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Asymmetric division through a reduction of microtubule centering forces. , Sallé J, Xie J, Ershov D, Lacassin M, Dmitrieff S, Minc N., J Cell Biol. March 4, 2019; 218 (3): 771-782.
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Insights into the structure and function of ciliary and flagellar doublet microtubules: tektins, Ca2+-binding proteins, and stable protofilaments. , Linck R , Fu X, Lin J, Ouch C, Schefter A, Steffen W, Warren P, Nicastro D., J Biol Chem. June 20, 2014; 289 (25): 17427-44.
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Glutathione transferase theta in apical ciliary tuft regulates mechanical reception and swimming behavior of Sea Urchin Embryos. , Jin Y, Yaguchi S , Shiba K, Yamada L, Yaguchi J, Shibata D, Sawada H, Inaba K., Cytoskeleton (Hoboken). August 1, 2013; 70 (8): 453-70.
One of the nine doublet microtubules of eukaryotic flagella exhibits unique and partially conserved structures. , Lin J, Heuser T, Song K, Fu X, Nicastro D., PLoS One. January 1, 2012; 7 (10): e46494.
An agent-based model contrasts opposite effects of dynamic and stable microtubules on cleavage furrow positioning. , Odell GM, Foe VE., J Cell Biol. November 3, 2008; 183 (3): 471-83.
Use of frozen-hydrated axonemes to assess imaging parameters and resolution limits in cryoelectron tomography. , McEwen BF, Marko M, Hsieh CE, Mannella C., J Struct Biol. January 1, 2002; 138 (1-2): 47-57.
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Heterotrimeric kinesin-II is required for the assembly of motile 9+2 ciliary axonemes on sea urchin embryos. , Morris RL , Scholey JM ., J Cell Biol. September 8, 1997; 138 (5): 1009-22.
Evidence for a non- tubulin spindle matrix and for spindle components immunologically related to tektin filaments. , Steffen W, Linck RW ., J Cell Sci. April 1, 1992; 101 ( Pt 4) 809-22.
Reaction mechanism of 21S dynein ATPase from sea urchin sperm. I. Kinetic properties in the steady state. , Terashita S, Kato T, Sato H., J Biochem. June 1, 1983; 93 (6): 1567-74.