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Methods in Molecular Biology (Clifton, N.J.)|November 10, 2016
Analysis of the Localization of MEN Components by Live Cell Imaging MicroscopyZhiang Guo, Marisa SegalCurrent Biology : CB|July 2, 2013
Spindle pole body history intrinsically links pole identity with asymmetric fate in budding yeastM Angeles Juanes, Hanlu Twyman, Edward Tunnacliffe, et al.Elife|August 28, 2020
Orderly assembly underpinning built-in asymmetry in the yeast centrosome duplication cycle requires cyclin-dependent kinaseMarco Geymonat, Qiuran Peng, Zhiang Guo, et al.Results and Problems in Cell Differentiation|April 15, 2017
Intrinsic and Extrinsic Determinants Linking Spindle Pole Fate, Spindle Polarity, and Asymmetric Cell Division in the Budding Yeast S. cerevisiaeMarco Geymonat, Marisa SegalJournal of Cell Science|January 28, 2005
Cortical capture of microtubules and spindle polarity in budding yeast - where's the catch?Stephen M Huisman, Marisa SegalMolecular Biology of the Cell|December 12, 2002
Kar9p-independent microtubule capture at Bud6p cortical sites primes spindle polarity before bud emergence in Saccharomyces cerevisiaeMarisa Segal, Kerry Bloom, Steven I ReedCell Cycle (Georgetown, Tex.)|December 4, 2002
Spindle polarity in S. cerevisiae: MEN can tellMonique F M A Smeets, Marisa SegalGenetics|April 24, 2008
The protease activity of yeast separase (esp1) is required for anaphase spindle elongation independently of its role in cleavage of cohesinChris Baskerville, Marisa Segal, Steven I ReedCell Cycle (Georgetown, Tex.)|May 12, 2011
Ase1p phosphorylation by cyclin-dependent kinase promotes correct spindle assembly in S. cerevisiaeM Angeles Juanes, Rogier ten Hoopen, Marisa SegalPageof 3