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Published on: January 20, 2016
A kinesin-based approach for inducing chromosome-specific mis-segregation in human cells
My Anh Truong1,2, Paula Cané-Gasull1,2, Sippe G de Vries1,2
1Oncode Institute, Utrecht, The Netherlands.
Abstract:
Various cancer types exhibit characteristic and recurrent aneuploidy patterns. The origins of these cancer type-specific karyotypes are still unknown, partly because introducing or eliminating specific chromosomes in human cells still poses a challenge. Here, we describe a novel strategy to induce mis-segregation of specific chromosomes in different human cell types. We employed Tet repressor or nuclease-dead Cas9 to link a microtubule minus-end-directed kinesin (Kinesin14VIb) from Physcomitrella patens to integrated Tet operon repeats and chromosome-specific endogenous repeats, respectively. By live- and fixed-cell imaging, we observed poleward movement of the targeted loci during (pro)metaphase. Kinesin14VIb-mediated pulling forces on the targeted chromosome were counteracted by forces from kinetochore-attached microtubules. This tug-of-war resulted in chromosome-specific segregation errors during anaphase and revealed that spindle forces can heavily stretch chromosomal arms. By single-cell whole-genome sequencing, we established that kinesin-induced targeted mis-segregations predominantly result in chromosomal arm aneuploidies after a single cell division. Our kinesin-based strategy opens the possibility to investigate the immediate cellular responses to specific aneuploidies in different cell types; an important step toward understanding how tissue-specific aneuploidy patterns evolve.
Insights
Scientists developed a new method to induce chromosome mis-segregation in human cells using kinesin. This technique allows studying aneuploidy
Area of Science:
- Cell Biology
- Genetics
- Cancer Research
Background:
- Cancer cells often display characteristic aneuploidy patterns, but their origins are unclear.
- Generating specific aneuploidies in human cells is technically challenging.
Purpose of the Study:
- To develop a novel strategy for inducing targeted chromosome mis-segregation in human cells.
- To investigate the immediate cellular responses to specific aneuploidies.
Main Methods:
- Utilized a microtubule-directed kinesin (Kinesin14VIb) linked to chromosome-specific repeats via Tet repressor or nuclease-dead Cas9.
- Employed live- and fixed-cell imaging to observe chromosome dynamics.
- Performed single-cell whole-genome sequencing to analyze aneuploidy.
Main Results:
- Demonstrated kinesin-mediated pulling forces causing chromosome-specific segregation errors during anaphase.
- Observed significant stretching of chromosomal arms due to spindle forces.
- Confirmed that induced mis-segregations predominantly lead to chromosomal arm aneuploidies after one cell division.
Conclusions:
- The novel kinesin-based strategy enables targeted induction of aneuploidy.
- This method facilitates the study of immediate cellular responses to specific aneuploidies.
- Provides a new avenue for understanding the evolution of tissue-specific aneuploidy patterns in cancer.
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