-
1
-
-
77955474964
-
Control of tissue and organ growth in plants
-
Breuninger H, Lenhard M. Control of tissue and organ growth in plants. Curr Top Dev Biol 2010; 91:185-220.
-
(2010)
Curr Top Dev Biol
, vol.91
, pp. 185-220
-
-
Breuninger, H.1
Lenhard, M.2
-
2
-
-
62349118908
-
David and Goliath: What can the tiny weed Arabidopsis teach us to improve biomass production in crops?
-
Gonzalez N, Beemster GT, Inze D. David and Goliath: what can the tiny weed Arabidopsis teach us to improve biomass production in crops? Curr Opin Plant Biol 2009; 12:157-164.
-
(2009)
Curr Opin Plant Biol
, vol.12
, pp. 157-164
-
-
Gonzalez, N.1
Beemster, G.T.2
Inze, D.3
-
3
-
-
74849132111
-
The integration of cell division, growth and differentiation
-
Harashima H, Schnittger A. The integration of cell division, growth and differentiation. Curr Opin Plant Biol 2010; 13:66-74.
-
(2010)
Curr Opin Plant Biol
, vol.13
, pp. 66-74
-
-
Harashima, H.1
Schnittger, A.2
-
5
-
-
76449084608
-
-
The Arabidopsis Book, Rockville MD, American Society of Plant Biologists, DOI: 101199/tab0120
-
Gutierrez C. The Arabidopsis Cell Division Cycle. The Arabidopsis Book, Rockville MD, American Society of Plant Biologists; DOI: 101199/tab0120, http://www.aspb.org/publications/arabidopsis/2009; 1-19.
-
(2009)
The Arabidopsis Cell Division Cycle
, pp. 1-19
-
-
Gutierrez, C.1
-
6
-
-
0029000579
-
Cyclins and cyclin-dependent kinases: A biochemical view
-
Pines J. Cyclins and cyclin-dependent kinases: a biochemical view. Biochem J 1995; 308:697-711.
-
(1995)
Biochem J
, vol.308
, pp. 697-711
-
-
Pines, J.1
-
7
-
-
0031466305
-
Cyclin-dependent kinases: Engines, clocks and microprocessors
-
Morgan DO. Cyclin-dependent kinases: engines, clocks and microprocessors. Annu Rev Cell Dev Biol 1997; 13:261-291.
-
(1997)
Annu Rev Cell Dev Biol
, vol.13
, pp. 261-291
-
-
Morgan, D.O.1
-
8
-
-
0035579883
-
Mathematical model of the cell division cycle of fission yeast
-
Novak B, Pataki Z, Ciliberto A, Tyson JJ. Mathematical model of the cell division cycle of fission yeast. Chaos 2001; 11:277-286.
-
(2001)
Chaos
, vol.11
, pp. 277-286
-
-
Novak, B.1
Pataki, Z.2
Ciliberto, A.3
Tyson, J.J.4
-
9
-
-
0035575533
-
Triggering the all-or-nothing switch into mitosis
-
O'Farrell PH. Triggering the all-or-nothing switch into mitosis. Trends Cell Biol 2001; 11:512-519.
-
(2001)
Trends Cell Biol
, vol.11
, pp. 512-519
-
-
O'Farrell, P.H.1
-
10
-
-
50849121703
-
Temporal organization of the cell cycle
-
Tyson JJ, Novak B. Temporal organization of the cell cycle. Curr Biol 2008; 18:759-768.
-
(2008)
Curr Biol
, vol.18
, pp. 759-768
-
-
Tyson, J.J.1
Novak, B.2
-
11
-
-
0036532226
-
Self-perpetuating states in signal transduction: Positive feedback, double-negative feedback and bistability
-
Ferrell JE Jr. Self-perpetuating states in signal transduction: positive feedback, double-negative feedback and bistability. Curr Opin Cell Biol 2002; 14:140-148.
-
(2002)
Curr Opin Cell Biol
, vol.14
, pp. 140-148
-
-
Ferrell Jr., J.E.1
-
12
-
-
34250865564
-
CDC25 phosphatases in cancer cells: Key players? Good targets?
-
Boutros R, Lobjois V, Ducommun B. CDC25 phosphatases in cancer cells: key players? Good targets? Nat Rev Cancer 2007; 7:495-507.
-
(2007)
Nat Rev Cancer
, vol.7
, pp. 495-507
-
-
Boutros, R.1
Lobjois, V.2
Ducommun, B.3
-
13
-
-
60549094422
-
Cell cycle control by the CDC25 phosphatases
-
Aressy B, Ducommun B. Cell cycle control by the CDC25 phosphatases. Anticancer Agents Med Chem 2008; 8:818-824.
-
(2008)
Anticancer Agents Med Chem
, vol.8
, pp. 818-824
-
-
Aressy, B.1
Ducommun, B.2
-
14
-
-
0033616750
-
Characterization of maize (Zea mays L.) Wee1 and its activity in developing endosperm
-
Sun Y, Dilkes BP, Zhang C, Dante RA, Carneiro NP, Lowe KS, et al. Characterization of maize (Zea mays L.) Wee1 and its activity in developing endosperm. Proc Natl Acad Sci USA 1999; 96:4180-4185.
-
(1999)
Proc Natl Acad Sci USA
, vol.96
, pp. 4180-4185
-
-
Sun, Y.1
Dilkes, B.P.2
Zhang, C.3
Dante, R.A.4
Carneiro, N.P.5
Lowe, K.S.6
-
15
-
-
0347520936
-
A WEE1 homologue from Arabidopsis thaliana
-
Sorrell DA, Marchbank A, McMahon K, Dickinson JR, Rogers HJ, Francis D. A WEE1 homologue from Arabidopsis thaliana. Planta 2002; 215:518-522.
-
(2002)
Planta
, vol.215
, pp. 518-522
-
-
Sorrell, D.A.1
Marchbank, A.2
McMahon, K.3
Dickinson, J.R.4
Rogers, H.J.5
Francis, D.6
-
16
-
-
4444285812
-
A small CDC25 dual-specificity tyrosine-phosphatase isoform in Arabidopsis thaliana
-
Landrieu I, da Costa M, De Veylder L, Dewitte F, Vandepoele K, Hassan S, et al. A small CDC25 dual-specificity tyrosine-phosphatase isoform in Arabidopsis thaliana. Proc Natl Acad Sci USA 2004; 101:13380-13385.
-
(2004)
Proc Natl Acad Sci USA
, vol.101
, pp. 13380-13385
-
-
Landrieu, I.1
da Costa, M.2
de Veylder, L.3
Dewitte, F.4
Vandepoele, K.5
Hassan, S.6
-
17
-
-
17744395164
-
Molecular characterization of a WEE1 gene homologue in tomato (Lycopersicon esculentum Mill.)
-
Gonzalez N, Hernould M, Delmas F, Gevaudant F, Duffe P, Causse M, et al. Molecular characterization of a WEE1 gene homologue in tomato (Lycopersicon esculentum Mill.). Plant Mol Biol 2004; 56:849-861.
-
(2004)
Plant Mol Biol
, vol.56
, pp. 849-861
-
-
Gonzalez, N.1
Hernould, M.2
Delmas, F.3
Gevaudant, F.4
Duffe, P.5
Causse, M.6
-
18
-
-
76749150030
-
Genome sequencing and analysis of the model grass Brachypodium distachyon
-
International Brachypodium Initiative T
-
International Brachypodium Initiative T. Genome sequencing and analysis of the model grass Brachypodium distachyon. Nature 2010; 463:763-768.
-
(2010)
Nature
, vol.463
, pp. 763-768
-
-
-
19
-
-
0026151389
-
The Arabidopsis functional homolog of the p34cdc2 protein kinase
-
Ferreira PC, Hemerly AS, Villarroel R, Van Montagu M, Inze D. The Arabidopsis functional homolog of the p34cdc2 protein kinase. Plant Cell 1991; 3:531-540.
-
(1991)
Plant Cell
, vol.3
, pp. 531-540
-
-
Ferreira, P.C.1
Hemerly, A.S.2
Villarroel, R.3
van Montagu, M.4
Inze, D.5
-
20
-
-
0026015203
-
Identification of two cell cycle-controlling cdc2 gene homologs in Arabidopsis thaliana
-
Hirayama T, Imajuku Y, Anai T, Matsui M, Oka A. Identification of two cell cycle-controlling cdc2 gene homologs in Arabidopsis thaliana. Gene 1991; 105:159-165.
-
(1991)
Gene
, vol.105
, pp. 159-165
-
-
Hirayama, T.1
Imajuku, Y.2
Anai, T.3
Matsui, M.4
Oka, A.5
-
21
-
-
0026721591
-
Exonintron organization of the Arabidopsis thaliana protein kinase genes CDC2a and CDC2b
-
Imajuku Y, Hirayama T, Endoh H, Oka A. Exonintron organization of the Arabidopsis thaliana protein kinase genes CDC2a and CDC2b. FEBS Lett 1992; 304:73-77.
-
(1992)
FEBS Lett
, vol.304
, pp. 73-77
-
-
Imajuku, Y.1
Hirayama, T.2
Endoh, H.3
Oka, A.4
-
22
-
-
0033056529
-
Mutational analysis of two Arabidopsis thaliana cyclin-dependent kinases in fission yeast
-
Porceddu A, De Veylder L, Hayles J, Van Montagu M, Inze D, Mironov V. Mutational analysis of two Arabidopsis thaliana cyclin-dependent kinases in fission yeast. FEBS Lett 1999; 446:182-188.
-
(1999)
FEBS Lett
, vol.446
, pp. 182-188
-
-
Porceddu, A.1
de Veylder, L.2
Hayles, J.3
van Montagu, M.4
Inze, D.5
Mironov, V.6
-
23
-
-
73549109158
-
Control of cell proliferation, organ growth and DNA damage response operate independently of dephosphorylation of the Arabidopsis Cdk1 homolog CDKA;1
-
Dissmeyer N, Weimer AK, Pusch S, De Schutter K, Kamei CL, Nowack MK, et al. Control of cell proliferation, organ growth and DNA damage response operate independently of dephosphorylation of the Arabidopsis Cdk1 homolog CDKA;1. Plant Cell 2009; 21:3641-3654.
-
(2009)
Plant Cell
, vol.21
, pp. 3641-3654
-
-
Dissmeyer, N.1
Weimer, A.K.2
Pusch, S.3
de Schutter, K.4
Kamei, C.L.5
Nowack, M.K.6
-
26
-
-
77949907684
-
Activation domaindependent degradation of somatic Wee1 kinase
-
Owens L, Simanski S, Squire C, Smith A, Cartzendafner J, Cavett V, et al. Activation domaindependent degradation of somatic Wee1 kinase. J Biol Chem 2010; 285:6761-6769.
-
(2010)
J Biol Chem
, vol.285
, pp. 6761-6769
-
-
Owens, L.1
Simanski, S.2
Squire, C.3
Smith, A.4
Cartzendafner, J.5
Cavett, V.6
-
27
-
-
34249783475
-
Arabidopsis WEE1 kinase controls cell cycle arrest in response to activation of the DNA integrity checkpoint
-
De Schutter K, Joubes J, Cools T, Verkest A, Corellou F, Babiychuk E, et al. Arabidopsis WEE1 kinase controls cell cycle arrest in response to activation of the DNA integrity checkpoint. Plant Cell 2007; 19:211-225.
-
(2007)
Plant Cell
, vol.19
, pp. 211-225
-
-
de Schutter, K.1
Joubes, J.2
Cools, T.3
Verkest, A.4
Corellou, F.5
Babiychuk, E.6
-
28
-
-
34547855506
-
The cell cycle-associated protein kinase WEE1 regulates cell size in relation to endoreduplication in developing tomato fruit
-
Gonzalez N, Gevaudant F, Hernould M, Chevalier C, Mouras A. The cell cycle-associated protein kinase WEE1 regulates cell size in relation to endoreduplication in developing tomato fruit. Plant J 2007; 51:642-655.
-
(2007)
Plant J
, vol.51
, pp. 642-655
-
-
Gonzalez, N.1
Gevaudant, F.2
Hernould, M.3
Chevalier, C.4
Mouras, A.5
-
29
-
-
33847352056
-
The cell cycle: Principles of control. London: New Science Press Ltd
-
Association With Oxford University Press
-
Morgan DO. The cell cycle: principles of control. London: New Science Press Ltd., in association with Oxford University Press 2007.
-
(2007)
-
-
Morgan, D.O.1
-
30
-
-
70349196790
-
Ribonucleotide reductase regulation in response to genotoxic stress in Arabidopsis
-
Roa H, Lang J, Culligan KM, Keller M, Holec S, Cognat V, et al. Ribonucleotide reductase regulation in response to genotoxic stress in Arabidopsis. Plant Physiol 2009; 151:461-471.
-
(2009)
Plant Physiol
, vol.151
, pp. 461-471
-
-
Roa, H.1
Lang, J.2
Culligan, K.M.3
Keller, M.4
Holec, S.5
Cognat, V.6
-
31
-
-
0000056938
-
Hydroxyurea: Inhibitory Effect on DNA Metabolism
-
Young CW, Hodas S. Hydroxyurea: Inhibitory Effect on DNA Metabolism. Science 1964; 146:1172-1174.
-
(1964)
Science
, vol.146
, pp. 1172-1174
-
-
Young, C.W.1
Hodas, S.2
-
32
-
-
0034717309
-
Rapid destruction of human Cdc25A in response to DNA damage
-
Mailand N, Falck J, Lukas C, Syljuasen RG, Welcker M, Bartek J, et al. Rapid destruction of human Cdc25A in response to DNA damage. Science 2000; 288:1425-1429.
-
(2000)
Science
, vol.288
, pp. 1425-1429
-
-
Mailand, N.1
Falck, J.2
Lukas, C.3
Syljuasen, R.G.4
Welcker, M.5
Bartek, J.6
-
33
-
-
33644756519
-
Enhanced arsenate reduction by a CDC25-like tyrosine phosphatase explains increased phytochelatin accumulation in arsenate tolerant Holcus lanatus
-
Bleeker PM, Hakvoort HW, Bliek M, Souer E, Schat H. Enhanced arsenate reduction by a CDC25-like tyrosine phosphatase explains increased phytochelatin accumulation in arsenate tolerant Holcus lanatus. Plant J 2006; 45:917-929.
-
(2006)
Plant J
, vol.45
, pp. 917-929
-
-
Bleeker, P.M.1
Hakvoort, H.W.2
Bliek, M.3
Souer, E.4
Schat, H.5
-
34
-
-
33747085158
-
A novel arsenate reductase from the arsenic hyperaccumulating fern Pteris vittata
-
Ellis DR, Gumaelius L, Indriolo E, Pickering IJ, Banks JA, Salt DE. A novel arsenate reductase from the arsenic hyperaccumulating fern Pteris vittata. Plant Physiol 2006; 141:1544-1554.
-
(2006)
Plant Physiol
, vol.141
, pp. 1544-1554
-
-
Ellis, D.R.1
Gumaelius, L.2
Indriolo, E.3
Pickering, I.J.4
Banks, J.A.5
Salt, D.E.6
-
35
-
-
79551664721
-
Arabidopsis T-DNA insertional lines for CDC25 are hypersensitive to hydroxyurea but not to zeocin or salt stress
-
published online July 20 2010; DOI:10.1093/aob/mcq142
-
Spadafora ND, Doonan JH, Herbert RJ, Bitonti MB, Wallace E, Rogers HJ, et al. Arabidopsis T-DNA insertional lines for CDC25 are hypersensitive to hydroxyurea but not to zeocin or salt stress. Ann Bot 2010; published online July 20 2010; DOI:10.1093/aob/mcq142.
-
(2010)
Ann Bot
-
-
Spadafora, N.D.1
Doonan, J.H.2
Herbert, R.J.3
Bitonti, M.B.4
Wallace, E.5
Rogers, H.J.6
-
36
-
-
34250786312
-
T-loop phosphorylation of Arabidopsis CDKA;1 is required for its function and can be partially substituted by an aspartate residue
-
Dissmeyer N, Nowack MK, Pusch S, Stals H, Inze D, Grini PE, et al. T-loop phosphorylation of Arabidopsis CDKA;1 is required for its function and can be partially substituted by an aspartate residue. Plant Cell 2007; 19:972-985.
-
(2007)
Plant Cell
, vol.19
, pp. 972-985
-
-
Dissmeyer, N.1
Nowack, M.K.2
Pusch, S.3
Stals, H.4
Inze, D.5
Grini, P.E.6
-
37
-
-
35448945700
-
Phosphorylation of threonine 161 in plant cyclin-dependent kinase A is required for cell division by activation of its associated kinase
-
Harashima H, Shinmyo A, Sekine M. Phosphorylation of threonine 161 in plant cyclin-dependent kinase A is required for cell division by activation of its associated kinase. Plant J 2007; 52:435-448.
-
(2007)
Plant J
, vol.52
, pp. 435-448
-
-
Harashima, H.1
Shinmyo, A.2
Sekine, M.3
-
38
-
-
29344451997
-
Switching the cell cycle. Kip-related proteins in plant cell cycle control
-
Verkest A, Weinl C, Inze D, De Veylder L, Schnittger A. Switching the cell cycle. Kip-related proteins in plant cell cycle control. Plant Physiol 2005; 139:1099-1106.
-
(2005)
Plant Physiol
, vol.139
, pp. 1099-1106
-
-
Verkest, A.1
Weinl, C.2
Inze, D.3
de Veylder, L.4
Schnittger, A.5
-
39
-
-
33845753933
-
SIAMESE, a plantspecific cell cycle regulator, controls endoreplication onset in Arabidopsis thaliana
-
Churchman ML, Brown ML, Kato N, Kirik V, Hülskamp M, Inzé D, et al. SIAMESE, a plantspecific cell cycle regulator, controls endoreplication onset in Arabidopsis thaliana. Plant Cell 2006; 18:3145-3157.
-
(2006)
Plant Cell
, vol.18
, pp. 3145-3157
-
-
Churchman, M.L.1
Brown, M.L.2
Kato, N.3
Kirik, V.4
Hülskamp, M.5
Inzé, D.6
-
40
-
-
33748149188
-
The emerging importance of cyclin-dependent kinase inhibitors in the regulation of the plant cell cycle and related processes
-
Wang H, Zhou Y, Fowke LC. The emerging importance of cyclin-dependent kinase inhibitors in the regulation of the plant cell cycle and related processes. Can J Bot 2006; 84:640-650.
-
(2006)
Can J Bot
, vol.84
, pp. 640-650
-
-
Wang, H.1
Zhou, Y.2
Fowke, L.C.3
-
41
-
-
34547123118
-
Novel plant-specific cyclin-dependent kinase inhibitors induced by biotic and abiotic stresses
-
Peres A, Churchman ML, Hariharan S, Himanen K, Verkest A, Vandepoele K, et al. Novel plant-specific cyclin-dependent kinase inhibitors induced by biotic and abiotic stresses. J Biol Chem 2007; 282:25588-25596.
-
(2007)
J Biol Chem
, vol.282
, pp. 25588-25596
-
-
Peres, A.1
Churchman, M.L.2
Hariharan, S.3
Himanen, K.4
Verkest, A.5
Vandepoele, K.6
-
42
-
-
29344461566
-
The cyclin-dependent kinase inhibitor KRP2 controls the onset of the endoreduplication cycle during Arabidopsis leaf development through inhibition of mitotic CDKA;1 kinase complexes
-
Verkest A, Manes CL, Vercruysse S, Maes S, Van Der Schueren E, Beeckman T, et al. The cyclin-dependent kinase inhibitor KRP2 controls the onset of the endoreduplication cycle during Arabidopsis leaf development through inhibition of mitotic CDKA;1 kinase complexes. Plant Cell 2005; 17:1723-1736.
-
(2005)
Plant Cell
, vol.17
, pp. 1723-1736
-
-
Verkest, A.1
Manes, C.L.2
Vercruysse, S.3
Maes, S.4
van der, S.E.5
Beeckman, T.6
-
43
-
-
0037991526
-
Two redundant oscillatory mechanisms in the yeast cell cycle
-
Cross FR. Two redundant oscillatory mechanisms in the yeast cell cycle. Dev Cell 2003; 4:741-752.
-
(2003)
Dev Cell
, vol.4
, pp. 741-752
-
-
Cross, F.R.1
-
44
-
-
77957000875
-
Cullin 4-ring finger-ligase plays a key role in the control of endoreplication cycles in Arabidopsis trichomes
-
Roodbarkelari F, Bramsiepe J, Weinl C, Marquardt S, Novak B, Jakoby MJ, et al. Cullin 4-ring finger-ligase plays a key role in the control of endoreplication cycles in Arabidopsis trichomes. Proc Natl Acad Sci USA 2010; 107:15275-15280.
-
(2010)
Proc Natl Acad Sci USA
, vol.107
, pp. 15275-15280
-
-
Roodbarkelari, F.1
Bramsiepe, J.2
Weinl, C.3
Marquardt, S.4
Novak, B.5
Jakoby, M.J.6
|