Benoit, Matthieu P. M. H.
Abdalla Mohammed Khalid, Amna
Kikuti, Carlos
Sirkia, Helena
El Marjou, Ahmed
Miserey-Lenkei, Stéphanie
Asenjo, Ana B.
Sosa, Hernando
Schmidt, Christoph F.
Rosenfeld, Steven S.
Houdusse, Anne
author_facet Ranaivoson, Fanomezana Moutse
Crozet, Vincent
Benoit, Matthieu P. M. H.
Abdalla Mohammed Khalid, Amna
Kikuti, Carlos
Sirkia, Helena
El Marjou, Ahmed
Miserey-Lenkei, Stéphanie
Asenjo, Ana B.
Sosa, Hernando
Schmidt, Christoph F.
Rosenfeld, Steven S.
Houdusse, Anne
author_sort Ranaivoson, Fanomezana Moutse
collection PubMed
description KIF20A is a critical kinesin for cell division and a promising anti-cancer drug target. The mechanisms underlying its cellular roles remain elusive. Interestingly, unusual coupling between the nucleotide- and microtubule-binding sites of this kinesin-6 has been reported, but little is known about how its divergent sequence leads to atypical motility properties. We present here the first high-resolution structure of its motor domain that delineates the highly unusual structural features of this motor, including a long L6 insertion that integrates into the core of the motor domain and that drastically affects allostery and ATPase activity. Together with the high-resolution cryo-electron microscopy microtubule-bound KIF20A structure that reveals the microtubule-binding interface, we dissect the peculiarities of the KIF20A sequence that influence its mechanochemistry, leading to low motility compared to other kinesins. Structural and functional insights from the KIF20A pre-power stroke conformation highlight the role of extended insertions in shaping the motor's mechanochemical cycle. Essential for force production and processivity is the length of the neck linker in kinesins. We highlight here the role of the sequence preceding the neck linker in controlling its backward docking and show that a neck linker four times longer than that in kinesin-1 is required for the activity of this motor.
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spelling pubmed-105089832023-09-20 Nucleotide-free structures of KIF20A illuminate atypical mechanochemistry in this kinesin-6 Ranaivoson, Fanomezana Moutse Crozet, Vincent Benoit, Matthieu P. M. H. Abdalla Mohammed Khalid, Amna Kikuti, Carlos Sirkia, Helena El Marjou, Ahmed Miserey-Lenkei, Stéphanie Asenjo, Ana B. Sosa, Hernando Schmidt, Christoph F. Rosenfeld, Steven S. Houdusse, Anne Open Biol Research KIF20A is a critical kinesin for cell division and a promising anti-cancer drug target. The mechanisms underlying its cellular roles remain elusive. Interestingly, unusual coupling between the nucleotide- and microtubule-binding sites of this kinesin-6 has been reported, but little is known about how its divergent sequence leads to atypical motility properties. We present here the first high-resolution structure of its motor domain that delineates the highly unusual structural features of this motor, including a long L6 insertion that integrates into the core of the motor domain and that drastically affects allostery and ATPase activity. Together with the high-resolution cryo-electron microscopy microtubule-bound KIF20A structure that reveals the microtubule-binding interface, we dissect the peculiarities of the KIF20A sequence that influence its mechanochemistry, leading to low motility compared to other kinesins. Structural and functional insights from the KIF20A pre-power stroke conformation highlight the role of extended insertions in shaping the motor's mechanochemical cycle. Essential for force production and processivity is the length of the neck linker in kinesins. We highlight here the role of the sequence preceding the neck linker in controlling its backward docking and show that a neck linker four times longer than that in kinesin-1 is required for the activity of this motor. The Royal Society 2023-09-20 /pmc/articles/PMC10508983/ /pubmed/37726093 http://dx.doi.org/10.1098/rsob.230122 Text en © 2023 The Authors. https://creativecommons.org/licenses/by/4.0/Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, provided the original author and source are credited.
spellingShingle Research
Ranaivoson, Fanomezana Moutse
Crozet, Vincent
Benoit, Matthieu P. M. H.
Abdalla Mohammed Khalid, Amna
Kikuti, Carlos
Sirkia, Helena
El Marjou, Ahmed
Miserey-Lenkei, Stéphanie
Asenjo, Ana B.
Sosa, Hernando
Schmidt, Christoph F.
Rosenfeld, Steven S.
Houdusse, Anne
Nucleotide-free structures of KIF20A illuminate atypical mechanochemistry in this kinesin-6
title Nucleotide-free structures of KIF20A illuminate atypical mechanochemistry in this kinesin-6
title_full Nucleotide-free structures of KIF20A illuminate atypical mechanochemistry in this kinesin-6
title_fullStr Nucleotide-free structures of KIF20A illuminate atypical mechanochemistry in this kinesin-6
title_full_unstemmed Nucleotide-free structures of KIF20A illuminate atypical mechanochemistry in this kinesin-6
title_short Nucleotide-free structures of KIF20A illuminate atypical mechanochemistry in this kinesin-6
title_sort nucleotide-free structures of kif20a illuminate atypical mechanochemistry in this kinesin-6
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10508983/
https://www.ncbi.nlm.nih.gov/pubmed/37726093
http://dx.doi.org/10.1098/rsob.230122
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