The research in my group is focused on understanding the mechanisms and regulation of chromosome segregation in mitosis. During the cell cycle, accurate chromosome segregation ensures that both daughter cells inherit the correct complement of chromosomes. Errors in this process cause aneuploidy leading to cancer and developmental defects. Duplicated chromosome are segregated in mitosis by the mitotic spindle. Each chromosome is attached to microtubules by kinetochores, large protein complexes that specifically assemble onto centromeric chromatin. Kinetochores that mediate and regulate this process consist of over 100 proteins, that also function to detect and signal appropriate microtubule attachment and tension.
Previously we have used single particle cryo-EM to determine structures of kinetochores. Our aim now is to visualise kinetochores in situ. For this we are applying cryo-electron tomography and zero-tilt cryo-EM to thinned human and yeast cells. We have established work-flows for targeting kinetochores for data collection and generation of cryo-electron tomograms. Identifying kinetochores in the dense chromatin structure of the nucleus is difficult, and current 3-dimensional template matching programs have failed.
In this PhD project we aim to apply machine learning and AI tools to identify kinetochores in our cryo-EM/ET data sets. We will use cryo-EM/ET data with and without kinetochores for training.
The PhD applicants should have a good understanding of AI and machine learning tools, be proficient in computer programing (eg Python), and be interested in structural biological questions.
Funding Notes
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References
Reviews
Young LN & Villa E (2023). Bringing Structure to Cell Biology with Cryo-Electron Tomography. Annual Review of Biophysics 52, 573–595.
Nogales E & Mahamid J (2024). Bridging structural and cell biology with cryo-electron microscopy. Nature 628, 47–56.
Musacchio A, Huis In 't Veld PJ, Brown RR, Straight AF. Structure and function of the outer kinetochore. Nat Rev Mol Cell Biol. 2026 Aug 3. doi: 10.1038/s41580-026-00988-8.
Brown RR, Huis In 't Veld PJ, Musacchio A, Straight AF. Structure and function of the centromere and inner kinetochore. Nat Rev Mol Cell Biol. 2026 Aug 3. doi: 10.1038/s41580-026-00989-7.
Primary Literature
Yatskevich, S., Muir, K.W., Bellini, D., Zhang, Z., Yang, J., Tischer, T., Predin, M., Dendooven, T., McLaughlin, S.H., & Barford, D. Structure of the human inner kinetochore bound to a centromeric CENP-A nucleosome. Science, 376, 844-852. PMID: 35420891. (2022).
Dendooven, T., Zhang, Z, Yang, J., McLaughlin, S.H., Schawb, J., Scheres, S.H.W., Yatskevich, S. & Barford, D. Cryo-EM structure of the complete inner kinetochore of the budding yeast point centromere. Science Advances. doi:10.1126/sciadv.adg7480 (2023).
Yatskevich, S., Yang, J., Bellini, D., Zhang, Z. & Barford, D. Structure of the human outer kinetochore KMN network complex. Nature Structural Molecular Biology 31, 874-883. doi: 10.1038/s41594-024-01249-y. (2024).