-
1
-
-
79951912368
-
New role for Cdc14 phosphatase: localization to basal bodies in the oomycete phytophthora and its evolutionary coinheritance with eukaryotic flagella
-
Ah-Fong AM, Judelson HS. 2011. New role for Cdc14 phosphatase: localization to basal bodies in the oomycete phytophthora and its evolutionary coinheritance with eukaryotic flagella. PLoS One 6: e16725.
-
(2011)
PLoS One
, vol.6
-
-
Ah-Fong, A.M.1
Judelson, H.S.2
-
2
-
-
34748885788
-
Two T-box genes play independent and cooperative roles to regulate morphogenesis of ciliated Kupffer's vesicle in zebrafish
-
Amack JD, Wang X, Yost HJ. 2007. Two T-box genes play independent and cooperative roles to regulate morphogenesis of ciliated Kupffer's vesicle in zebrafish. Dev Biol 310: 196-210.
-
(2007)
Dev Biol
, vol.310
, pp. 196-210
-
-
Amack, J.D.1
Wang, X.2
Yost, H.J.3
-
3
-
-
47549098471
-
The Cdc14B-Cdh1-Plk1 axis controls the G2 DNA-damage-response checkpoint
-
Bassermann F, Frescas D, Guardavaccaro D, Busino L, Peschiaroli A, Pagano M. 2008. The Cdc14B-Cdh1-Plk1 axis controls the G2 DNA-damage-response checkpoint. Cell 134: 256-267.
-
(2008)
Cell
, vol.134
, pp. 256-267
-
-
Bassermann, F.1
Frescas, D.2
Guardavaccaro, D.3
Busino, L.4
Peschiaroli, A.5
Pagano, M.6
-
4
-
-
0035930555
-
Regulation of the anaphase-promoting complex by the dual specificity phosphatase human Cdc14a
-
Bembenek J, Yu H. 2001. Regulation of the anaphase-promoting complex by the dual specificity phosphatase human Cdc14a. J Biol Chem 276: 48237-48242.
-
(2001)
J Biol Chem
, vol.276
, pp. 48237-48242
-
-
Bembenek, J.1
Yu, H.2
-
5
-
-
44349099821
-
The nucleolar phosphatase Cdc14B is dispensable for chromosome segregation and mitotic exit in human cells
-
Berdougo E, Nachury MV, Jackson PK, Jallepalli PV. 2008. The nucleolar phosphatase Cdc14B is dispensable for chromosome segregation and mitotic exit in human cells. Cell Cycle 7: 1184-1190.
-
(2008)
Cell Cycle
, vol.7
, pp. 1184-1190
-
-
Berdougo, E.1
Nachury, M.V.2
Jackson, P.K.3
Jallepalli, P.V.4
-
6
-
-
33751526052
-
The roles of cilia in developmental disorders and disease
-
Bisgrove BW, Yost HJ. 2006. The roles of cilia in developmental disorders and disease. Development 133: 4131-4143.
-
(2006)
Development
, vol.133
, pp. 4131-4143
-
-
Bisgrove, B.W.1
Yost, H.J.2
-
7
-
-
81055137333
-
A quantitative model for ordered Cdk substrate dephosphorylation during mitotic exit
-
Bouchoux C, Uhlmann F. 2011. A quantitative model for ordered Cdk substrate dephosphorylation during mitotic exit. Cell 147: 803-814.
-
(2011)
Cell
, vol.147
, pp. 803-814
-
-
Bouchoux, C.1
Uhlmann, F.2
-
8
-
-
74849086449
-
Overexpression of CDC14B causes mitotic arrest and inhibits zygotic genome activation in mouse preimplantation embryos
-
Buffone MG, Schindler K, Schultz RM. 2009. Overexpression of CDC14B causes mitotic arrest and inhibits zygotic genome activation in mouse preimplantation embryos. Cell Cycle 8: 3904-3913.
-
(2009)
Cell Cycle
, vol.8
, pp. 3904-3913
-
-
Buffone, M.G.1
Schindler, K.2
Schultz, R.M.3
-
9
-
-
48349109103
-
Mutations in the cilia gene ARL13B lead to the classical form of Joubert syndrome
-
Cantagrel V, Silhavy JL, Bielas SL, Swistun D, Marsh SE, Bertrand JY, Audollent S, Attie-Bitach T, Holden KR, Dobyns WB, Traver D, Al-Gazali L, Ali BR, Lindner TH, Caspary T, Otto EA, Hildebrandt F, Glass IA, Logan CV, Johnson CA, Bennett C, Brancati F, Valente EM, Woods CG, Gleeson JG. 2008. Mutations in the cilia gene ARL13B lead to the classical form of Joubert syndrome. Am J Hum Genet 83: 170-179.
-
(2008)
Am J Hum Genet
, vol.83
, pp. 170-179
-
-
Cantagrel, V.1
Silhavy, J.L.2
Bielas, S.L.3
Swistun, D.4
Marsh, S.E.5
Bertrand, J.Y.6
Audollent, S.7
Attie-Bitach, T.8
Holden, K.R.9
Dobyns, W.B.10
Traver, D.11
Al-Gazali, L.12
Ali, B.R.13
Lindner, T.H.14
Caspary, T.15
Otto, E.A.16
Hildebrandt, F.17
Glass, I.A.18
Logan, C.V.19
Johnson, C.A.20
Bennett, C.21
Brancati, F.22
Valente, E.M.23
Woods, C.G.24
Gleeson, J.G.25
more..
-
10
-
-
0030465318
-
Zebrafish tinman homolog demarcates the heart field and initiates myocardial differentiation
-
Chen JN, Fishman MC. 1996. Zebrafish tinman homolog demarcates the heart field and initiates myocardial differentiation. Development 122: 3809-3816.
-
(1996)
Development
, vol.122
, pp. 3809-3816
-
-
Chen, J.N.1
Fishman, M.C.2
-
11
-
-
79955986181
-
The Cdc14B phosphatase displays oncogenic activity mediated by the Ras-Mek signaling pathway
-
Chiesa M, Guillamot M, Bueno MJ, Malumbres M. 2011. The Cdc14B phosphatase displays oncogenic activity mediated by the Ras-Mek signaling pathway. Cell Cycle 10: 1607-1617.
-
(2011)
Cell Cycle
, vol.10
, pp. 1607-1617
-
-
Chiesa, M.1
Guillamot, M.2
Bueno, M.J.3
Malumbres, M.4
-
12
-
-
18944403327
-
The dual-specificity phosphatase CDC14B bundles and stabilizes microtubules
-
Cho HP, Liu Y, Gomez M, Dunlap J, Tyers M, Wang Y. 2005. The dual-specificity phosphatase CDC14B bundles and stabilizes microtubules. Mol Cell Biol 25: 4541-4551.
-
(2005)
Mol Cell Biol
, vol.25
, pp. 4541-4551
-
-
Cho, H.P.1
Liu, Y.2
Gomez, M.3
Dunlap, J.4
Tyers, M.5
Wang, Y.6
-
13
-
-
78751563294
-
The Cdc14B phosphatase contributes to ciliogenesis in zebrafish
-
Clément A, Solnica-Krezel L, Gould KL. 2011. The Cdc14B phosphatase contributes to ciliogenesis in zebrafish. Development 138: 291-302.
-
(2011)
Development
, vol.138
, pp. 291-302
-
-
Clément, A.1
Solnica-Krezel, L.2
Gould, K.L.3
-
14
-
-
84856133989
-
Cdc14 phosphatase promotes segregation of telomeres through repression of RNA polymerase II transcription
-
Clemente-Blanco A, Sen N, Mayan-Santos M, Sacristan MP, Graham B, Jarmuz A, Giess A, Webb E, Game L, Eick D, Bueno A, Merkenschlager M, Aragon L. 2011. Cdc14 phosphatase promotes segregation of telomeres through repression of RNA polymerase II transcription. Nat Cell Biol 13: 1450-1456.
-
(2011)
Nat Cell Biol
, vol.13
, pp. 1450-1456
-
-
Clemente-Blanco, A.1
Sen, N.2
Mayan-Santos, M.3
Sacristan, M.P.4
Graham, B.5
Jarmuz, A.6
Giess, A.7
Webb, E.8
Game, L.9
Eick, D.10
Bueno, A.11
Merkenschlager, M.12
Aragon, L.13
-
15
-
-
45249120838
-
The role of Cdc14 phosphatases in the control of cell division
-
Clifford DM, Chen CT, Roberts RH, Feoktistova A, Wolfe BA, Chen JS, McCollum D, Gould KL. 2008. The role of Cdc14 phosphatases in the control of cell division. Biochem Soc Trans 36: 436-438.
-
(2008)
Biochem Soc Trans
, vol.36
, pp. 436-438
-
-
Clifford, D.M.1
Chen, C.T.2
Roberts, R.H.3
Feoktistova, A.4
Wolfe, B.A.5
Chen, J.S.6
McCollum, D.7
Gould, K.L.8
-
16
-
-
0030601996
-
A cluster of noninvoluting endocytic cells at the margin of the zebrafish blastoderm marks the site of embryonic shield formation
-
Cooper MS, D'Amico LA. 1996. A cluster of noninvoluting endocytic cells at the margin of the zebrafish blastoderm marks the site of embryonic shield formation. Dev Biol 180: 184-198.
-
(1996)
Dev Biol
, vol.180
, pp. 184-198
-
-
Cooper, M.S.1
D'Amico, L.A.2
-
17
-
-
33846785192
-
Centriole/basal body morphogenesis and migration during ciliogenesis in animal cells
-
Dawe HR, Farr H, Gull K. 2007. Centriole/basal body morphogenesis and migration during ciliogenesis in animal cells. J Cell Sci 120: 7-15.
-
(2007)
J Cell Sci
, vol.120
, pp. 7-15
-
-
Dawe, H.R.1
Farr, H.2
Gull, K.3
-
18
-
-
17244366458
-
Kupffer's vesicle is a ciliated organ of asymmetry in the zebrafish embryo that initiates left-right development of the brain, heart and gut
-
Essner JJ, Amack JD, Nyholm MK, Harris EB, Yost HJ. 2005. Kupffer's vesicle is a ciliated organ of asymmetry in the zebrafish embryo that initiates left-right development of the brain, heart and gut. Development 132: 1247-1260.
-
(2005)
Development
, vol.132
, pp. 1247-1260
-
-
Essner, J.J.1
Amack, J.D.2
Nyholm, M.K.3
Harris, E.B.4
Yost, H.J.5
-
19
-
-
0036323011
-
Disruption of centrosome structure, chromosome segregation, and cytokinesis by misexpression of human Cdc14A phosphatase
-
Kaiser BK, Zimmerman ZA, Charbonneau H, Jackson PK. 2002. Disruption of centrosome structure, chromosome segregation, and cytokinesis by misexpression of human Cdc14A phosphatase. Mol Biol Cell 13: 2289-2300.
-
(2002)
Mol Biol Cell
, vol.13
, pp. 2289-2300
-
-
Kaiser, B.K.1
Zimmerman, Z.A.2
Charbonneau, H.3
Jackson, P.K.4
-
20
-
-
7744240121
-
Xenopus Cdc14 alpha/beta are localized to the nucleolus and centrosome and are required for embryonic cell division
-
Kaiser BK, Nachury MV, Gardner BE, Jackson PK. 2004. Xenopus Cdc14 alpha/beta are localized to the nucleolus and centrosome and are required for embryonic cell division. BMC Cell Biol 5: 27.
-
(2004)
BMC Cell Biol
, vol.5
, pp. 27
-
-
Kaiser, B.K.1
Nachury, M.V.2
Gardner, B.E.3
Jackson, P.K.4
-
21
-
-
0021969796
-
Cell lineage of zebrafish blastomeres. II. Formation of the yolk syncytial layer
-
Kimmel CB, Law RD. 1985. Cell lineage of zebrafish blastomeres. II. Formation of the yolk syncytial layer. Dev Biol 108: 86-93.
-
(1985)
Dev Biol
, vol.108
, pp. 86-93
-
-
Kimmel, C.B.1
Law, R.D.2
-
22
-
-
0029045033
-
Stages of embryonic development of the zebrafish
-
Kimmel CB, Ballard WW, Kimmel SR, Ullmann B, Schilling TF. 1995. Stages of embryonic development of the zebrafish. Dev Dyn 203: 253-310.
-
(1995)
Dev Dyn
, vol.203
, pp. 253-310
-
-
Kimmel, C.B.1
Ballard, W.W.2
Kimmel, S.R.3
Ullmann, B.4
Schilling, T.F.5
-
23
-
-
18844393668
-
Cilia-driven fluid flow in the zebrafish pronephros, brain and Kupffer's vesicle is required for normal organogenesis
-
Kramer-Zucker AG, Olale F, Haycraft CJ, Yoder BK, Schier AF, Drummond IA. 2005. Cilia-driven fluid flow in the zebrafish pronephros, brain and Kupffer's vesicle is required for normal organogenesis. Development 132: 1907-1921.
-
(2005)
Development
, vol.132
, pp. 1907-1921
-
-
Kramer-Zucker, A.G.1
Olale, F.2
Haycraft, C.J.3
Yoder, B.K.4
Schier, A.F.5
Drummond, I.A.6
-
24
-
-
33947191643
-
Regulation of multiple cell cycle events by Cdc14 homologues in vertebrates
-
Krasinska L, de Bettignies G, Fisher D, Abrieu A, Fesquet D, Morin N. 2007. Regulation of multiple cell cycle events by Cdc14 homologues in vertebrates. Exp Cell Res 313: 1225-1239.
-
(2007)
Exp Cell Res
, vol.313
, pp. 1225-1239
-
-
Krasinska, L.1
de Bettignies, G.2
Fisher, D.3
Abrieu, A.4
Fesquet, D.5
Morin, N.6
-
25
-
-
81055144848
-
Qilin is essential for cilia assembly and normal kidney development in zebrafish
-
Li J, Sun Z. 2011. Qilin is essential for cilia assembly and normal kidney development in zebrafish. PLoS One 6: e27365.
-
(2011)
PLoS One
, vol.6
-
-
Li, J.1
Sun, Z.2
-
26
-
-
0034723170
-
The human Cdc14 phosphatases interact with and dephosphorylate the tumor suppressor protein p53
-
Li L, Ljungman M, Dixon JE. 2000. The human Cdc14 phosphatases interact with and dephosphorylate the tumor suppressor protein p53. J Biol Chem 275: 2410-2414.
-
(2000)
J Biol Chem
, vol.275
, pp. 2410-2414
-
-
Li, L.1
Ljungman, M.2
Dixon, J.E.3
-
27
-
-
0037672533
-
The zebrafish nodal-related gene southpaw is required for visceral and diencephalic left-right asymmetry
-
Long S, Ahmad N, Rebagliati M. 2003. The zebrafish nodal-related gene southpaw is required for visceral and diencephalic left-right asymmetry. Development 130: 2303-2316.
-
(2003)
Development
, vol.130
, pp. 2303-2316
-
-
Long, S.1
Ahmad, N.2
Rebagliati, M.3
-
28
-
-
0036222706
-
Deregulated human Cdc14A phosphatase disrupts centrosome separation and chromosome segregation
-
Mailand N, Lukas C, Kaiser BK, Jackson PK, Bartek J, Lukas J. 2002. Deregulated human Cdc14A phosphatase disrupts centrosome separation and chromosome segregation. Nat Cell Biol 4: 317-322.
-
(2002)
Nat Cell Biol
, vol.4
, pp. 317-322
-
-
Mailand, N.1
Lukas, C.2
Kaiser, B.K.3
Jackson, P.K.4
Bartek, J.5
Lukas, J.6
-
29
-
-
0030056106
-
Specification of cell fates at the dorsal margin of the zebrafish gastrula
-
Melby AE, Warga RM, Kimmel CB. 1996. Specification of cell fates at the dorsal margin of the zebrafish gastrula. Development 122: 2225-2237.
-
(1996)
Development
, vol.122
, pp. 2225-2237
-
-
Melby, A.E.1
Warga, R.M.2
Kimmel, C.B.3
-
30
-
-
77956909861
-
Cdc14: a highly conserved family of phosphatases with non-conserved functions?
-
Mocciaro A, Schiebel E. 2010. Cdc14: a highly conserved family of phosphatases with non-conserved functions? J Cell Sci 123: 2867-2876.
-
(2010)
J Cell Sci
, vol.123
, pp. 2867-2876
-
-
Mocciaro, A.1
Schiebel, E.2
-
31
-
-
77952376111
-
Vertebrate cells genetically deficient for Cdc14A or Cdc14B retain DNA damage checkpoint proficiency but are impaired in DNA repair
-
Mocciaro A, Berdougo E, Zeng K, Black E, Vagnarelli P, Earnshaw W, Gillespie D, Jallepalli P, Schiebel E. 2010. Vertebrate cells genetically deficient for Cdc14A or Cdc14B retain DNA damage checkpoint proficiency but are impaired in DNA repair. J Cell Biol 189: 631-639.
-
(2010)
J Cell Biol
, vol.189
, pp. 631-639
-
-
Mocciaro, A.1
Berdougo, E.2
Zeng, K.3
Black, E.4
Vagnarelli, P.5
Earnshaw, W.6
Gillespie, D.7
Jallepalli, P.8
Schiebel, E.9
-
32
-
-
0031466305
-
Cyclin-dependent kinases: engines, clocks, and microprocessors
-
Morgan DO. 1997. Cyclin-dependent kinases: engines, clocks, and microprocessors. Annu Rev Cell Dev Biol 13: 261-291.
-
(1997)
Annu Rev Cell Dev Biol
, vol.13
, pp. 261-291
-
-
Morgan, D.O.1
-
34
-
-
34250758641
-
HEF1-dependent Aurora A activation induces disassembly of the primary cilium
-
Pugacheva EN, Jablonski SA, Hartman TR, Henske EP, Golemis EA. 2007. HEF1-dependent Aurora A activation induces disassembly of the primary cilium. Cell 129: 1351-1363.
-
(2007)
Cell
, vol.129
, pp. 1351-1363
-
-
Pugacheva, E.N.1
Jablonski, S.A.2
Hartman, T.R.3
Henske, E.P.4
Golemis, E.A.5
-
35
-
-
39449106065
-
Phosphorylation of Skp2 regulated by CDK2 and Cdc14B protects it from degradation by APC(Cdh1) in G1 phase
-
Rodier G, Coulombe P, Tanguay PL, Boutonnet C, Meloche S. 2008. Phosphorylation of Skp2 regulated by CDK2 and Cdc14B protects it from degradation by APC(Cdh1) in G1 phase. EMBO J 27: 679-691.
-
(2008)
EMBO J
, vol.27
, pp. 679-691
-
-
Rodier, G.1
Coulombe, P.2
Tanguay, P.L.3
Boutonnet, C.4
Meloche, S.5
-
36
-
-
79851494433
-
Human Cdc14A becomes a cell cycle gene in controlling Cdk1 activity at the G/M transition
-
Sacristan MP, Ovejero S, Bueno A. 2011. Human Cdc14A becomes a cell cycle gene in controlling Cdk1 activity at the G/M transition. Cell Cycle 10: 387-391.
-
(2011)
Cell Cycle
, vol.10
, pp. 387-391
-
-
Sacristan, M.P.1
Ovejero, S.2
Bueno, A.3
-
37
-
-
33751066649
-
The yolk syncytial layer regulates myocardial migration by influencing extracellular matrix assembly in zebrafish
-
Sakaguchi T, Kikuchi Y, Kuroiwa A, Takeda H, Stainier DY. 2006. The yolk syncytial layer regulates myocardial migration by influencing extracellular matrix assembly in zebrafish. Development 133: 4063-4072.
-
(2006)
Development
, vol.133
, pp. 4063-4072
-
-
Sakaguchi, T.1
Kikuchi, Y.2
Kuroiwa, A.3
Takeda, H.4
Stainier, D.Y.5
-
38
-
-
65249093669
-
CDC14B acts through FZR1 (CDH1) to prevent meiotic maturation of mouse oocytes
-
Schindler K, Schultz RM. 2009a. CDC14B acts through FZR1 (CDH1) to prevent meiotic maturation of mouse oocytes. Biol Reprod 80: 795-803.
-
(2009)
Biol Reprod
, vol.80
, pp. 795-803
-
-
Schindler, K.1
Schultz, R.M.2
-
39
-
-
65949101013
-
The CDC14A phosphatase regulates oocyte maturation in mouse
-
Schindler K, Schultz RM. 2009b. The CDC14A phosphatase regulates oocyte maturation in mouse. Cell Cycle 8: 1090-1098.
-
(2009)
Cell Cycle
, vol.8
, pp. 1090-1098
-
-
Schindler, K.1
Schultz, R.M.2
-
40
-
-
12644313224
-
Mutations affecting cell fates and cellular rearrangements during gastrulation in zebrafish
-
Solnica-Krezel L, Stemple DL, Mountcastle-Shah E, Rangini Z, Neuhauss SC, Malicki J, Schier AF, Stainier DY, Zwartkruis F, Abdelilah S, Driever W. 1996. Mutations affecting cell fates and cellular rearrangements during gastrulation in zebrafish. Development 123: 67-80.
-
(1996)
Development
, vol.123
, pp. 67-80
-
-
Solnica-Krezel, L.1
Stemple, D.L.2
Mountcastle-Shah, E.3
Rangini, Z.4
Neuhauss, S.C.5
Malicki, J.6
Schier, A.F.7
Stainier, D.Y.8
Zwartkruis, F.9
Abdelilah, S.10
Driever, W.11
-
41
-
-
10944240060
-
Closing mitosis: the functions of the Cdc14 phosphatase and its regulation
-
Stegmeier F, Amon A. 2004. Closing mitosis: the functions of the Cdc14 phosphatase and its regulation. Annu Rev Genet 38: 203-232.
-
(2004)
Annu Rev Genet
, vol.38
, pp. 203-232
-
-
Stegmeier, F.1
Amon, A.2
-
42
-
-
38149126474
-
High-resolution in situ hybridization to whole-mount zebrafish embryos
-
Thisse C, Thisse B. 2008. High-resolution in situ hybridization to whole-mount zebrafish embryos. Nat Protoc 3: 59-69.
-
(2008)
Nat Protoc
, vol.3
, pp. 59-69
-
-
Thisse, C.1
Thisse, B.2
-
43
-
-
33750618926
-
Mitotic phosphatases: no longer silent partners
-
Trinkle-Mulcahy L, Lamond AI. 2006. Mitotic phosphatases: no longer silent partners. Curr Opin Cell Biol 18: 623-631.
-
(2006)
Curr Opin Cell Biol
, vol.18
, pp. 623-631
-
-
Trinkle-Mulcahy, L.1
Lamond, A.I.2
-
44
-
-
79951859251
-
Human Cdc14B promotes progression through mitosis by dephosphorylating Cdc25 and regulating Cdk1/cyclin B activity
-
Tumurbaatar I, Cizmecioglu O, Hoffmann I, Grummt I, Voit R. 2011. Human Cdc14B promotes progression through mitosis by dephosphorylating Cdc25 and regulating Cdk1/cyclin B activity. PLoS One 6: e14711.
-
(2011)
PLoS One
, vol.6
-
-
Tumurbaatar, I.1
Cizmecioglu, O.2
Hoffmann, I.3
Grummt, I.4
Voit, R.5
-
46
-
-
78650327505
-
Human Cdc14A phosphatase modulates the G2/M transition through Cdc25A and Cdc25B
-
Vazquez-Novelle MD, Mailand N, Ovejero S, Bueno A, Sacristan MP. 2010. Human Cdc14A phosphatase modulates the G2/M transition through Cdc25A and Cdc25B. J Biol Chem 285: 40544-40553.
-
(2010)
J Biol Chem
, vol.285
, pp. 40544-40553
-
-
Vazquez-Novelle, M.D.1
Mailand, N.2
Ovejero, S.3
Bueno, A.4
Sacristan, M.P.5
-
47
-
-
59049100320
-
Phosphatase inhibitor 2 promotes acetylation of tubulin in the primary cilium of human retinal epithelial cells
-
Wang W, Brautigan DL. 2008. Phosphatase inhibitor 2 promotes acetylation of tubulin in the primary cilium of human retinal epithelial cells. BMC Cell Biol 9: 62.
-
(2008)
BMC Cell Biol
, vol.9
, pp. 62
-
-
Wang, W.1
Brautigan, D.L.2
-
48
-
-
79953801192
-
Early-onset aging and defective DNA damage response in cdc14b-deficient mice
-
Wei Z, Peddibhotla S, Lin H, Fang X, Li M, Rosen JM, Zhang P. 2011. Early-onset aging and defective DNA damage response in cdc14b-deficient mice. Mol Cell Biol 31: 1470-1477.
-
(2011)
Mol Cell Biol
, vol.31
, pp. 1470-1477
-
-
Wei, Z.1
Peddibhotla, S.2
Lin, H.3
Fang, X.4
Li, M.5
Rosen, J.M.6
Zhang, P.7
-
49
-
-
38449094235
-
Fish and frogs: models for vertebrate cilia signaling
-
Wessely O, Obara T. 2008. Fish and frogs: models for vertebrate cilia signaling. Front Biosci 13: 1866-1880.
-
(2008)
Front Biosci
, vol.13
, pp. 1866-1880
-
-
Wessely, O.1
Obara, T.2
-
50
-
-
79958717871
-
Regulation of ciliary motility: conserved protein kinases and phosphatases are targeted and anchored in the ciliary axoneme
-
Wirschell M, Yamamoto R, Alford L, Gokhale A, Gaillard A, Sale WS. 2011. Regulation of ciliary motility: conserved protein kinases and phosphatases are targeted and anchored in the ciliary axoneme. Arch Biochem Biophys 510: 93-100.
-
(2011)
Arch Biochem Biophys
, vol.510
, pp. 93-100
-
-
Wirschell, M.1
Yamamoto, R.2
Alford, L.3
Gokhale, A.4
Gaillard, A.5
Sale, W.S.6
-
51
-
-
43149111052
-
Cdc14B depletion leads to centriole amplification, and its overexpression prevents unscheduled centriole duplication
-
Wu J, Cho HP, Rhee DB, Johnson DK, Dunlap J, Liu Y, Wang Y. 2008. Cdc14B depletion leads to centriole amplification, and its overexpression prevents unscheduled centriole duplication. J Cell Biol 181: 475-483.
-
(2008)
J Cell Biol
, vol.181
, pp. 475-483
-
-
Wu, J.1
Cho, H.P.2
Rhee, D.B.3
Johnson, D.K.4
Dunlap, J.5
Liu, Y.6
Wang, Y.7
-
52
-
-
79960726254
-
Phosphatases: providing safe passage through mitotic exit
-
Wurzenberger C, Gerlich DW. 2011. Phosphatases: providing safe passage through mitotic exit. Nat Rev Mol Cell Biol 12: 469-482.
-
(2011)
Nat Rev Mol Cell Biol
, vol.12
, pp. 469-482
-
-
Wurzenberger, C.1
Gerlich, D.W.2
-
53
-
-
84857132738
-
Kinesin-2 family in vertebrate ciliogenesis
-
Zhao C, Omori Y, Brodowska K, Kovach P, Malicki J. 2012. Kinesin-2 family in vertebrate ciliogenesis. Proc Natl Acad Sci USA 109: 2388-2393.
-
(2012)
Proc Natl Acad Sci USA
, vol.109
, pp. 2388-2393
-
-
Zhao, C.1
Omori, Y.2
Brodowska, K.3
Kovach, P.4
Malicki, J.5
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