
Fluorescent and biotinylated linear peptides as selective bifunctional ligands for the V 1a vasopressin receptor
Author(s) -
HOWL John,
WANG Xianghong,
KIRK Christopher J.,
WHEATLEY Mark
Publication year - 1993
Publication title -
european journal of biochemistry
Language(s) - English
Resource type - Journals
eISSN - 1432-1033
pISSN - 0014-2956
DOI - 10.1111/j.1432-1033.1993.tb17811.x
Subject(s) - biotinylation , bifunctional , fluorescence , chemistry , receptor , vasopressin , biophysics , biochemistry , biology , endocrinology , physics , optics , catalysis
We have designed and synthesized a linear peptide analogue of arginine vasopressin. This peptide, [1‐phenylacetyl, 2‐ O ‐methyl‐D‐tyrosine, 6‐arginine, 8‐arginine, 9‐lysinamide]vasopressin (PhAcALVP), has a lysinamide residue substituted for the more usual glycinamide at position 9. Derivatization of PhAcALVP at the Nɛ‐lysyl amino group with N ‐hydroxysuccinimide esters of aminomethylcoumarin (Mec) and biotin (Btn) produced the bifunctional ligands PhAcAL(Mec)VP and PhAcAL(Btn)VP, respectively. Pharmacological characterization of these peptides revealed that all were high‐affinity V 1a ‐selective antagonists. PhAcAL(Btn)VP can simultaneously bind to both the rat liver V 1a receptor and avidin conjugates. Using this strategy, we were able to study the distribution of V 1a receptors on the surface of the rat mammary tumour cell line, WRK‐1. Routine epifluorescent microscopy and confocal image analysis were used to observe the distribution of avidin—Texas‐Red associated with receptor‐bound PhAcAL(Btn)VP. We conclude that PhAcALVP is a useful precursor for the production of hetero‐bifunctional V 1a ‐selective ligands. Both PhAcAL‐(Mec)VP and PheAcAL(Btn)VP can be used selectively to probe the V 1a receptor and will be versatile tools for a variety of histocytochemical applications, including receptor localization and purification.