Literature DB >> 1353076

Dephosphorylation of the guanylyl cyclase-A receptor causes desensitization.

L R Potter1, D L Garbers.   

Abstract

Atrial natriuretic peptide (ANP) binds to the guanylyl cyclase-A (GC-A) receptor found in tissues such as the kidney and adrenal gland, resulting in marked elevations of the intracellular signaling molecule, cGMP. Here, GC-A is shown to exist as a phosphoprotein when expressed in human embryonic 293 cells. The 32P is principally associated with phosphoserine, with only trace amounts of phosphothreonine. The addition of ANP causes a time-dependent dephosphorylation of the receptor, as well as desensitization, which is not due to an ANP-mediated decrease in the amount of receptor protein. The mobility of GC-A on sodium dodecyl sulfate-polyacrylamide gel electrophoresis increases after treatment of cells with ANP, and protein phosphatase 2A induces the same mobility shift. The protein phosphatase also catalyzes dephosphorylation of GC-A, and this is directly correlated with decreases in ANP-stimulatable guanylyl cyclase activity. Okadaic acid, an inhibitor of protein phosphatase 2A, blocks both the dephosphorylation and the desensitization. Therefore, in contrast to many other cell surface receptors, GC-A is desensitized by ligand-induced dephosphorylation.

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Year:  1992        PMID: 1353076

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  58 in total

Review 1.  Natriuretic peptide receptor: structure and signaling.

Authors:  Kunio S Misono
Journal:  Mol Cell Biochem       Date:  2002-01       Impact factor: 3.396

2.  Regulation of ANP-stimulated guanylate cyclase in the presence of Mn2+ in rat lung membranes.

Authors:  T Nashida; A Imai; H Shimomura
Journal:  Mol Cell Biochem       Date:  2000-05       Impact factor: 3.396

Review 3.  Regulation and therapeutic targeting of peptide-activated receptor guanylyl cyclases.

Authors:  Lincoln R Potter
Journal:  Pharmacol Ther       Date:  2010-12-24       Impact factor: 12.310

4.  Mass spectrometric identification of phosphorylation sites in guanylyl cyclase A and B.

Authors:  Andrea R Yoder; Matthew D Stone; Timothy J Griffin; Lincoln R Potter
Journal:  Biochemistry       Date:  2010-11-08       Impact factor: 3.162

5.  Increasing aminoterminal-pro-B-type natriuretic peptide precedes the development of arterial hypertension: the multiethnic study of atherosclerosis.

Authors:  Otto A Sanchez; David R Jacobs; Hossein Bahrami; Carmen A Peralta; Lori B Daniels; João A Lima; Alan Maisel; Daniel A Duprez
Journal:  J Hypertens       Date:  2015-05       Impact factor: 4.844

6.  Identification of guanylyl cyclases that function in thermosensory neurons of Caenorhabditis elegans.

Authors:  Hitoshi Inada; Hiroko Ito; John Satterlee; Piali Sengupta; Kunihiro Matsumoto; Ikue Mori
Journal:  Genetics       Date:  2006-01-16       Impact factor: 4.562

7.  Altered gene expression in cerulein-stimulated pancreatic acinar cells: pathologic mechanism of acute pancreatitis.

Authors:  Ji Hoon Yu; Joo Weon Lim; Hyeyoung Kim
Journal:  Korean J Physiol Pharmacol       Date:  2009-12-31       Impact factor: 2.016

8.  Changes in N-terminal pro-B-type natriuretic peptide and incidence of diabetes: The Multi-Ethnic Study of Atherosclerosis (MESA).

Authors:  O A Sanchez; D A Duprez; H Bahrami; C A Peralta; L B Daniels; J A Lima; A Maisel; A R Folsom; D R Jacobs
Journal:  Diabetes Metab       Date:  2015-06-03       Impact factor: 6.041

Review 9.  Structure, signaling mechanism and regulation of the natriuretic peptide receptor guanylate cyclase.

Authors:  Kunio S Misono; John S Philo; Tsutomu Arakawa; Craig M Ogata; Yue Qiu; Haruo Ogawa; Howard S Young
Journal:  FEBS J       Date:  2011-04-07       Impact factor: 5.542

10.  Receptor guanylyl cyclase C (GC-C): regulation and signal transduction.

Authors:  Nirmalya Basu; Najla Arshad; Sandhya S Visweswariah
Journal:  Mol Cell Biochem       Date:  2009-12-04       Impact factor: 3.396

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