Cell Division Control in Plants

(Marcin) #1

166 J.C. Ambrose · R. Cyr


Tirnauer JS, Salmon ED, Mitchison TJ (2004) Microtubule plus-end dynamics in Xenopus
egg extract spindles. Mol Biol Cell 15:1776–1784
Tirnauer JS, Canman JC, Salmon ED, Mitchison TJ (2002) EB1 targets to kinetochores
with attached, polymerizing microtubules. Mol Biol Cell 13:4308–4316
Tournebize R, Popov A, Kinoshita K, Ashford AJ, Rybina S, Pozniakovsky A, Mayer TU,
Walczak CE, Karsenti E, Hyman AA (2000) Control of microtubule dynamics by the
antagonistic activities of XMAP215 and XKCM1 in Xenopus egg extracts. Nat Cell Biol
2:13–19
Traas JA, Doonan JH, Rawlins DJ, Shaw PJ, Watts J, Lloyd CW (1987) An actin network is
present in the cytoplasm throughout the cell cycle of carrot cells and associates with
the nucleus. J Cell Biol 105:387–395
Tulu US, Fagerstrom C, Ferenz NP, Wadsworth P (2006) Molecular requirements for
kinetochore-associated microtubule formation in mammalian cells. Curr Biol 16:536–
541
Valiron O, Caudron N, Job D (2001) Microtubule dynamics. Cell Mol Life Sci 58:2069–2084
Van Damme D, Bouget FY, Van Poucke K, Inze D, Geelen D (2004a) Molecular dissec-
tion of plant cytokinesis and phragmoplast structure: a survey of GFP-tagged proteins.
Plant J 40:386–398
Van Damme D, Van Poucke K, Boutant E, Ritzenthaler C, Inze D, Geelen D (2004b) In vivo
dynamics and differential microtubule-binding activities of MAP65 proteins. Plant
Physiol 136:3956–3967
Vanstraelen M, Torres Acosta JA, De Veylder L, Inze D, Geelen D (2004) A plant-specific
subclass of C-terminal kinesins contains a conserved a-type cyclin-dependent kinase
site implicated in folding and dimerization. Plant Physiol 135:1417–1429
Vanstraelen M, Inze D, Geelen D (2006) Mitosis-specific kinesins in Arabidopsis. Trends
Plant Sci 11:167–175
Venverloo CJ, Libbenga KR (1987) Regulation of the plane of cell division in vacuolated
cells. I. The function of nuclear positioning and phragmosome formation. J Plant
Physiol 131:267–284
Vos JW, Dogterom M, Emons AMC (2004) Microtubules become more dynamic but not
shorter during preprophase band formation: A possible search-and-capture mechan-
ism for microtubule translocation. Cell Motil Cytoskel 57:246–258
Vos JW, Safadi F, Reddy AS, Hepler PK (2000) The kinesin-like calmodulin binding pro-
tein is differentially involved in cell division. Plant Cell 12:979–990
Wadsworth P, Khodjakov A (2004) E pluribus unum: towards a universal mechanism for
spindle assembly. Trends Cell Biol 14:413–419
Walczak CE, Vernos I, Mitchison TJ, Karsenti E, Heald R (1998) A model for the proposed
roles of different microtubule-based motor proteins in establishing spindle bipolarity.
Curr Biol 8:903–913
Wang H, Cutler AJ, Fowke LC (1991) Microtubule organization in Cultured Soybean and
Black Spruce Cells: Interphase-mitosis Transition and Spindle Morphology. Proto-
plasma 162:46–54
West RR, Malmstrom T, Troxell CL, McIntosh JR (2001) Two related kinesins, klp5+ and
klp6+, foster microtubule disassembly and are required for meiosis in fission yeast.
Mol Biol Cell 12:3919–3932
Whittington AT, Vugrek O, Wei KJ, Hasenbein NG, Sugimoto K, Rashbrooke MC,
Wasteneys GO (2001) MOR1 is essential for organizing cortical microtubules in plants.
Nature 411:610–613
Wick S (2000) Plant microtubules meet their MAPs and mimics. Nat Cell Biol 2:E204–
206

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