Biology Reference
In-Depth Information
46. Sheldahl LC, Park M, Malbon CC, Moon RT. Protein kinase C is differentially stim-
ulated by Wnt and Frizzled homologs in a G-protein-dependent manner. Curr Biol .
1999;9:695 - 698.
47. Slusarski DC, Corces VG, Moon RT. Interaction of Wnt and a Frizzled homologue trig-
gers G-protein-linked phosphatidylinositol signalling. Nature . 1997;390:410 -413.
48. DeCostanzo AJ, Huang XP, Wang HY, Malbon CC. The Frizzled-1/beta(2)-
adrenergic receptor chimera: pharmacological properties of a unique G protein-linked
receptor. Naunyn Schmiedebergs Arch Pharmacol . 2002;365:341 - 348.
49. Koval A, Purvanov V, Egger-Adam D, Katanaev VL. Yellow submarine of the Wnt/
Frizzled signaling: submerging from the G protein harbor to the targets. Biochem
Pharmacol . 2011;82:1311- 1319.
50. Chen W, ten Berge D, Brown J, et al. Dishevelled 2 recruits beta-arrestin 2 to mediate
Wnt5A-stimulated endocytosis of Frizzled 4. Science . 2003;301:1391- 1394.
51. Fagotto F, Jho E, Zeng L, et al. Domains of axin involved in protein-protein interactions,
Wnt pathway inhibition, and intracellular localization. J Cell Biol . 1999;145:741 - 756.
52. Hart MJ, de los Santos R, Albert IN, Rubinfeld B, Polakis P. Downregulation of beta-
catenin by human Axin and its association with the APC tumor suppressor, beta-catenin
and GSK3 beta. Curr Biol . 1998;8:573 - 581.
53. van Noort M, Meeldijk J, van der Zee R, Destree O, Clevers H. Wnt signaling controls
the phosphorylation status of beta-catenin. J Biol Chem . 2002;277:17901 -17905.
54. Tamai K, Semenov M, Kato Y, et al. LDL-receptor-related proteins in Wnt signal trans-
duction. Nature . 2000;407:530- 535.
55. Axelrod JD, Miller JR, Shulman JM, Moon RT, Perrimon N. Differential recruitment
of Dishevelled provides signaling specificity in the planar cell polarity and Wingless sig-
naling pathways. Genes Dev . 1998;12:2610- 2622.
56. Aberle H, Bauer A, Stappert J, Kispert A, Kemler R. Beta-Catenin is a target for the
ubiquitin-proteasome pathway. EMBO J . 1997;16:3797 - 3804.
57. Huber O, Korn R, McLaughlin J, Ohsugi M, Herrmann BG, Kemler R. Nuclear local-
ization of beta-catenin by interaction with transcription factor LEF-1. Mech Dev .
1996;59:3 - 10.
58. Papkoff J, Rubinfeld B, Schryver B, Polakis P. Wnt-1 regulates free pools of catenins and
stabilizes APC-catenin complexes. Mol Cell Biol . 1996;16:2128 - 2134.
59. Chen W, Hu LA, Semenov MV, et al. Beta-Arrestin1 modulates lymphoid enhancer
factor transcriptional activity through interaction with phosphorylated dishevelled pro-
teins. Proc Natl Acad Sci USA . 2001;98:14889- 14894.
60. Kuhl M, Pandur P. Dorsal axis duplication as a functional readout for Wnt activity.
Methods Mol Biol . 2008;469:467 - 476.
61. Moriguchi T, Kawachi K, Kamakura S, et al. Distinct domains of mouse dishevelled are
responsible for the c-Jun N-terminal kinase/stress-activated protein kinase activation and
the axis formation in vertebrates. J Biol Chem . 1999;274:30957 - 30962.
62. MolenaarM, van deWeteringM, Oosterwegel M, et al. XTcf-3 transcription factor medi-
ates beta-catenin-induced axis formation in Xenopus embryos. Cell . 1996;86:391- 399.
63. Chen M, Philipp M, Wang J, et al. G Protein-coupled receptor kinases phosphorylate
LRP6 in the Wnt pathway. J Biol Chem . 2009;284:35040 - 35048.
64. Zeng X, Tamai K, Doble B, et al. A dual-kinase mechanism for Wnt co-receptor phos-
phorylation and activation. Nature . 2005;438:873 - 877.
65. Keller RE, Danilchik M, Gimlich R, Shih J. The function and mechanism of convergent
extension during gastrulation of Xenopus laevis. J Embryol Exp Morphol . 1985;89
(Suppl.):185 - 209.
66. Strutt DI, Weber U, Mlodzik M. The role of RhoA in tissue polarity and Frizzled sig-
nalling. Nature . 1997;387:292 - 295.
Search WWH ::




Custom Search