Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Requirement of Prorenin Receptor and Vacuolar H + -ATPase–Mediated Acidification for Wnt Signaling

View through CrossRef
Of Wnt, Prorenin Receptor, and V-ATPase The Wnt protein binds to receptors at the cell surface and regulates signaling pathways that control a wide range of critical biological processes from stem cell differentiation to generation of cancer. In a screen for components required for Wnt signaling, Cruciat et al. (p. 459 ) discovered an unexpected partner, the prorenin receptor (PRR). PRR bound to the Wnt receptor proteins Fz8 and LRP6. The PRR protein could interact with the receptors and promote Wnt signaling without its cytoplasmic domain through which it initiates signaling in response to the prorenin protein. Its role in Wnt signaling appears to be rather different. The PRR binds to the vacuolar H + –adenosine triphosphatase (V-ATPase), a proton pump that can influence endocytosis by acidification of vesicles. The V-ATPase was also necessary for phosphorylation of LRP6 and Wnt. Thus, PRR may link the V-ATPase to the Wnt receptor protein LRP6, allowing acidification in the vicinity of the activated receptor, which appears to be necessary for phosphorylation of LRP6 and subsequent signaling.
Title: Requirement of Prorenin Receptor and Vacuolar H + -ATPase–Mediated Acidification for Wnt Signaling
Description:
Of Wnt, Prorenin Receptor, and V-ATPase The Wnt protein binds to receptors at the cell surface and regulates signaling pathways that control a wide range of critical biological processes from stem cell differentiation to generation of cancer.
In a screen for components required for Wnt signaling, Cruciat et al.
(p.
459 ) discovered an unexpected partner, the prorenin receptor (PRR).
PRR bound to the Wnt receptor proteins Fz8 and LRP6.
The PRR protein could interact with the receptors and promote Wnt signaling without its cytoplasmic domain through which it initiates signaling in response to the prorenin protein.
Its role in Wnt signaling appears to be rather different.
The PRR binds to the vacuolar H + –adenosine triphosphatase (V-ATPase), a proton pump that can influence endocytosis by acidification of vesicles.
The V-ATPase was also necessary for phosphorylation of LRP6 and Wnt.
Thus, PRR may link the V-ATPase to the Wnt receptor protein LRP6, allowing acidification in the vicinity of the activated receptor, which appears to be necessary for phosphorylation of LRP6 and subsequent signaling.

Related Results

WNT-mediated regulation of regeneration and oncogenesis
WNT-mediated regulation of regeneration and oncogenesis
WNT signaling is a key cell-cell communication pathway that regulates essential cellular processes such as cell fate determination and proliferation. Accordingly, WNT signaling pla...
Prorenin Modulates Intrinsic Excitability of Hypothalamic Tyrosine Hydroxylase Neurons Through SK Channel Activation
Prorenin Modulates Intrinsic Excitability of Hypothalamic Tyrosine Hydroxylase Neurons Through SK Channel Activation
In tyrosine hydroxylase (TH)–expressing neurons of the paraventricular nucleus (PVN), (Pro)renin receptor (PRR) signaling plays a role in central regulation of glucose homeostasis....
WNT Receptor Requirements for Dishevelled Phosphorylation
WNT Receptor Requirements for Dishevelled Phosphorylation
The Dishevelled (DVL) protein is a key component of WNT signaling that relays signals from receptors to downstream effectors. It has been shown that following WNT ligand binding to...
Abstract 1584: Wnt/beta-catenin and Foxa2 axis activates AR signaling in castration resistant prostate cancer
Abstract 1584: Wnt/beta-catenin and Foxa2 axis activates AR signaling in castration resistant prostate cancer
Abstract Background: Prostate cancer (PCa) is the leading cancer among men in the world. Androgen deprivation therapy is a common treatment to cease prostate growth....
PTK7 localization and protein stability is affected by canonical Wnt ligands
PTK7 localization and protein stability is affected by canonical Wnt ligands
ABSTRACT Protein tyrosine kinase 7 (PTK7) is an evolutionarily conserved transmembrane receptor with important roles in embryonic development and disease. Originally...
P-type Na+/K+-ATPase and V-type H+-ATPase expression patterns in the osmoregulatory organs of larval and adult mosquitoAedes aegypti
P-type Na+/K+-ATPase and V-type H+-ATPase expression patterns in the osmoregulatory organs of larval and adult mosquitoAedes aegypti
SUMMARYThis study describes the expression patterns of P-type Na+/K+-ATPase and V-type H+-ATPase in the larval and adult forms of the mosquito Aedes aegypti and provides insight in...
WNT Signaling Pathway and Stem Cell Signaling Network
WNT Signaling Pathway and Stem Cell Signaling Network
Abstract WNT signals are transduced to the canonical pathway for cell fate determination, and to the noncanonical pathway for control of cell movement and tissue pol...

Back to Top