[1] |
Ashida, S., Furihata, M., Katagiri, T. et al. Expression of novel molecules, MICAL2-PV (MICAL2 prostate cancer variants), increases with high Gleason score and prostate cancer progression Clin. Cancer Res., 12 (2006),pp. 2767-2773
|
[2] |
Beuchle, D., Schwarz, H., Langegger, M. et al. Mech. Dev., 124 (2007),pp. 390-406
|
[3] |
Felsenstein, J. Confidence limits on phylogenies: an approach using the bootstrap Evolution, 39 (1985),pp. 783-791
|
[4] |
Finn, R.D., Mistry, J., Tate, J. et al. The Pfam protein families database Nucleic Acids Res, 38 (2010),pp. D211-D222
|
[5] |
Fischer, J., Weide, T., Barnekow, A. The MICAL proteins and rab1: a possible link to the cytoskeleton? Biochem. Biophys. Res. Commun., 328 (2005),pp. 415-423
|
[6] |
Fukami, K., Furuhashi, K., Inagaki, M. et al. Requirement of phosphatidylinositol 4,5-bisphosphate for alpha-actinin function Nature, 359 (1992),pp. 150-152
|
[7] |
Gimona, M., Djinovic-Carugo, K., Kranewitter, W.J. et al. Functional plasticity of CH domains FEBS Lett., 513 (2002),pp. 98-106
|
[8] |
Guillou, F., Roger, E., Mone, Y. et al. Mol. Biochem. Parasitol., 155 (2007),pp. 45-56
|
[9] |
Hung, R.J., Yazdani, U., Yoon, J. et al. Mical links semaphorins to F-actin disassembly Nature, 463 (2010),pp. 823-827
|
[10] |
Jones, D.T., Taylor, W.R., Thornton, J.M. The rapid generation of mutation data matrices from protein sequences Comput. Appl. Biosci., 8 (1992),pp. 275-282
|
[11] |
Jowett, T., Lettice, L. Trends Genet., 10 (1994),pp. 73-74
|
[12] |
Kimmel, C.B., Ballard, W.W., Kimmel, S.R. et al. Stages of embryonic development of the zebrafish Dev. Dyn., 203 (1995),pp. 253-310
|
[13] |
Kirilly, D., Gu, Y., Huang, Y. et al. A genetic pathway composed of Sox14 and Mical governs severing of dendrites during pruning Nat. Neurosci., 12 (2009),pp. 1497-1506
|
[14] |
Kolk, S.M., Pasterkamp, R.J. MICAL flavoprotein monooxygenases: structure, function and role in semaphorin signaling Adv. Exp. Med. Biol., 600 (2007),pp. 38-51
|
[15] |
Nakatsuji, H., Nishimura, N., Yamamura, R. et al. Involvement of actinin-4 in the recruitment of JRAB/MICAL-L2 to cell-cell junctions and the formation of functional tight junctions Mol. Cell. Biol., 28 (2008),pp. 3324-3335
|
[16] |
Nishimura, N., Sasaki, T. Cell-surface biotinylation to study endocytosis and recycling of occludin Methods Mol. Biol., 440 (2008),pp. 89-96
|
[17] |
Nishimura, N., Sasaki, T. Identification and characterization of JRAB/MICAL-L2, a junctional Rab13-binding protein Methods Enzymol., 438 (2008),pp. 141-153
|
[18] |
Nishimura, N., Sasaki, T. Rab family small G proteins in regulation of epithelial apical junctions Front. Biosci., 14 (2009),pp. 2115-2129
|
[19] |
Pasterkamp, R.J., Dai, H.N., Terman, J.R. et al. MICAL flavoprotein monooxygenases: expression during neural development and following spinal cord injuries in the rat Mol. Cell. Neurosci., 31 (2006),pp. 52-69
|
[20] |
Postlethwait, J.H., Woods, I.G., Ngo-Hazelett, P. et al. Zebrafish comparative genomics and the origins of vertebrate chromosomes Genome Res., 10 (2000),pp. 1890-1902
|
[21] |
Saitou, N., Nei, M. The neighbor-joining method: a new method for reconstructing phylogenetic trees Mol. Biol. Evol., 4 (1987),pp. 406-425
|
[22] |
Sakane, A., Honda, K., Sasaki, T. Rab13 regulates neurite outgrowth in PC12 cells through its effector protein, JRAB/MICAL-L2 Mol. Cell. Biol., 30 (2010),pp. 1077-1087
|
[23] |
Sharma, M., Giridharan, S.S. Panapakkam, Rahajeng, J., Naslavsky, N. et al. MICAL-L1 links EHD1 to tubular recycling endosomes and regulates receptor recycling Mol. Bio. Cell., 24 (2009),pp. 5181-5194
|
[24] |
Sun, H., Dai, H., Zhang, J. et al. Solution structure of calponin homology domain of human MICAL-1 J. Biomol. NMR, 36 (2006),pp. 295-300
|
[25] |
Suzuki, T., Nakamoto, T., Ogawa, S. et al. MICAL, a novel CasL interacting molecule, associates with vimentin J. Biol. Chem., 277 (2002),pp. 14933-14941
|
[26] |
Tamura, K., Dudley, J., Nei, M. et al. MEGA4: Molecular Evolutionary Genetics Analysis (MEGA) software version 4.0 Mol. Biol. Evol., 24 (2007),pp. 1596-1599
|
[27] |
Terai, T., Nishimura, N., Kanda, I. et al. JRAB/MICAL-L2 is a junctional Rab13-binding protein mediating the endocytic recycling of occludin Mol. Biol. Cell., 17 (2006),pp. 2465-2475
|
[28] |
Terman, J.R., Mao, T., Pasterkamp, R.J. et al. MICALs, a family of conserved flavoprotein oxidoreductases, function in plexin-mediated axonal repulsion Cell, 109 (2002),pp. 887-900
|
[29] |
Weide, T., Teuber, J., Bayer, M. et al. MICAL-1 isoforms, novel rab1 interacting proteins Biochem. Biophys. Res. Commun., 306 (2003),pp. 79-86
|
[30] |
Westerfield, M.
|