-
1
-
-
79955565085
-
Principles of planar polarity in animal development
-
L.V. Goodrich, and D. Strutt Principles of planar polarity in animal development Development 138 2011 1877 1892
-
(2011)
Development
, vol.138
, pp. 1877-1892
-
-
Goodrich, L.V.1
Strutt, D.2
-
2
-
-
84870571564
-
Microtubules enable the planar cell polarity of airway cilia
-
E.K. Vladar, R.D. Bayly, A. Sangoram, M.P. Scott, and J.D. Axelrod Microtubules enable the planar cell polarity of airway cilia Curr. Biol. 22 2012 2203 2212
-
(2012)
Curr. Biol.
, vol.22
, pp. 2203-2212
-
-
Vladar, E.K.1
Bayly, R.D.2
Sangoram, A.3
Scott, M.P.4
Axelrod, J.D.5
-
3
-
-
77957222648
-
Planar cell polarity signaling, cilia and polarized ciliary beating
-
J.B. Wallingford Planar cell polarity signaling, cilia and polarized ciliary beating Curr. Opin. Cell Biol. 22 2010 597 604
-
(2010)
Curr. Opin. Cell Biol.
, vol.22
, pp. 597-604
-
-
Wallingford, J.B.1
-
4
-
-
46249125254
-
Dishevelled controls apical docking and planar polarization of basal bodies in ciliated epithelial cells
-
DOI 10.1038/ng.104, PII NG104
-
T.J. Park, B.J. Mitchell, P.B. Abitua, C. Kintner, and J.B. Wallingford Dishevelled controls apical docking and planar polarization of basal bodies in ciliated epithelial cells Nat. Genet. 40 2008 871 879 (Pubitemid 351913644)
-
(2008)
Nature Genetics
, vol.40
, Issue.7
, pp. 871-879
-
-
Park, T.J.1
Mitchell, B.J.2
Abitua, P.B.3
Kintner, C.4
Wallingford, J.B.5
-
5
-
-
77950498085
-
Coupling between hydrodynamic forces and planar cell polarity orients mammalian motile cilia
-
B. Guirao, A. Meunier, S. Mortaud, A. Aguilar, J.M. Corsi, L. Strehl, Y. Hirota, A. Desoeuvre, C. Boutin, and Y.G. Han Coupling between hydrodynamic forces and planar cell polarity orients mammalian motile cilia Nat. Cell Biol. 12 2010 341 350
-
(2010)
Nat. Cell Biol.
, vol.12
, pp. 341-350
-
-
Guirao, B.1
Meunier, A.2
Mortaud, S.3
Aguilar, A.4
Corsi, J.M.5
Strehl, L.6
Hirota, Y.7
Desoeuvre, A.8
Boutin, C.9
Han, Y.G.10
-
6
-
-
77956572483
-
Planar polarity of multiciliated ependymal cells involves the anterior migration of basal bodies regulated by non-muscle myosin II
-
Y. Hirota, A. Meunier, S. Huang, T. Shimozawa, O. Yamada, Y.S. Kida, M. Inoue, T. Ito, H. Kato, and M. Sakaguchi Planar polarity of multiciliated ependymal cells involves the anterior migration of basal bodies regulated by non-muscle myosin II Development 137 2010 3037 3046
-
(2010)
Development
, vol.137
, pp. 3037-3046
-
-
Hirota, Y.1
Meunier, A.2
Huang, S.3
Shimozawa, T.4
Yamada, O.5
Kida, Y.S.6
Inoue, M.7
Ito, T.8
Kato, H.9
Sakaguchi, M.10
-
7
-
-
31744436549
-
Polarized transport of Frizzled along the planar microtubule arrays in Drosophila wing epithelium
-
DOI 10.1016/j.devcel.2005.11.016, PII S1534580705004764
-
Y. Shimada, S. Yonemura, H. Ohkura, D. Strutt, and T. Uemura Polarized transport of Frizzled along the planar microtubule arrays in Drosophila wing epithelium Dev. Cell 10 2006 209 222 (Pubitemid 43174954)
-
(2006)
Developmental Cell
, vol.10
, Issue.2
, pp. 209-222
-
-
Shimada, Y.1
Yonemura, S.2
Ohkura, H.3
Strutt, D.4
Uemura, T.5
-
8
-
-
0024193261
-
Development and functions of the cytoskeleton during ciliogenesis in metazoa
-
M. Lemullois, E. Boisvieux-Ulrich, M.C. Laine, B. Chailley, and D. Sandoz Development and functions of the cytoskeleton during ciliogenesis in metazoa Biol. Cell 63 1988 195 208
-
(1988)
Biol. Cell
, vol.63
, pp. 195-208
-
-
Lemullois, M.1
Boisvieux-Ulrich, E.2
Laine, M.C.3
Chailley, B.4
Sandoz, D.5
-
9
-
-
0021441420
-
The cytoskeleton of the apical border of the lateral cells of freshwater mussel gill: Structural integration of microtubule and actin filament-based organelles
-
W. Reed, J. Avolio, and P. Satir The cytoskeleton of the apical border of the lateral cells of freshwater mussel gill: structural integration of microtubule and actin filament-based organelles J. Cell Sci. 68 1984 1 33
-
(1984)
J. Cell Sci.
, vol.68
, pp. 1-33
-
-
Reed, W.1
Avolio, J.2
Satir, P.3
-
10
-
-
80053946585
-
Actin and microtubules drive differential aspects of planar cell polarity in multiciliated cells
-
M.E. Werner, P. Hwang, F. Huisman, P. Taborek, C.C. Yu, and B.J. Mitchell Actin and microtubules drive differential aspects of planar cell polarity in multiciliated cells J. Cell Biol. 195 2011 19 26
-
(2011)
J. Cell Biol.
, vol.195
, pp. 19-26
-
-
Werner, M.E.1
Hwang, P.2
Huisman, F.3
Taborek, P.4
Yu, C.C.5
Mitchell, B.J.6
-
11
-
-
67349154436
-
The PCP pathway instructs the planar orientation of ciliated cells in the Xenopus larval skin
-
B. Mitchell, J.L. Stubbs, F. Huisman, P. Taborek, C. Yu, and C. Kintner The PCP pathway instructs the planar orientation of ciliated cells in the Xenopus larval skin Curr. Biol. 19 2009 924 929
-
(2009)
Curr. Biol.
, vol.19
, pp. 924-929
-
-
Mitchell, B.1
Stubbs, J.L.2
Huisman, F.3
Taborek, P.4
Yu, C.5
Kintner, C.6
-
12
-
-
84857993003
-
Understanding ciliated epithelia: The power of Xenopus
-
M.E. Werner, and B.J. Mitchell Understanding ciliated epithelia: The power of Xenopus Genesis 50 2012 176 185
-
(2012)
Genesis
, vol.50
, pp. 176-185
-
-
Werner, M.E.1
Mitchell, B.J.2
-
13
-
-
34247555530
-
A positive feedback mechanism governs the polarity and motion of motile cilia
-
DOI 10.1038/nature05771, PII NATURE05771
-
B. Mitchell, R. Jacobs, J. Li, S. Chien, and C. Kintner A positive feedback mechanism governs the polarity and motion of motile cilia Nature 447 2007 97 101 (Pubitemid 46685842)
-
(2007)
Nature
, vol.447
, Issue.7140
, pp. 97-101
-
-
Mitchell, B.1
Jacobs, R.2
Li, J.3
Chien, S.4
Kintner, C.5
-
14
-
-
84856093088
-
Coordinated ciliary beating requires Odf2-mediated polarization of basal bodies via basal feet
-
K. Kunimoto, Y. Yamazaki, T. Nishida, K. Shinohara, H. Ishikawa, T. Hasegawa, T. Okanoue, H. Hamada, T. Noda, and A. Tamura Coordinated ciliary beating requires Odf2-mediated polarization of basal bodies via basal feet Cell 148 2012 189 200
-
(2012)
Cell
, vol.148
, pp. 189-200
-
-
Kunimoto, K.1
Yamazaki, Y.2
Nishida, T.3
Shinohara, K.4
Ishikawa, H.5
Hasegawa, T.6
Okanoue, T.7
Hamada, H.8
Noda, T.9
Tamura, A.10
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