Nature-inspired dimerization as a strategy to modulate neuropeptide pharmacology exemplified with vasopressin and oxytocin

Author:

Dekan Zoltan1234ORCID,Kremsmayr Thomas5678ORCID,Keov Peter910234ORCID,Godin Mathilde1234,Teakle Ngari1234,Dürrauer Leopold5678,Xiang Huang111278,Gharib Dalia111278,Bergmayr Christian111278,Hellinger Roland111278ORCID,Gay Marina131415ORCID,Vilaseca Marta131415ORCID,Kurzbach Dennis5678ORCID,Albericio Fernando16171415ORCID,Alewood Paul F.1234ORCID,Gruber Christian W.910234ORCID,Muttenthaler Markus12345ORCID

Affiliation:

1. Institute for Molecular Bioscience

2. The University of Queensland

3. Brisbane 4072

4. Australia

5. Institute of Biological Chemistry

6. University of Vienna

7. 1090 Vienna

8. Austria

9. Faculty of Medicine

10. School of Biomedical Sciences

11. Center for Physiology and Pharmacology

12. Medical University of Vienna

13. Institute for Research in Biomedicine Barcelona

14. 08028 Barcelona

15. Spain

16. Department of Organic Chemistry

17. University of Barcelona

Abstract

Structural and pharmacological study of parallel, antiparallel and N- to C-terminal cyclized homo- and heterodimers of vasopressin and oxytocin. This study spotlights dimerization as a strategy to modulate the pharmacology of neuropeptides.

Funder

Australian Research Council

Vienna Science and Technology Fund

Austrian Science Fund

H2020 European Research Council

Österreichischen Akademie der Wissenschaften

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemistry

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