Biology Reference
In-Depth Information
3. Parruti G, Peracchia F, Sallese M, et al. Molecular analysis of human beta-arrestin-1:
cloning, tissue distribution, and regulation of expression. Identification of two isoforms
generated by alternative splicing. J Biol Chem . 1993;268:9753 - 9761.
4. Bohn LM, Lefkowitz RJ, Gainetdinov RR, Peppel K, Caron MG, Lin FT. Enhanced
morphine analgesia in mice lacking beta-arrestin 2. Science . 1999;286:2495 - 2498.
5. Conner DA, Mathier MA, Mortensen RM, et al. Beta-Arrestin1 knockout mice appear
normal but demonstrate altered cardiac responses to beta-adrenergic stimulation. Circ
Res . 1997;81:1021 - 1026.
6. Lefkowitz RJ, Shenoy SK. Transduction of receptor signals by beta-arrestins. Science .
2005;308:512- 517.
7. Lefkowitz RJ, Rajagopal K, Whalen EJ. New roles for beta-arrestins in cell signaling: not
just for seven-transmembrane receptors. Mol Cell . 2006;24:643 - 652.
8. Hara MR, Kovacs JJ, Whalen EJ, et al. A stress response pathway regulates DNA damage
through beta2-adrenoreceptors and beta-arrestin-1. Nature . 2011;477:349 - 353.
9. Zhang M, Liu X, Zhang Y, Zhao J. Loss of beta arrestin1 and beta arrestin2 contributes
to pulmonary hypoplasia and neonatal lethality in mice. Dev Biol . 2010;339:407 - 417.
10. Zhang M, Teng H, Shi J, Zhang Y. Disruption of beta-arrestins blocks glucocorticoid
receptor and severely retards
lung and liver development
in mice. Mech Dev .
2011;128:368- 375.
11. Schmid W, Cole TJ, Blendy JA, Schutz G. Molecular genetic analysis of glucocorticoid
signalling in development. J Steroid Biochem Mol Biol . 1995;53:33- 35.
12. Manwani N, Gagnon S, Post M, et al. Reduced viability of mice with lung epithelial-
specific knockout of glucocorticoid receptor. Am J Respir Cell Mol Biol . 2010;43:
599 - 606.
13. Roman G, He J, Davis RL. Kurtz, a novel nonvisual arrestin, is an essential neural gene
in Drosophila. Genetics . 2000;155:1281 - 1295.
14. Bryja V, Gradl D, Schambony A, Arenas E, Schulte G. Beta-arrestin is a necessary com-
ponent of Wnt/beta-catenin signaling in vitro and in vivo. Proc Natl Acad Sci USA .
2007;104:6690 - 6695.
15. Kim GH, Han JK. Essential role for beta-arrestin 2 in the regulation of Xenopus con-
vergent extension movements. EMBO J . 2007;26:2513 - 2526.
16. Bryja V, Schambony A, Cajanek L, Dominguez I, Arenas E, Schulte G. Beta-arrestin and
casein kinase 1/2 define distinct branches of non-canonical WNT signalling pathways.
EMBO Rep . 2008;9:1244 - 1250.
17. Evron T, Philipp M, Lu J, et al. Growth Arrest Specific 8 (Gas8) and G protein-coupled
receptor kinase 2 (GRK2) cooperate in the control of Smoothened signaling. J Biol
Chem . 2011;286:27676 - 27686.
18. Wilbanks AM, Fralish GB, Kirby ML, Barak LS, Li YX, Caron MG. Beta-arrestin 2 reg-
ulates zebrafish development
through the hedgehog signaling pathway. Science .
2004;306:2264 - 2267.
19. Yue R, Kang J, Zhao C, et al. Beta-arrestin1 regulates zebrafish hematopoiesis through
binding to YY1 and relieving polycomb group repression. Cell . 2009;139:535 - 546.
20. Tipping M, Kim Y, Kyriakakis P, Tong M, Shvartsman SY, Veraksa A. Beta-Arrestin
Kurtz inhibits MAPK and Toll signalling in Drosophila development. EMBO J .
2010;29:3222- 3235.
21. DeWire SM, Ahn S, Lefkowitz RJ, Shenoy SK. Beta-arrestins and cell signaling. Annu
Rev Physiol . 2007;69:483 - 510.
22. Witherow DS, Garrison TR, Miller WE, Lefkowitz RJ. Beta-Arrestin inhibits
NF-kappaB activity by means of its interaction with the NF-kappaB inhibitor
IkappaBalpha. Proc Natl Acad Sci USA . 2004;101:8603 - 8607.
23. Kovacs JJ, Whalen EJ, Liu R, et al. Beta-arrestin-mediated localization of smoothened to
the primary cilium. Science . 2008;320:1777 - 1781.
 
 
Search WWH ::




Custom Search