Tibaduiza E C, Chen C, Beinborn M
Department of Medicine and Molecular Pharmacology Research Center, Tupper Research Institute, New England Medical Center, Boston, Massachusetts 02111, USA.
J Biol Chem. 2001 Oct 12;276(41):37787-93. doi: 10.1074/jbc.M106692200. Epub 2001 Aug 9.
The glucagon-like peptide 1 receptor (GLP-1R) belongs to a distinct subgroup of G protein-coupled peptide hormone receptors (class B) that has been difficult to target by small molecule drugs. Here, we report that a non-peptide compound, T-0632, binds with micromolar affinity to the human GLP-1R and blocks GLP-1-induced cAMP production. Furthermore, the observation that T-0632 has almost 100-fold selectivity for the human versus the highly homologous rat GLP-1R provided an opportunity to map determinants of non-peptide binding. Radioligand competition experiments utilizing a series of chimeric human/rat GLP-1R constructs revealed that partial substitution of the amino terminus of the rat GLP-1R with the corresponding sequence from the human homolog was sufficient to confer high T-0632 affinity. Follow-up analysis of receptors where individual candidate amino acids had been exchanged between the human and rat GLP-1Rs identified a single residue that explained species selectivity of non-peptide binding. Replacement of tryptophan 33 in the human GLP-1R by serine (the homologous amino acid in the rat GLP-1R) resulted in a 100-fold loss of T-0632 affinity, whereas the converse mutation in the rat GLP-1R led to a reciprocal gain-of-function phenotype. These observations suggest that in a class B receptor, important determinants of non-peptide affinity reside within the extracellular amino-terminal domain. Compound T-0632 may mimic, and thereby interfere with, the putative "pseudo-tethering" mechanism by which the amino terminus of class B receptors initiates the binding of cognate hormones.
胰高血糖素样肽1受体(GLP-1R)属于G蛋白偶联肽激素受体(B类)的一个独特亚组,小分子药物一直难以作用于该受体。在此,我们报告一种非肽化合物T-0632,它以微摩尔亲和力与人GLP-1R结合,并阻断GLP-1诱导的环磷酸腺苷(cAMP)生成。此外,T-0632对人GLP-1R与高度同源的大鼠GLP-1R的选择性几乎有100倍差异,这为确定非肽结合的决定因素提供了契机。利用一系列人/大鼠嵌合GLP-1R构建体进行的放射性配体竞争实验表明,用人类同源物的相应序列部分替换大鼠GLP-1R的氨基末端,足以赋予其对T-0632的高亲和力。对人源和大鼠源GLP-1R之间个别候选氨基酸进行交换的受体进行后续分析,确定了一个单一残基,它解释了非肽结合的物种选择性。将人GLP-1R中的色氨酸33替换为丝氨酸(大鼠GLP-1R中的同源氨基酸),导致T-0632亲和力丧失100倍,而大鼠GLP-1R中的反向突变则导致功能获得性表型。这些观察结果表明,在B类受体中,非肽亲和力的重要决定因素存在于细胞外氨基末端结构域内。化合物T-0632可能模拟并由此干扰B类受体氨基末端启动同源激素结合的假定“假拴系”机制。