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Items: 1 to 20 of 104

1.

RalA interacts with ZONAB in a cell density-dependent manner and regulates its transcriptional activity.

Frankel P, Aronheim A, Kavanagh E, Balda MS, Matter K, Bunney TD, Marshall CJ.

EMBO J. 2005 Jan 12;24(1):54-62. Epub 2004 Dec 9.

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RalA activation at nascent lamellipodia of epidermal growth factor-stimulated Cos7 cells and migrating Madin-Darby canine kidney cells.

Takaya A, Ohba Y, Kurokawa K, Matsuda M.

Mol Biol Cell. 2004 Jun;15(6):2549-57. Epub 2004 Mar 19.

4.

R-Ras regulates exocytosis by Rgl2/Rlf-mediated activation of RalA on endosomes.

Takaya A, Kamio T, Masuda M, Mochizuki N, Sawa H, Sato M, Nagashima K, Mizutani A, Matsuno A, Kiyokawa E, Matsuda M.

Mol Biol Cell. 2007 May;18(5):1850-60. Epub 2007 Mar 7.

5.

Calmodulin binds RalA and RalB and is required for the thrombin-induced activation of Ral in human platelets.

Clough RR, Sidhu RS, Bhullar RP.

J Biol Chem. 2002 Aug 9;277(32):28972-80. Epub 2002 May 28.

6.

The heat-shock protein Apg-2 binds to the tight junction protein ZO-1 and regulates transcriptional activity of ZONAB.

Tsapara A, Matter K, Balda MS.

Mol Biol Cell. 2006 Mar;17(3):1322-30. Epub 2006 Jan 11.

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The brain exocyst complex interacts with RalA in a GTP-dependent manner: identification of a novel mammalian Sec3 gene and a second Sec15 gene.

Brymora A, Valova VA, Larsen MR, Roufogalis BD, Robinson PJ.

J Biol Chem. 2001 Aug 10;276(32):29792-7. Epub 2001 Jun 13.

10.

The Y-box factor ZONAB/DbpA associates with GEF-H1/Lfc and mediates Rho-stimulated transcription.

Nie M, Aijaz S, Leefa Chong San IV, Balda MS, Matter K.

EMBO Rep. 2009 Oct;10(10):1125-31. doi: 10.1038/embor.2009.182. Epub 2009 Sep 4.

11.

Regulation of PCNA and cyclin D1 expression and epithelial morphogenesis by the ZO-1-regulated transcription factor ZONAB/DbpA.

Sourisseau T, Georgiadis A, Tsapara A, Ali RR, Pestell R, Matter K, Balda MS.

Mol Cell Biol. 2006 Mar;26(6):2387-98.

12.

Functional interaction between the ZO-1-interacting transcription factor ZONAB/DbpA and the RNA processing factor symplekin.

Kavanagh E, Buchert M, Tsapara A, Choquet A, Balda MS, Hollande F, Matter K.

J Cell Sci. 2006 Dec 15;119(Pt 24):5098-105.

13.

Activation of RalA is critical for Ras-induced tumorigenesis of human cells.

Lim KH, Baines AT, Fiordalisi JJ, Shipitsin M, Feig LA, Cox AD, Der CJ, Counter CM.

Cancer Cell. 2005 Jun;7(6):533-45.

14.

The exocyst complex binds the small GTPase RalA to mediate filopodia formation.

Sugihara K, Asano S, Tanaka K, Iwamatsu A, Okawa K, Ohta Y.

Nat Cell Biol. 2002 Jan;4(1):73-8.

PMID:
11744922
16.
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Expression profiling of Ral-depleted bladder cancer cells identifies RREB-1 as a novel transcriptional Ral effector.

Oxford G, Smith SC, Hampton G, Theodorescu D.

Oncogene. 2007 Nov 1;26(50):7143-52. Epub 2007 May 14.

PMID:
17496927
18.

Ral-GTPase interacts with the beta1 subunit of Na+/K+-ATPase and is activated upon inhibition of the Na+/K+ pump.

Bhullar RP, Clough RR, Kanungo J, Elsaraj SM, Grujic O.

Can J Physiol Pharmacol. 2007 Mar-Apr;85(3-4):444-54.

PMID:
17612654
19.

RalA and RalB function as the critical GTP sensors for GTP-dependent exocytosis.

Li G, Han L, Chou TC, Fujita Y, Arunachalam L, Xu A, Wong A, Chiew SK, Wan Q, Wang L, Sugita S.

J Neurosci. 2007 Jan 3;27(1):190-202.

20.

Structural basis of the interaction between RalA and Sec5, a subunit of the sec6/8 complex.

Fukai S, Matern HT, Jagath JR, Scheller RH, Brunger AT.

EMBO J. 2003 Jul 1;22(13):3267-78.

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