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Updated: May 8, 2026

Motility of Single Molecules and Clusters of Bi-Directional Kinesin-5 Cin8 Purified from S. cerevisiae Cells
Published on: February 2, 2022
Kinesin-5: cross-bridging mechanism to targeted clinical therapy
Edward J Wojcik1, Rebecca S Buckley, Jessica Richard
1Department of Biochemistry and Molecular Biology, LSU School of Medicine & Health Sciences Center, New Orleans, LA 70112, USA.
Abstract:
Kinesin motor proteins comprise an ATPase superfamily that works hand in hand with microtubules in every eukaryote. The mitotic kinesins, by virtue of their potential therapeutic role in cancerous cells, have been a major focus of research for the past 28 years since the discovery of the canonical Kinesin-1 heavy chain. Perhaps the simplest player in mitotic spindle assembly, Kinesin-5 (also known as Kif11, Eg5, or kinesin spindle protein, KSP) is a plus-end-directed motor localized to interpolar spindle microtubules and to the spindle poles. Comprised of a homotetramer complex, its function primarily is to slide anti-parallel microtubules apart from one another. Based on multi-faceted analyses of this motor from numerous laboratories over the years, we have learned a great deal about the function of this motor at the atomic level for catalysis and as an integrated element of the cytoskeleton. These data have, in turn, informed the function of motile kinesins on the whole, as well as spearheaded integrative models of the mitotic apparatus in particular and regulation of the microtubule cytoskeleton in general. We review what is known about how this nanomotor works, its place inside the cytoskeleton of cells, and its small-molecule inhibitors that provide a toolbox for understanding motor function and for anticancer treatment in the clinic.
Insights
Kinesin-5 (Kif11) is a crucial mitotic motor protein that slides microtubules apart during cell division. Its function is key to understanding the cytoskeleton and developing anticancer treatments.
Area of Science:
- Cell Biology
- Biochemistry
- Molecular Motors
Background:
- Kinesin motor proteins are essential for cellular functions in eukaryotes.
- Mitotic kinesins, particularly Kinesin-5 (Kif11), are vital for spindle assembly and are targets for cancer therapy.
Purpose of the Study:
- To review the known functions of Kinesin-5 at atomic and cytoskeletal levels.
- To discuss Kinesin-5's role in cellular processes and its small-molecule inhibitors for research and clinical applications.
Main Methods:
- Literature review of multi-faceted analyses from numerous laboratories.
- Examination of Kinesin-5's atomic-level catalysis and integration within the cytoskeleton.
Main Results:
- Kinesin-5 functions as a homotetramer to slide anti-parallel microtubules apart.
- Studies have elucidated Kinesin-5's mechanism, cytoskeletal role, and potential as an anticancer target.
Conclusions:
- Understanding Kinesin-5 provides insights into kinesin motor function, mitotic apparatus, and microtubule regulation.
- Small-molecule inhibitors of Kinesin-5 are valuable tools for research and clinical anticancer strategies.
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