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Angiotensin IV displays only low affinity for native insulin-regulated aminopeptidase (IRAP).

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Published

Peer reviewed scientific article

English

DOI : https://doi.org/10.1111/j.1472-8206.2011.00948.x [2]

Authors

Heidi Demaegdt [3]; Jean-Paul De Backer [4]; Aneta Lukaszuk [5]; Géza Tóth [6]; Erzsébet Szemenyei [7]; Dirk Tourwé [8]; Georges Vauquelin [9]

Keywords

  1. Angiotensin II [10]
  2. Animals [11]
  3. CD13 Antigens [12]
  4. Cell Line [13]
  5. Chelating Agents [14]
  6. Cho Cells [15]
  7. Cricetinae [16]
  8. Cricetulus [17]
  9. Cystinyl Aminopeptidase [18]
  10. mice [19]
  11. Organophosphorus Compounds [20]
  12. Radioligand Assay [21]
  13. Tyrosine [22]
  14. Zinc [23]

Abstract:

Radioligand binding studies revealed that Ang IV binds to insulin-regulated aminopeptidase (IRAP)/'AT(4) receptors' with high affinity. Yet, as these experiments were routinely carried out in the presence of chelators, only the catalytic zinc-depleted apo-form of IRAP was labelled. While the chelators remove the catalytic zinc from IRAP and protect Ang IV from proteolytic degradation, the aminopeptidase N selective inhibitor '7B' only exerts the latter effect. By using 7B along with the new stable Ang IV-analog [(3) H]AL-11, we here show that the native enzyme is only a low-…
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Abstract

Radioligand binding studies revealed that Ang IV binds to insulin-regulated aminopeptidase (IRAP)/'AT(4) receptors' with high affinity. Yet, as these experiments were routinely carried out in the presence of chelators, only the catalytic zinc-depleted apo-form of IRAP was labelled. While the chelators remove the catalytic zinc from IRAP and protect Ang IV from proteolytic degradation, the aminopeptidase N selective inhibitor '7B' only exerts the latter effect. By using 7B along with the new stable Ang IV-analog [(3) H]AL-11, we here show that the native enzyme is only a low-affinity target for Ang IV.

Associated health topics:


Source URL:https://sciensano.be/en/biblio/angiotensin-iv-displays-only-low-affinity-native-insulin-regulated-aminopeptidase-irap

Links
[1] https://sciensano.be/sites/default/files/demaegdt_et_al-2012-fundamental_clinical_pharmacology.pdf [2] https://doi.org/10.1111/j.1472-8206.2011.00948.x [3] https://sciensano.be/en/people/heidi-demaegdt/biblio [4] https://sciensano.be/en/biblio?f%5Bauthor%5D=85710&f%5Bsearch%5D=Jean-Paul%20De%20Backer [5] https://sciensano.be/en/biblio?f%5Bauthor%5D=85713&f%5Bsearch%5D=Aneta%20Lukaszuk [6] https://sciensano.be/en/biblio?f%5Bauthor%5D=85716&f%5Bsearch%5D=G%C3%A9za%20T%C3%B3th [7] https://sciensano.be/en/biblio?f%5Bauthor%5D=85719&f%5Bsearch%5D=Erzs%C3%A9bet%20Szemenyei [8] https://sciensano.be/en/biblio?f%5Bauthor%5D=85722&f%5Bsearch%5D=Dirk%20Tourw%C3%A9 [9] https://sciensano.be/en/biblio?f%5Bauthor%5D=85725&f%5Bsearch%5D=Georges%20Vauquelin [10] https://sciensano.be/en/biblio?f%5Bkeyword%5D=21576&f%5Bsearch%5D=Angiotensin%20II [11] https://sciensano.be/en/biblio?f%5Bkeyword%5D=423&f%5Bsearch%5D=Animals [12] https://sciensano.be/en/biblio?f%5Bkeyword%5D=35538&f%5Bsearch%5D=CD13%20Antigens [13] https://sciensano.be/en/biblio?f%5Bkeyword%5D=462&f%5Bsearch%5D=Cell%20Line [14] https://sciensano.be/en/biblio?f%5Bkeyword%5D=35541&f%5Bsearch%5D=Chelating%20Agents [15] https://sciensano.be/en/biblio?f%5Bkeyword%5D=20853&f%5Bsearch%5D=Cho%20Cells [16] https://sciensano.be/en/biblio?f%5Bkeyword%5D=465&f%5Bsearch%5D=Cricetinae [17] https://sciensano.be/en/biblio?f%5Bkeyword%5D=20874&f%5Bsearch%5D=Cricetulus [18] https://sciensano.be/en/biblio?f%5Bkeyword%5D=35544&f%5Bsearch%5D=Cystinyl%20Aminopeptidase [19] https://sciensano.be/en/biblio?f%5Bkeyword%5D=2454&f%5Bsearch%5D=mice [20] https://sciensano.be/en/biblio?f%5Bkeyword%5D=35547&f%5Bsearch%5D=Organophosphorus%20Compounds [21] https://sciensano.be/en/biblio?f%5Bkeyword%5D=35550&f%5Bsearch%5D=Radioligand%20Assay [22] https://sciensano.be/en/biblio?f%5Bkeyword%5D=35553&f%5Bsearch%5D=Tyrosine [23] https://sciensano.be/en/biblio?f%5Bkeyword%5D=29601&f%5Bsearch%5D=Zinc