-
3
-
-
84893407429
-
The roles of evolutionarily conserved functional modules in cilia-related trafficking
-
Sung, C.-H., and Leroux, M. R. (2013) The roles of evolutionarily conserved functional modules in cilia-related trafficking. Nat. Cell Biol. 15, 1387-1397
-
(2013)
Nat. Cell Biol.
, vol.15
, pp. 1387-1397
-
-
Sung, C.-H.1
Leroux, M.R.2
-
4
-
-
84856343802
-
Architecture and function of IFT complex proteins in ciliogenesis
-
Taschner, M., Bhogaraju, S., and Lorentzen, E. (2012) Architecture and function of IFT complex proteins in ciliogenesis. Differentiation 83, S12-S22
-
(2012)
Differentiation
, vol.83
, pp. S12-S22
-
-
Taschner, M.1
Bhogaraju, S.2
Lorentzen, E.3
-
5
-
-
84889019584
-
Intraflagellar transport complex structure and cargo interactions
-
Bhogaraju, S., Engel, B. D., and Lorentzen, E. (2013) Intraflagellar transport complex structure and cargo interactions. Cilia 2, 10
-
(2013)
Cilia
, vol.2
, pp. 10
-
-
Bhogaraju, S.1
Engel, B.D.2
Lorentzen, E.3
-
6
-
-
23044441462
-
Characterization of the intraflagellar transport complex B core: Direct interaction of the IFT81 and IFT74/72 subunits
-
Lucker, B. F., Behal, R. H., Qin, H., Siron, L. C., Taggart, W. D., Rosenbaum, J. L., and Cole, D. G. (2005) Characterization of the intraflagellar transport complex B core: direct interaction of the IFT81 and IFT74/72 subunits. J. Biol. Chem. 280, 27688-27696
-
(2005)
J. Biol. Chem.
, vol.280
, pp. 27688-27696
-
-
Lucker, B.F.1
Behal, R.H.2
Qin, H.3
Siron, L.C.4
Taggart, W.D.5
Rosenbaum, J.L.6
Cole, D.G.7
-
7
-
-
77954362705
-
Direct interactions of intraflagellar transport complex B proteins IFT88, IFT52, and IFT46
-
Lucker, B. F., Miller, M. S., Dziedzic, S. A., Blackmarr, P. T., and Cole, D. G. (2010) Direct interactions of intraflagellar transport complex B proteins IFT88, IFT52, and IFT46. J. Biol. Chem. 285, 21508-21518
-
(2010)
J. Biol. Chem.
, vol.285
, pp. 21508-21518
-
-
Lucker, B.F.1
Miller, M.S.2
Dziedzic, S.A.3
Blackmarr, P.T.4
Cole, D.G.5
-
8
-
-
0031750484
-
Chlamydomonas kinesin-II-dependent intraflagellar transport (IFT): IFT particles contain proteins required for ciliary assembly in Caenorhabditis elegans sensory neurons
-
Cole, D. G., Diener, D. R., Himelblau, A. L., Beech, P. L., Fuster, J. C., and Rosenbaum, J. L. (1998) Chlamydomonas kinesin-II-dependent intraflagellar transport (IFT): IFT particles contain proteins required for ciliary assembly in Caenorhabditis elegans sensory neurons. J. Cell Biol. 141, 993-1008
-
(1998)
J. Cell Biol.
, vol.141
, pp. 993-1008
-
-
Cole, D.G.1
Diener, D.R.2
Himelblau, A.L.3
Beech, P.L.4
Fuster, J.C.5
Rosenbaum, J.L.6
-
9
-
-
65549169874
-
Intraflagellar transport (IFT) protein IFT25 is a phosphoprotein component of IFT complex B and physically interacts with IFT27 in Chlamydomonas
-
Wang, Z., Fan, Z.-C., Williamson, S. M., and Qin, H. (2009) Intraflagellar transport (IFT) protein IFT25 is a phosphoprotein component of IFT complex B and physically interacts with IFT27 in Chlamydomonas. PLoS One 4, e5384
-
(2009)
PLoS One
, vol.4
-
-
Wang, Z.1
Fan, Z.-C.2
Williamson, S.M.3
Qin, H.4
-
10
-
-
77955099784
-
Chlamydomonas IFT70/CrDYF-1 is a core component of IFT particle complex B and is required for flagellar assembly
-
Fan, Z.-C., Behal, R. H., Geimer, S., Wang, Z., Williamson, S. M., Zhang, H., Cole, D. G., and Qin, H. (2010) Chlamydomonas IFT70/CrDYF-1 is a core component of IFT particle complex B and is required for flagellar assembly. Mol. Biol. Cell 21, 2696-2706
-
(2010)
Mol. Biol. Cell
, vol.21
, pp. 2696-2706
-
-
Fan, Z.-C.1
Behal, R.H.2
Geimer, S.3
Wang, Z.4
Williamson, S.M.5
Zhang, H.6
Cole, D.G.7
Qin, H.8
-
11
-
-
79960674186
-
Biochemical mapping of interactions with the intraflagellar transport (IFT) B core complex: IFT52 binds directly to four other IFT-B subunits
-
Taschner, M., Bhogaraju, S., Vetter, M., Morawetz, M., and Lorentzen, E. (2011) Biochemical mapping of interactions with the intraflagellar transport (IFT) B core complex: IFT52 binds directly to four other IFT-B subunits. J. Biol. Chem. 286, 26344-26352
-
(2011)
J. Biol. Chem.
, vol.286
, pp. 26344-26352
-
-
Taschner, M.1
Bhogaraju, S.2
Vetter, M.3
Morawetz, M.4
Lorentzen, E.5
-
12
-
-
84859498001
-
Subunit interactions and organization of the Chlamydomonas reinhardtii intraflagellar transport complex A proteins
-
Behal, R. H., Miller, M. S., Qin, H., Lucker, B. F., Jones, A., and Cole, D. G. (2012) Subunit interactions and organization of the Chlamydomonas reinhardtii intraflagellar transport complex A proteins. J. Biol. Chem. 287, 11689-11703
-
(2012)
J. Biol. Chem.
, vol.287
, pp. 11689-11703
-
-
Behal, R.H.1
Miller, M.S.2
Qin, H.3
Lucker, B.F.4
Jones, A.5
Cole, D.G.6
-
13
-
-
84910620966
-
Crystal structures of IFT70/52 and IFT52/46 provide insight into intraflagellar transport B core complex assembly
-
Taschner, M., Kotsis, F., Braeuer, P., Kuehn, E. W., and Lorentzen, E. (2014) Crystal structures of IFT70/52 and IFT52/46 provide insight into intraflagellar transport B core complex assembly. J. Cell Biol. 207, 269-282
-
(2014)
J. Cell Biol.
, vol.207
, pp. 269-282
-
-
Taschner, M.1
Kotsis, F.2
Braeuer, P.3
Kuehn, E.W.4
Lorentzen, E.5
-
14
-
-
84883111223
-
Molecular basis of tubulin transport within the cilium by IFT74 and IFT81
-
Bhogaraju, S., Cajanek, L., Fort, C., Blisnick, T., Weber, K., Taschner, M., Mizuno, N., Lamla, S., Bastin, P., Nigg, E. A., and Lorentzen, E. (2013) Molecular basis of tubulin transport within the cilium by IFT74 and IFT81. Science 341, 1009-1012
-
(2013)
Science
, vol.341
, pp. 1009-1012
-
-
Bhogaraju, S.1
Cajanek, L.2
Fort, C.3
Blisnick, T.4
Weber, K.5
Taschner, M.6
Mizuno, N.7
Lamla, S.8
Bastin, P.9
Nigg, E.A.10
Lorentzen, E.11
-
15
-
-
85027916800
-
Crystal structure of the intraflagellar transport complex 25/27
-
Bhogaraju, S., Taschner, M., Morawetz, M., Basquin, C., and Lorentzen, E. (2011) Crystal structure of the intraflagellar transport complex 25/27. EMBO J. 30, 1907-1918
-
(2011)
EMBO J
, vol.30
, pp. 1907-1918
-
-
Bhogaraju, S.1
Taschner, M.2
Morawetz, M.3
Basquin, C.4
Lorentzen, E.5
-
16
-
-
78650731392
-
The major α-tubulin K40 acetyltransferase αTAT1 promotes rapid ciliogenesis and efficient mechanosensation
-
Shida, T., Cueva, J. G., Xu, Z., Goodman, M. B., and Nachury, M. V. (2010) The major α-tubulin K40 acetyltransferase αTAT1 promotes rapid ciliogenesis and efficient mechanosensation. Proc. Natl. Acad. Sci. U.S.A. 107, 21517-21522
-
(2010)
Proc. Natl. Acad. Sci. U.S.A
, vol.107
, pp. 21517-21522
-
-
Shida, T.1
Cueva, J.G.2
Xu, Z.3
Goodman, M.B.4
Nachury, M.V.5
-
17
-
-
84932108013
-
Architectures of multisubunit complex revealed by a visible immunoprecipitation assay using fluorescent fusion proteins
-
Katoh, Y., Nozaki, S., Hartanto, D., Miyano, R., and Nakayama, K. (2015) Architectures of multisubunit complex revealed by a visible immunoprecipitation assay using fluorescent fusion proteins. J. Cell Sci. 128, 2351-2362
-
(2015)
J. Cell Sci.
, vol.128
, pp. 2351-2362
-
-
Katoh, Y.1
Nozaki, S.2
Hartanto, D.3
Miyano, R.4
Nakayama, K.5
-
18
-
-
84904551854
-
How do cilia organize signalling cascades?
-
Nachury, M. V. (2014) How do cilia organize signalling cascades? Phil. Trans. R. Soc. B 10.1098/rstb. 2013. 0465
-
(2014)
Phil. Trans. R. Soc. B
-
-
Nachury, M.V.1
-
19
-
-
84881552617
-
Cluap1 localizes preferentially to the base and tip of cilia and is required for ciliogenesis in the mouse embryo
-
Botilde, Y., Yoshiba, S., Shinohara, K., Hasegawa, T., Nishimura, H., Shiratori, H., and Hamada, H. (2013) Cluap1 localizes preferentially to the base and tip of cilia and is required for ciliogenesis in the mouse embryo. Dev. Biol. 381, 203-212
-
(2013)
Dev. Biol.
, vol.381
, pp. 203-212
-
-
Botilde, Y.1
Yoshiba, S.2
Shinohara, K.3
Hasegawa, T.4
Nishimura, H.5
Shiratori, H.6
Hamada, H.7
-
20
-
-
84927174857
-
A robust pipline for rapid production of versatile nanobody repertoires
-
Fridy, P. C., Li, Y., Keegan, S., Thompson, M. K., Nudelman, I., Scheid, J. F., Oeffinger, M., Nussenzweig, M. C., Fenyö, D., Chait, B. T., and Rout, M. P. (2014) A robust pipline for rapid production of versatile nanobody repertoires. Nat. Methods 11, 1253-1260
-
(2014)
Nat. Methods
, vol.11
, pp. 1253-1260
-
-
Fridy, P.C.1
Li, Y.2
Keegan, S.3
Thompson, M.K.4
Nudelman, I.5
Scheid, J.F.6
Oeffinger, M.7
Nussenzweig, M.C.8
Fenyö, D.9
Chait, B.T.10
Rout, M.P.11
-
21
-
-
84867014546
-
Rab11 regulates exocytosis of recycling vesicles at the plasma membrane
-
Takahashi, S., Kubo, K., Waguri, S., Yabashi, A., Shin, H.-W., Katoh, Y., and Nakayama, K. (2012) Rab11 regulates exocytosis of recycling vesicles at the plasma membrane. J. Cell Sci. 125, 4049-4057
-
(2012)
J. Cell Sci.
, vol.125
, pp. 4049-4057
-
-
Takahashi, S.1
Kubo, K.2
Waguri, S.3
Yabashi, A.4
Shin, H.-W.5
Katoh, Y.6
Nakayama, K.7
-
22
-
-
0141706698
-
IFT20 links kinesin II with a mammalian intraflagellar transport complex that is conserved in motile flagella and sensory cilia
-
Baker, S. A., Freeman, K., Luby-Phelps, K., Pazour, G. J., and Besharse, J. C. (2003) IFT20 links kinesin II with a mammalian intraflagellar transport complex that is conserved in motile flagella and sensory cilia. J. Biol. Chem. 278, 34211-34218
-
(2003)
J. Biol. Chem.
, vol.278
, pp. 34211-34218
-
-
Baker, S.A.1
Freeman, K.2
Luby-Phelps, K.3
Pazour, G.J.4
Besharse, J.C.5
-
23
-
-
43149102968
-
Elipsa is an early determinant of ciliogenesis that links the IFT particle to membrane-associated small GTPase Rab8
-
Omori, Y., Zhao, C., Saras, A., Mukhopadhyay, S., Kim, W., Furukawa, T., Sengupta, P., Veraksa, A., and Malicki, J. (2008) elipsa is an early determinant of ciliogenesis that links the IFT particle to membrane-associated small GTPase Rab8. Nat. Cell Biol. 10, 437-444
-
(2008)
Nat. Cell Biol.
, vol.10
, pp. 437-444
-
-
Omori, Y.1
Zhao, C.2
Saras, A.3
Mukhopadhyay, S.4
Kim, W.5
Furukawa, T.6
Sengupta, P.7
Veraksa, A.8
Malicki, J.9
-
24
-
-
67749084683
-
Characterization of mouse IFT complex B
-
Follit, J. A., Xu, F., Keady, B. T., and Pazour, G. J. (2009) Characterization of mouse IFT complex B. Cell Motil. Cytoskeleton 66, 457-468
-
(2009)
Cell Motil. Cytoskeleton
, vol.66
, pp. 457-468
-
-
Follit, J.A.1
Xu, F.2
Keady, B.T.3
Pazour, G.J.4
-
25
-
-
84898766076
-
TTC26/DYF13 is an intraflagellar transport protein required for transport of motility-related proteins into flagella
-
Ishikawa, H., Ide, T., Yagi, T., Jiang, X., Hirono, M., Sasaki, H., Yanagisawa, H., Wemmer, K. A., Stainier, D. Y. R., Qin, H., Kamiya, R., and Marshall, W. F. (2014) TTC26/DYF13 is an intraflagellar transport protein required for transport of motility-related proteins into flagella. eLife 3, e01566
-
(2014)
ELife
, vol.3
-
-
Ishikawa, H.1
Ide, T.2
Yagi, T.3
Jiang, X.4
Hirono, M.5
Sasaki, H.6
Yanagisawa, H.7
Wemmer, K.A.8
Stainier, D.Y.R.9
Qin, H.10
Kamiya, R.11
Marshall, W.F.12
-
26
-
-
84908315689
-
A mutation in the mouse Ttc26 gene leads to impaired hedgehog signaling
-
Swiderski, R. E., Nakano, Y., Mullins, R. F., Seo, S., and Bánfi, B. (2014) A mutation in the mouse Ttc26 gene leads to impaired hedgehog signaling. PLoS Genet. 10, e1004689
-
(2014)
PLoS Genet.
, vol.10
-
-
Swiderski, R.E.1
Nakano, Y.2
Mullins, R.F.3
Seo, S.4
Bánfi, B.5
-
27
-
-
84864972532
-
Dissecting the sequential assembly and localization of intraflagellar transport particle complex B in Chlamydomonas
-
Richey, E. A., and Qin, H. (2012) Dissecting the sequential assembly and localization of intraflagellar transport particle complex B in Chlamydomonas. PLoS One 7, e43118
-
(2012)
PLoS One
, vol.7
-
-
Richey, E.A.1
Qin, H.2
-
28
-
-
84904795900
-
Cluap1 is essential for ciliogenesis and photoreceptor maintenance in the vertebrate eye
-
Lee, C., Wallingford, J. B., and Gross, J. M. (2014) Cluap1 is essential for ciliogenesis and photoreceptor maintenance in the vertebrate eye. Invest. Ophthalmol. Vis. Sci. 55, 4585-4592
-
(2014)
Invest. Ophthalmol. Vis. Sci.
, vol.55
, pp. 4585-4592
-
-
Lee, C.1
Wallingford, J.B.2
Gross, J.M.3
-
29
-
-
84881552793
-
Mammalian clusterin associated protein 1 is an evolutionally conserved protein required for ciliogenesis
-
Pasek, R. C., Berbari, N. F., Lewis, W. R., Kesterson, R. A., and Yoder, B. K. (2012) Mammalian clusterin associated protein 1 is an evolutionally conserved protein required for ciliogenesis. Cilia 1, 20
-
(2012)
Cilia
, vol.1
, pp. 20
-
-
Pasek, R.C.1
Berbari, N.F.2
Lewis, W.R.3
Kesterson, R.A.4
Yoder, B.K.5
-
30
-
-
79957915102
-
Disruption of intraflagellar protein transport in photoreceptor cilia causes Leber congenital amaurosis in humans and mice
-
Boldt, K., Mans, D. A., Won, J., van Reeuwijk, J., Vogt, A., Kinkl, N., Letteboer, S. J. F., Hicks, W. L., Hurd, R. E., Naggert, J., Texier, Y., den Hollander, A. I., Koenekoop, R. K., Bennett, J., Cremers, F. P. M., et al. (2011) Disruption of intraflagellar protein transport in photoreceptor cilia causes Leber congenital amaurosis in humans and mice. J. Clin. Invest. 121, 2169-2180
-
(2011)
J. Clin. Invest.
, vol.121
, pp. 2169-2180
-
-
Boldt, K.1
Mans, D.A.2
Won, J.3
Van Reeuwijk, J.4
Vogt, A.5
Kinkl, N.6
Letteboer, S.J.F.7
Hicks, W.L.8
Hurd, R.E.9
Naggert, J.10
Texier, Y.11
Den Hollander, A.I.12
Koenekoop, R.K.13
Bennett, J.14
Cremers, F.P.M.15
-
31
-
-
84897463155
-
A divergent calponin homology (NN-CH) domain defines a novel family: Implications for evolution of ciliary IFT complex B proteins
-
Schou, K. B., Andersen, J. S., and Pedersen, L. B. (2014) A divergent calponin homology (NN-CH) domain defines a novel family: implications for evolution of ciliary IFT complex B proteins. Bioinformatics 30, 899-902
-
(2014)
Bioinformatics
, vol.30
, pp. 899-902
-
-
Schou, K.B.1
Andersen, J.S.2
Pedersen, L.B.3
-
32
-
-
17444424974
-
The structure of α-helical coiled coils
-
Lupas, A. N., and Gruber, M. (2005) The structure of α-helical coiled coils. Adv. Protein Chem. 70, 37-78
-
(2005)
Adv. Protein Chem.
, vol.70
, pp. 37-78
-
-
Lupas, A.N.1
Gruber, M.2
-
33
-
-
84959449952
-
Intraflagellar transport proteins 172, 80, 57, 54, 38, and 20 form a stable tubulin-binding IFT-B2 complex
-
Taschner, M., Weber, K., Mourão, A., Vetter, M., Awasthi, M., Stiegler, M., Bhogaraju, S., and Lorentzen, E. (2016) Intraflagellar transport proteins 172, 80, 57, 54, 38, and 20 form a stable tubulin-binding IFT-B2 complex. EMBO J. 35, 773-790
-
(2016)
EMBO J
, vol.35
, pp. 773-790
-
-
Taschner, M.1
Weber, K.2
Mourão, A.3
Vetter, M.4
Awasthi, M.5
Stiegler, M.6
Bhogaraju, S.7
Lorentzen, E.8
-
34
-
-
0035899903
-
The bld1 mutation indentifies the Chlamydomonas osm-6 homolog as a gene required for flagellar assembly
-
Brazelton, W. J., Amundsen, C. D., Silflow, C. D., and Lefebvre, P. A. (2001) The bld1 mutation indentifies the Chlamydomonas osm-6 homolog as a gene required for flagellar assembly. Curr. Biol. 11, 1591-1594
-
(2001)
Curr. Biol.
, vol.11
, pp. 1591-1594
-
-
Brazelton, W.J.1
Amundsen, C.D.2
Silflow, C.D.3
Lefebvre, P.A.4
-
35
-
-
0034735526
-
Chlamydomonas IFT88 and its mouse homologue, polycystic kidney disease gene Tg737, are required for assembly of cilia and flagella
-
Pazour, G. J., Dickert, B. L., Vucica, Y., Seeley, E. S., Rosenbaum, J. L., Witman, G. B., and Cole, D. G. (2000) Chlamydomonas IFT88 and its mouse homologue, polycystic kidney disease gene Tg737, are required for assembly of cilia and flagella. J. Cell Biol. 151, 709-718
-
(2000)
J. Cell Biol.
, vol.151
, pp. 709-718
-
-
Pazour, G.J.1
Dickert, B.L.2
Vucica, Y.3
Seeley, E.S.4
Rosenbaum, J.L.5
Witman, G.B.6
Cole, D.G.7
-
36
-
-
33847413590
-
Functional analysis of an indivisual IFT protein: IFT46 is required for transport of outer dynein arms into flagella
-
Hou, Y., Qin, H., Follit, J. A., Pazour, G. J., Rosenbaum, J. L., and Witman, G. B. (2007) Functional analysis of an indivisual IFT protein: IFT46 is required for transport of outer dynein arms into flagella. J. Cell Biol. 176, 653-665
-
(2007)
J. Cell Biol.
, vol.176
, pp. 653-665
-
-
Hou, Y.1
Qin, H.2
Follit, J.A.3
Pazour, G.J.4
Rosenbaum, J.L.5
Witman, G.B.6
-
37
-
-
84931059841
-
Intraflagellar transport 27 is essential for hedgehog signaling but dispensable for ciliogenesis during hair follicle morphogenesis
-
Yang, N., Li, L., Eguether, T., Sundberg, J. P., Pazour, G. J., and Chen, J. (2015) Intraflagellar transport 27 is essential for hedgehog signaling but dispensable for ciliogenesis during hair follicle morphogenesis. Development 142, 2194-2202
-
(2015)
Development
, vol.142
, pp. 2194-2202
-
-
Yang, N.1
Li, L.2
Eguether, T.3
Sundberg, J.P.4
Pazour, G.J.5
Chen, J.6
-
38
-
-
84922731597
-
The intraflagellar transport protein IFT27 promotes BBSome exit from cilia through the GTPase ARL6/BBS3
-
Liew, G. M., Ye, F., Nager, A. R., Murphy, J. P., Lee, J. S., Aguiar, M., Breslow, D. K., Gygi, S. P., and Nachury, M. V. (2014) The intraflagellar transport protein IFT27 promotes BBSome exit from cilia through the GTPase ARL6/BBS3. Dev. Cell 31, 265-278
-
(2014)
Dev. Cell
, vol.31
, pp. 265-278
-
-
Liew, G.M.1
Ye, F.2
Nager, A.R.3
Murphy, J.P.4
Lee, J.S.5
Aguiar, M.6
Breslow, D.K.7
Gygi, S.P.8
Nachury, M.V.9
-
39
-
-
84921477038
-
IFT27 links the BBSome to IFT for maintenance of the ciliary signaling compartment
-
Eguether, T., San Agustin, J. T., Keady, B. T., Jonassen, J. A., Liang, Y., Francis, R., Tobita, K., Johnson, C. A., Abdelhamed, Z. A., Lo, C. W., and Pazour, G. J. (2014) IFT27 links the BBSome to IFT for maintenance of the ciliary signaling compartment. Dev. Cell 31, 279-290
-
(2014)
Dev. Cell
, vol.31
, pp. 279-290
-
-
Eguether, T.1
San Agustin, J.T.2
Keady, B.T.3
Jonassen, J.A.4
Liang, Y.5
Francis, R.6
Tobita, K.7
Johnson, C.A.8
Abdelhamed, Z.A.9
Lo, C.W.10
Pazour, G.J.11
|