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1.
Eur J Med Chem ; 214: 113190, 2021 Mar 15.
Article in English | MEDLINE | ID: mdl-33548637

ABSTRACT

Even today, the role of the histamine H2 receptor (H2R) in the central nervous system (CNS) is widely unknown. In previous research, many dimeric, high-affinity and subtype-selective carbamoylguanidine-type ligands such as UR-NK22 (5, pKi = 8.07) were reported as H2R agonists. However, their applicability to the study of the H2R in the CNS is compromised by their molecular and pharmacokinetic properties, such as high molecular weight and, consequently, a limited bioavailability. To address the need for more drug-like H2R agonists with high affinity, we synthesized a series of monomeric (thio)carbamoylguanidine-type ligands containing various spacers and side-chain moieties. This structural simplification resulted in potent (partial) agonists (guinea pig right atrium, [35S]GTPγS and ß-arrestin2 recruitment assays) with human (h) H2R affinities in the one-digit nanomolar range (pKi (139, UR-KAT523): 8.35; pKi (157, UR-MB-69): 8.69). Most of the compounds presented here exhibited an excellent selectivity profile towards the hH2R, e.g. 157 being at least 3800-fold selective within the histamine receptor family. The structural similarities of our monomeric ligands to pramipexole (6), a dopamine receptor agonist, suggested an investigation of the binding behavior at those receptors. The target compounds were (partial) agonists with moderate affinity at the hD2longR and agonists with high affinity at the hD3R (e.g. pKi (139, UR-KAT523): 7.80; pKi (157, UR-MB-69): 8.06). In summary, we developed a series of novel, more drug-like H2R and D3R agonists for the application in recombinant systems in which either the H2R or the D3R is solely expressed. Furthermore, our ligands are promising lead compounds in the development of selective H2R agonists for future in vivo studies or experiments utilizing primary tissue to unravel the role and function of the H2R in the CNS.


Subject(s)
Dopamine Agonists/pharmacology , Guanidines/pharmacology , Receptors, Dopamine D3/agonists , Receptors, Histamine H2/metabolism , Animals , Cells, Cultured , Dopamine Agonists/chemical synthesis , Dopamine Agonists/chemistry , Dose-Response Relationship, Drug , Guanidines/chemical synthesis , Guanidines/chemistry , Guinea Pigs , HEK293 Cells , Humans , Ligands , Molecular Structure , Structure-Activity Relationship
2.
ACS Med Chem Lett ; 11(8): 1521-1528, 2020 Aug 13.
Article in English | MEDLINE | ID: mdl-32832018

ABSTRACT

Fluorescence labeled ligands have been gaining importance as molecular tools, enabling receptor-ligand-binding studies by various fluorescence-based techniques. Aiming at red-emitting fluorescent ligands for the hH2R, a series of squaramides labeled with pyridinium or cyanine fluorophores (19-27) was synthesized and characterized. The highest hH2R affinities in radioligand competition binding assays were obtained in the case of pyridinium labeled antagonists 19-21 (pK i: 7.71-7.76) and cyanine labeled antagonists 23 and 25 (pK i: 7.67, 7.11). These fluorescent ligands proved to be useful tools for binding studies (saturation and competition binding as well as kinetic experiments), using confocal microscopy, flow cytometry, and high content imaging. Saturation binding experiments revealed pK d values comparable to the pK i values. The fluorescent probes 21, 23, and 25 could be used to localize H2 receptors in HEK cells and to determine the binding affinities of unlabeled compounds.

3.
J Med Chem ; 59(5): 1925-45, 2016 Mar 10.
Article in English | MEDLINE | ID: mdl-26824643

ABSTRACT

Derivatization of biologically active peptides by conjugation with fluorophores or radionuclide-bearing moieties is an effective and commonly used approach to prepare molecular tools and diagnostic agents. Whereas lysine, cysteine, and N-terminal amino acids have been mostly used for peptide conjugation, we describe a new, widely applicable approach to peptide conjugation based on the nonclassical bioisosteric replacement of the guanidine group in arginine by a functionalized carbamoylguanidine moiety. Four arginine-containing peptide receptor ligands (angiotensin II, neurotensin(8-13), an analogue of the C-terminal pentapeptide of neuropeptide Y, and a neuropeptide FF analogue) were subject of this proof-of-concept study. The N(ω)-carbamoylated arginines, bearing spacers with a terminal amino group, were incorporated into the peptides by standard Fmoc solid phase peptide synthesis. The synthesized chemically stable peptide derivatives showed high receptor affinities with Ki values in the low nanomolar range, even when bulky fluorophores had been attached. Two new tritiated tracers for angiotensin and neurotensin receptors are described.


Subject(s)
Angiotensin II/pharmacology , Arginine/analogs & derivatives , Neuropeptide Y/pharmacology , Neurotensin/pharmacology , Oligopeptides/pharmacology , Peptide Fragments/pharmacology , Receptors, Angiotensin/metabolism , Receptors, Neuropeptide/metabolism , Receptors, Neurotensin/metabolism , Angiotensin II/chemistry , Arginine/chemistry , Cells, Cultured , Dose-Response Relationship, Drug , Humans , Ligands , Molecular Structure , Neuropeptide Y/chemistry , Neurotensin/chemistry , Oligopeptides/chemistry , Peptide Fragments/chemistry , Receptors, Neuropeptide/agonists , Receptors, Neurotensin/antagonists & inhibitors , Structure-Activity Relationship
4.
ChemMedChem ; 10(1): 83-93, 2015 Jan.
Article in English | MEDLINE | ID: mdl-25320025

ABSTRACT

A series of new piperidinomethylphenoxypropylamine-type histamine H2 receptor (H2 R) antagonists with different substituted "urea equivalents" was synthesized and characterized in functional in vitro assays. Based on these data as selection criteria, radiosynthesis of N-[6-(3,4-dioxo-2-{3-[3-(piperidin-1-ylmethyl)phenoxy]propylamino}cyclobut-1-enylamino)hexyl]-(2,3-(3) H2 )propionic amide ([(3) H]UR-DE257) was performed. The radioligand (specific activity: 63 Ci mmol(-1) ) had high affinity for human, rat, and guinea pig H2 R (hH2 R, Sf9 cells: Kd , saturation binding: 31 nM, kinetic studies: 20 nM). UR-DE257 revealed high H2 R selectivity on membranes of Sf9 cells, expressing the respective hHx R subtype (Ki values: hH1 R: >10000 nM, hH2 R: 28 nM, hH3 R: 3800 nM, hH4 R: >10000 nM). In spite of insurmountable antagonism, probably due to rebinding of [(3) H]UR-DE257 to the H2 R (extended residence time), the title compound proved to be a valuable pharmacological tool for the determination of H2 R affinities in competition binding assays.


Subject(s)
Amides/chemistry , Cyclobutanes/chemistry , Histamine H2 Antagonists/chemistry , Radiopharmaceuticals/chemistry , Receptors, Histamine H2/chemistry , Amides/chemical synthesis , Amides/pharmacology , Animals , Cyclobutanes/chemical synthesis , Cyclobutanes/pharmacology , Guinea Pigs , HEK293 Cells , Heart Atria/drug effects , Histamine H2 Antagonists/chemical synthesis , Histamine H2 Antagonists/pharmacology , Humans , Kinetics , Piperidines/chemistry , Propionates/chemistry , Protein Binding , Radiopharmaceuticals/metabolism , Rats , Receptors, Histamine H2/genetics , Receptors, Histamine H2/metabolism , Sf9 Cells , Spodoptera , Structure-Activity Relationship , Tritium/chemistry
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