Your browser doesn't support javascript.
loading
Negative feedback regulation of Wnt signaling by Gbetagamma-mediated reduction of Dishevelled
Experimental & Molecular Medicine ; : 695-706, 2009.
Article in English | WPRIM | ID: wpr-71513
ABSTRACT
Wnt signaling is known to be important for diverse embryonic and post-natal cellular events and be regulated by the proteins Dishevelled and Axin. Although Dishevelled is activated by Wnt and involved in signal transduction, it is not clear how Dishevelled-mediated signaling is turned off. We report that guanine nucleotide binding protein beta 2 (Gnb2; Gbeta2) bound to Axin and Gbeta2 inhibited Wnt mediated reporter activity. The inhibition involved reduction of the level of Dishevelled, and the Gbeta2gamma2 mediated reduction of Dishevelled was countered by increased expression of Axin. Consistent with these effects in HEK293T cells, injection of Gbeta2gamma2 into Xenopus embryos inhibited the formation of secondary axes induced either by XWnt8 or Dishevelled, but not by beta-catenin. The DEP domain of Dishevelled is necessary for both interaction with Gbeta2gamma2 and subsequent degradation of Dishevelled via the lysosomal pathway. Signaling induced by Gbeta2gamma2 is required because a mutant of Gbeta2, Gbeta2 (W332A) with lower signaling activity, had reduced ability to downregulate the level of Dishevelled. Activation of Wnt signaling by either of two methods, increased Frizzled signaling or transient transfection of Wnt, also led to increased degradation of Dishevelled and the induced Dishevelled loss is dependent on Gbeta1 and Gbeta2. Other studies with agents that interfere with PLC action and calcium signaling suggested that loss of Dishevelled is mediated through the following pathway Wnt/Frizzled-->Gbetagamma-->PLC-->Ca+2/PKC signaling. Together the evidence suggests a novel negative feedback mechanism in which Gbeta2gamma2 inhibits Wnt signaling by degradation of Dishevelled.
Subject(s)

Full text: Available Index: WPRIM (Western Pacific) Main subject: Phosphoproteins / Protein Binding / Repressor Proteins / Xenopus / Blastomeres / Transfection / Cell Line / Gene Expression Regulation, Developmental / GTP-Binding Proteins / Xenopus Proteins Limits: Animals / Humans Language: English Journal: Experimental & Molecular Medicine Year: 2009 Type: Article

Similar

MEDLINE

...
LILACS

LIS

Full text: Available Index: WPRIM (Western Pacific) Main subject: Phosphoproteins / Protein Binding / Repressor Proteins / Xenopus / Blastomeres / Transfection / Cell Line / Gene Expression Regulation, Developmental / GTP-Binding Proteins / Xenopus Proteins Limits: Animals / Humans Language: English Journal: Experimental & Molecular Medicine Year: 2009 Type: Article