ch-TOG family proteins, including the budding yeast Stu2, are essential for spindle formation and chromosome segregation. Such functions depend on an array of activities ranging from microtubule nucleation, polymerization, and depolymerization to conferring tension sensitivity to kinetochores. This functional diversity makes it challenging to dissect these various functions and understand their relative importance. Here, we developed separation-of-function mutants and used artificial tethering tools to elucidate several important mechanistic insights into Stu2’s essential role. We show that Stu2’s microtubule polymerization activity depends on its basic linker region but is surprisingly dispensable for viability; that in fact, Stu2 carries out an essential kinetochore-associated function; and finally, that Stu2’s precise location within the kinetochore is critical for its function, suggesting a spatial separation mode of action may underlie its ability to confer tension sensitivity. Our findings highlight the significance of Stu2’s kinetochore role and provide insights into the molecular mechanisms by which it performs its various functions.
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6 October 2025
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Article|
September 03 2025
Stu2 performs an essential kinetochore function independent of its microtubule polymerase activity
Ahmed A. Abouelghar
,
Ahmed A. Abouelghar
*
(Conceptualization, Data curation, Formal analysis, Investigation, Methodology, Resources, Validation, Visualization, Writing - original draft, Writing - review & editing)
1Department of Biochemistry,
University of Utah School of Medicine
, Salt Lake City, UT, USA
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Joseph S. Carrier
,
Joseph S. Carrier
*
(Conceptualization, Formal analysis, Investigation, Methodology, Visualization, Writing - original draft)
1Department of Biochemistry,
University of Utah School of Medicine
, Salt Lake City, UT, USA
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Julia R. Torvi
,
Julia R. Torvi
(Data curation, Formal analysis, Investigation, Methodology, Validation, Visualization, Writing - review & editing)
2Department of Molecular and Cell Biology,
University of California, Berkeley
, Berkeley, CA, USA
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Erin Jenson
,
Erin Jenson
(Investigation, Validation, Writing - review & editing)
1Department of Biochemistry,
University of Utah School of Medicine
, Salt Lake City, UT, USA
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Chloe Jones
,
Chloe Jones
(Investigation)
1Department of Biochemistry,
University of Utah School of Medicine
, Salt Lake City, UT, USA
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Binnu Gangadharan
,
Binnu Gangadharan
(Investigation)
3Departments of Biophysics and Biochemistry,
UT Southwestern Medical Center
, Dallas, TX, USA
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Elisabeth G. Prinslow
,
Elisabeth G. Prinslow
(Investigation)
3Departments of Biophysics and Biochemistry,
UT Southwestern Medical Center
, Dallas, TX, USA
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Luke M. Rice
,
Luke M. Rice
(Funding acquisition, Project administration, Resources, Supervision, Writing - review & editing)
3Departments of Biophysics and Biochemistry,
UT Southwestern Medical Center
, Dallas, TX, USA
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Brent Lagesse
,
Brent Lagesse
(Data curation, Resources, Software, Supervision, Writing - original draft)
4Division of Computing and Software Systems,
School of STEM, University of Washington Bothell
, Bothell, WA, USA
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Georjana Barnes
,
Georjana Barnes
(Resources, Supervision)
2Department of Molecular and Cell Biology,
University of California, Berkeley
, Berkeley, CA, USA
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Matthew P. Miller
(Conceptualization, Formal analysis, Funding acquisition, Methodology, Project administration, Resources, Supervision, Visualization, Writing - original draft, Writing - review & editing)
1Department of Biochemistry,
University of Utah School of Medicine
, Salt Lake City, UT, USA
Correspondence to Matthew P. Miller: [email protected]
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Ahmed A. Abouelghar
https://orcid.org/0009-0003-0239-2132
Conceptualization, Data curation, Formal analysis, Investigation, Methodology, Resources, Validation, Visualization, Writing - original draft, Writing - review & editing
*
1Department of Biochemistry,
University of Utah School of Medicine
, Salt Lake City, UT, USA
Joseph S. Carrier
https://orcid.org/0009-0009-8803-7804
Conceptualization, Formal analysis, Investigation, Methodology, Visualization, Writing - original draft
*
1Department of Biochemistry,
University of Utah School of Medicine
, Salt Lake City, UT, USA
Julia R. Torvi
https://orcid.org/0000-0002-2323-4438
Data curation, Formal analysis, Investigation, Methodology, Validation, Visualization, Writing - review & editing
2Department of Molecular and Cell Biology,
University of California, Berkeley
, Berkeley, CA, USA
Erin Jenson
https://orcid.org/0000-0002-0977-3523
Investigation, Validation, Writing - review & editing
1Department of Biochemistry,
University of Utah School of Medicine
, Salt Lake City, UT, USA
Chloe Jones
https://orcid.org/0009-0004-0256-7921
Investigation
1Department of Biochemistry,
University of Utah School of Medicine
, Salt Lake City, UT, USA
Binnu Gangadharan
https://orcid.org/0000-0002-5126-1089
Investigation
3Departments of Biophysics and Biochemistry,
UT Southwestern Medical Center
, Dallas, TX, USA
Elisabeth G. Prinslow
https://orcid.org/0009-0000-2081-2522
Investigation
3Departments of Biophysics and Biochemistry,
UT Southwestern Medical Center
, Dallas, TX, USA
Luke M. Rice
https://orcid.org/0000-0001-6551-3307
Funding acquisition, Project administration, Resources, Supervision, Writing - review & editing
3Departments of Biophysics and Biochemistry,
UT Southwestern Medical Center
, Dallas, TX, USA
Brent Lagesse
https://orcid.org/0000-0002-0996-408X
Data curation, Resources, Software, Supervision, Writing - original draft
4Division of Computing and Software Systems,
School of STEM, University of Washington Bothell
, Bothell, WA, USA
Georjana Barnes
https://orcid.org/0000-0003-2083-358X
Resources, Supervision
2Department of Molecular and Cell Biology,
University of California, Berkeley
, Berkeley, CA, USA
Matthew P. Miller
https://orcid.org/0000-0003-2012-7546
Conceptualization, Formal analysis, Funding acquisition, Methodology, Project administration, Resources, Supervision, Visualization, Writing - original draft, Writing - review & editing
1Department of Biochemistry,
University of Utah School of Medicine
, Salt Lake City, UT, USA
Correspondence to Matthew P. Miller: [email protected]
*
A.A. Abouelghar and J.S. Carrier contributed equally to this paper.
Disclosures: The authors declare no competing interests exist.
J.S. Carrier’s current affiliation is University of Rochester School of Medicine and Dentistry, Rochester, NY, USA.
J.R. Torvi’s current affiliation is Allen Institute for Cell Science, Seattle, WA, USA.
Received:
September 12 2022
Revision Received:
April 30 2025
Accepted:
July 21 2025
Online ISSN: 1540-8140
Print ISSN: 0021-9525
Funding
Funder(s):
Judy Chandler Webb Endowed Chair in the Biological Sciences
Funder(s):
Robert A. Welch Foundation
- Award Id(s): I-1901
Funder(s):
5 For the Fight
Funder(s):
Pew Biomedical Scholars
Funder(s):
National Institutes of Health
- Award Id(s): R01GM098543,R01GM047842,R35GM142749
© 2025 Abouelghar et al.
2025
Abouelghar et al.
This article is distributed under the terms as described at https://rupress.org/pages/terms102024/.
J Cell Biol (2025) 224 (10): e202209025.
Article history
Received:
September 12 2022
Revision Received:
April 30 2025
Accepted:
July 21 2025
Citation
Ahmed A. Abouelghar, Joseph S. Carrier, Julia R. Torvi, Erin Jenson, Chloe Jones, Binnu Gangadharan, Elisabeth G. Prinslow, Luke M. Rice, Brent Lagesse, Georjana Barnes, Matthew P. Miller; Stu2 performs an essential kinetochore function independent of its microtubule polymerase activity. J Cell Biol 6 October 2025; 224 (10): e202209025. doi: https://doi.org/10.1083/jcb.202209025
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