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Molecular Biology of the Cell|June 3, 2016
Tetrahymena Poc1 ensures proper intertriplet microtubule linkages to maintain basal body integrityJanet B Meehl, Brian A Bayless, Thomas H Giddings, et al.Current Biology : CB|November 9, 2004
Stable kinetochore-microtubule attachment constrains centromere positioning in metaphaseChad G Pearson, Elaine Yeh, Melissa Gardner, et al.Molecular Biology of the Cell|October 1, 2003
Yeast kinetochores do not stabilize Stu2p-dependent spindle microtubule dynamicsChad G Pearson, Paul S Maddox, Ted R Zarzar, et al.Developmental Cell|August 14, 2018
Trisomy 21 Represses Cilia Formation and FunctionDomenico F Galati, Kelly D Sullivan, Andrew T Pham, et al.Biology Open|December 25, 2015
Automated image analysis reveals the dynamic 3-dimensional organization of multi-ciliary arraysDomenico F Galati, David S Abuin, Gabriel A Tauber, et al.The Journal of Cell Biology|December 17, 2009
Basal body stability and ciliogenesis requires the conserved component Poc1Chad G Pearson, Daniel P S Osborn, Thomas H Giddings, et al.Molecular Biology of the Cell|January 11, 2023
Basal body organization and cell geometry during the cell cycle in Tetrahymena thermophilaHuangqingbo Sun, Adam W J Soh, Lisa E Mitchell, et al.Journal of Cell Science|December 26, 2018
Deubiquitylase USP9X maintains centriolar satellite integrity by stabilizing pericentriolar material 1 proteinKe-Jun Han, Zhiping Wu, Chad G Pearson, et al.Journal of Cell Science|June 28, 2020
A semi-automated machine learning-aided approach to quantitative analysis of centrosomes and microtubule organizationDivya Ganapathi Sankaran, Alexander J Stemm-Wolf, Bailey L McCurdy, et al.Biorxiv : the Preprint Server for Biology|June 12, 2026
Tet Trim-Away: A conditional rapid protein degradation system for Tetrahymena thermophilaGayatri L Dholakia, Alexander J Stemm-Wolf, Aaisha Anzar, et al.Pageof 9