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Updated: Apr 24, 2026

Impedance-based Real-time Measurement of Cancer Cell Migration and Invasion
Published on: April 2, 2020
Knockdown of kinesin KIF11 abrogates directed migration in response to epidermal growth factor-mediated chemotaxis
1Department of Pathophysiology, Key Immunology Laboratory of Guangdong Province, Shantou University College of Medicine, 22 Xinling Road, Shantou, Guangdong 515041, China; Center for Neuroscience, Shantou University College of Medicine, 22 Xinling Road, Shantou, Guangdong 515041, China.
Abstract:
Establishment of microtubule polarity is critical for directional cell migration involved in morphogenesis, differentiation, cell division, and metastasis. Current models, involving iterative microtubule capture and inactivation of microtubule depolymerizing mechanisms at the leading edge, cannot account for the biased migration exhibited by cells in culture in the absence of directional cues, suggesting central mechanisms governing microtubule polarity remain unknown. We engineered two human MDA-MB-231/IMP1 breast carcinoma cell lines, denoted kdKIF11-1 and kdKIF11-2, in which the kinesin KIF11 (also known as Eg5) was stably knocked down by two different shRNAs. Western blot analysis showed knockdown by each shRNA decreased KIF11 expression by 58% and 79% for kdKIF11-1 and kdKIF11-2, respectively, whereas Rac1 expression was unaffected. All cell lines retained a well-defined microtubule structure. Compared to cells infected with the control viral vector, both KIF11 knockdown cell lines displayed a 14-45% increase in cell motility in a scratch wound healing assay. In contrast, KIF11 knockdown decreased invasion by 70%, compared to the control, as measured by invasion through Matrigel-coated transwells. To determine whether the reduction in invasion was due to reduced chemotaxis, we substituted collagen for Matrigel in the transwell assay and similarly observed a 44-54% reduction in migration, using EGF as the chemoattractant. However, when including EGF in both the upper and lower chambers of the transwell to stimulate migration but eliminate chemotaxis, transwell migration decreased for the control cell line only, indicating that KIF11 knockdown did not impair migration, but severely impaired chemotaxis. We conclude KIF11 is a key downstream molecule that responds to directional cues in chemotaxis to govern the direction of migration.
Insights
Kinesin KIF11 (Eg5) knockdown impairs breast cancer cell chemotaxis, not general motility. This suggests KIF11 is crucial for directional cell migration in response to external cues.
Area of Science:
- Cell Biology
- Cancer Research
- Molecular Biology
Background:
- Microtubule polarity is essential for directed cell migration, impacting various cellular processes.
- Existing models fail to explain biased cell migration without external cues, indicating unknown regulatory mechanisms.
- The role of kinesin motor proteins in establishing microtubule polarity and guiding cell migration requires further investigation.
Purpose of the Study:
- To investigate the role of kinesin KIF11 (Eg5) in regulating microtubule polarity and directional cell migration.
- To determine how KIF11 knockdown affects breast carcinoma cell motility, invasion, and chemotaxis.
Main Methods:
- Engineered MDA-MB-231/IMP1 breast carcinoma cell lines with stable KIF11 knockdown using shRNAs.
- Utilized Western blot analysis to confirm KIF11 and Rac1 expression levels.
- Assessed cell motility, invasion, and chemotaxis using scratch wound healing assays and transwell migration assays with Matrigel and collagen, employing EGF as a chemoattractant.
Main Results:
- KIF11 knockdown significantly reduced KIF11 expression while leaving Rac1 expression unaffected.
- KIF11 knockdown increased overall cell motility in scratch wound assays but decreased invasion through Matrigel.
- Transwell assays revealed that KIF11 knockdown severely impaired chemotaxis, while general migration capacity remained intact.
Conclusions:
- KIF11 is a critical downstream mediator that responds to directional cues during chemotaxis.
- KIF11 plays a key role in governing the directionality of cell migration, particularly in response to chemoattractants.
- Targeting KIF11 may offer a strategy to inhibit cancer cell metastasis by disrupting directional migration.
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