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Mechanism of how augmin directly targets the γ-tubulin ring complex to microtubules. , Song JG., J Cell Biol. July 2, 2018; 217 (7): 2417-2428.
The ciliopathy-associated CPLANE proteins direct basal body recruitment of intraflagellar transport machinery. , Toriyama M., Nat Genet. June 1, 2016; 48 (6): 648-56.
The Small GTPase Rsg1 is important for the cytoplasmic localization and axonemal dynamics of intraflagellar transport proteins. , Brooks ER ., Cilia. October 7, 2013; 2 13.
Control of vertebrate intraflagellar transport by the planar cell polarity effector Fuz. , Brooks ER ., J Cell Biol. July 9, 2012; 198 (1): 37-45.
A large scale screen for neural stem cell markers in Xenopus retina. , Parain K ., Dev Neurobiol. April 1, 2012; 72 (4): 491-506.
The planar cell polarity effector Fuz is essential for targeted membrane trafficking, ciliogenesis and mouse embryonic development. , Gray RS ., Nat Cell Biol. October 1, 2009; 11 (10): 1225-32.
Ciliogenesis defects in embryos lacking inturned or fuzzy function are associated with failure of planar cell polarity and Hedgehog signaling. , Park TJ., Nat Genet. March 1, 2006; 38 (3): 303-11.
Adenomatous polyposis coli (APC) protein moves along microtubules and concentrates at their growing ends in epithelial cells. , Mimori-Kiyosue Y., J Cell Biol. February 7, 2000; 148 (3): 505-18.
The Xenopus IP3 receptor: structure, function, and localization in oocytes and eggs. , Kume S., Cell. May 7, 1993; 73 (3): 555-70.
The effect of actinomycin D on the nucleolus and on pigment synthesis in pigment cells of Xenopus laevis: an ultrastructural study. , Kramer B., J Anat. June 1, 1980; 130 (Pt 4): 809-20.