Cell Division Control in Plants

(Marcin) #1

Cytoskeletal Motor Proteins in Plant Cell Division 189


Kumagai F, Yoneda A, Tomida T, Sano T, Nagata T, Hasezawa S (2001) Fate of nascent
microtubules organized at the M/G1 interface, as visualized by synchronized tobacco
BY-2 cells stably expressing GFP-tubulin: time-sequence observations of the reorgani-
zation of cortical microtubules in living plant cells. Plant Cell Physiol 42:723–732
Lawrence C, Morris N, Meagher R, Dawe R (2001) Dyneins have run their course in plant
lineage. Traffic 2:362–363
Lawrence CJ, Dawe RK, Christie KR, Cleveland DW, Dawson SC, Endow SA, Gold-
stein LSB, Goodson HV, Hirokawa N, Howard J et al. (2004) A standarized kinesin
nomenclature. J Cell Biol 167:19–22
Lee Y-RJ, Giang HM, Liu B (2001) A novel plant kinesin-related protein specifically asso-
ciates with the phragmoplast organelles. Plant Cell 13:2427–2439
Lee YRJ, Liu B (2000) Identification of a phragmoplast-associated kinesin-related protein
in higher plants. Curr Biol 10:797–800
Lee YRJ, Liu B (2004) Cytoskeletal motors in Arabidopsis. Sixty-one kinesins and seven-
teen myosins. Plant Physiol 136:3877–3883
Liu B, Cyr RJ, Palevitz BA (1996) A kinesin-like protein, KatAp, in the cells of arabidopsis
and other plants. Plant Cell 8:119–132
Liu B, Lee YRJ (2001) Kinesin-related proteins in plant cytokinesis. J Plant Growth Regul
20:141–150
Liu B, Marc J, Joshi HC, Palevitz BA (1993) A g-tubulin-related protein associated with
the microtubule arrays of higher plants in a cell cycle-dependent manner. J Cell Sci
104:1217–1228
Liu B, Palevitz BA (1991) Kinetochore fiber formation in dividing generative cells of
Trad esc ant i akinetochore reorientation associated with the transition between lateral
microtubule interactions and end-on kinetochore fibers. J Cell Sci 98:475–482
Liu B, Palevitz BA (1992) Organization of cortical microfilaments in dividing root cells.
Cell Motil Cytoskel 23:252–264
Liu B, Palevitz BA (1996) Localization of a kinesin-like protein in generative cells of
tobacco. Protoplasma 195:78–89
Lloyd C, Chan J (2006) Not so divided: the common basis of plant and animal cell divi-
sion. Nat Rev Mol Cell Biol 7:147–152
Lu L, Lee Y-RJ, Pan R, Liu B (2005) An internal motor kinesin is associated with the Golgi
apparatus and plays a role in trichome morphogenesis in Arabidopsis. Mol Biol Cell
16:811–823
Ma Y-Z, Yen L-F (1989) Actin and myosin in pea tendrils. Plant Physiol 89:586–589
Mao G, Chan J, Calder G, Doonan JH, Lloyd CW (2005a) Modulated targeting of GFP-
AtMAP65-1 to central spindle microtubules during division. Plant J 43:469–478
Mao T, Jin L, Li H, Liu B, Yuan M (2005b) Two microtubule-associated proteins of
the Arabidopsis MAP65 family function differently on microtubules. Plant Physiol
138:654–662
Marcus A, Ambrose J, Blickley L, Hancock W, Cyr R (2002)Arabidopsis thalianaprotein,
ATK1, is a minus-end directed kinesin that exhibits non-processive movement. Cell
Motil Cytoskel 52:144–150
Marcus AI, Li W, Ma H, Cyr RJ (2003) A kinesin mutant with an atypical bipolar spindle
undergoes normal mitosis. Mol Biol Cell 14:1717–1726
Matthies H, McDonald H, Goldstein L, Theurkauf W (1996) Anastral meiotic spindle
morphogenesis: role of the non-claret disjunctional kinesin-like protein. J Cell Biol
134:455–464
Miki H, Okada Y, Hirokawa N (2005) Analysis of the kinesin superfamily: insights into
structure and function. Trends Cell Biol 15:467–476

Free download pdf