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November 1, 1993Journal of Biological Chemistry716 citationsOpen Access

Molecular cloning of a novel angiotensin II receptor isoform involved in phosphotyrosine phosphatase inhibition.

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YKY KambayashiSBS. BardhanKTKen Takahashi

Key Result

The cloned rat AT2 receptor shares only 32% amino acid identity with AT1 and mediates angiotensin II-induced inhibition of protein tyrosine phosphatase via a G-protein-coupled mechanism.

Key Points

  • This research aims to characterize a novel isoform of the angiotensin II receptor (AT2) and its functional implications in phosphotyrosine signaling.
  • Expression-cloned AT2 cDNA from PC12w rat pheochromocytoma cells.
  • Northern blot analysis to assess mRNA expression in various tissues.
  • Functional assays conducted in COS-7 cells with AT2 stably expressed.
  • The AT2 receptor exhibited selective binding to PD123319 and CGP42112A with an agonistic effect on phosphotyrosine phosphatase.
  • AT2 did not decrease cGMP levels in stably expressing cells, indicating a distinct signaling mechanism.
  • AT2 showed only 32% amino acid identity to AT1, highlighting structural differences.

Structured PICO

P
Population
Rat pheochromocytoma cell line (PC12w) and COS-7 cells
I
Intervention
Expression cloning of AT2 cDNA and stimulation with angiotensin II and AT2-specific ligands (PD123319, CGP42112A)
O
Outcome
Receptor sequence, ligand binding selectivity, and downstream signaling pathways (phosphotyrosine phosphatase inhibition)surrogate

The cloning of the AT2 receptor demonstrates it is structurally distinct from AT1 and identifies its novel role in modulating protein phosphotyrosine levels.

Abstract

There are two major isoforms of the angiotensin II receptor, type 1 (AT1) and type 2 (AT2). AT2 is distinguished from AT1 with respect to its ligand selectivity, its insensitivity to non-hydrolyzable GTP analogues, and its as yet unidentified biological functions. In the present study we have expression-cloned AT2 cDNA from a cDNA library of a rat pheochromocytoma cell line (PC12w). Rat AT2 cDNA encodes a 363-amino acid protein that has seven transmembrane domains. AT1 is the closest in homology to AT2 but with only a 32% identity of amino acid sequence. Stably expressed in COS-7 cells, the receptor showed selective binding to AT2-specific ligands PD123319 and CGP42112A but not to the AT1-specific ligand, losartan. Northern blot analysis revealed that the mRNA of rat AT2 was expressed not only in PC12w cells but also in the adrenal glands and in the inferior olive of the brain, both of which are known to contain AT2 type binding sites. The expressed AT2 receptor mediated angiotensin II-induced inhibition of protein tyrosine phosphatase, an action that was dependent on a pertussis toxin-sensitive G-protein-coupled mechanism in COS-7 cells. The AT2-specific ligand CGP42112A was an agonist rather than antagonist in the inhibition of phosphotyrosine phosphatase. AT2 did not cause a decrease in cGMP in PC12w or COS-7 cells expressing AT2 stably. These results indicate that the AT2 receptor is structurally and functionally different from AT1 and suggest novel functional roles of the renin-angiotensin system in cross-talk with phosphotyrosine signaling by modulating protein phosphotyrosine levels.

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Cite This Study

Kambayashi et al. (1993) studied this question. Angiotensin II receptor type 2 (AT2) cloning and expression was evaluated on Receptor binding selectivity and signaling pathway. The cloned rat AT2 receptor shares only 32% amino acid identity with AT1 and mediates angiotensin II-induced inhibition of protein tyrosine phosphatase via a G-protein-coupled mechanism.

synapsesocial.com/papers/6a237ca4f11d41932608b84dhttps://doi.org/10.1016/s0021-9258(19)74499-8
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