Mantey S A, Weber H C, Sainz E, Akeson M, Ryan R R, Pradhan T K, Searles R P, Spindel E R, Battey J F, Coy D H, Jensen R T
Digestive Diseases Branch, NIDDK, National Institutes of Health, Bethesda, Maryland 20892-1804, USA.
J Biol Chem. 1997 Oct 10;272(41):26062-71. doi: 10.1074/jbc.272.41.26062.
An orphan receptor discovered in 1993 was called bombesin receptor subtype 3 (BRS-3) because of 47-51% amino acid identity with bombesin (Bn) receptors. Its pharmacology is unknown, because no naturally occurring tissues have sufficient receptors to allow studies. We made two cell lines stably expressing the human BRS-3 (hBRS-3). hBRS-3 was overexpressed in the human non-small cell lung cancer cells, NCI-H1299, and the other was made in Balb 3T3 cells, which lack endogenous BRS-3. [D-Phe6,beta-Ala11,Phe13, Nle14]Bn-(6-14) (where Nle represents norleucine) was discovered to have high potency for stimulating inositol phosphate formation in both cell lines. [125I-D-Tyr6,beta-Ala11,Phe13, Nle14]Bn-(6-14) bound to both cell lines with high affinity. Neither Bn nor 14 other naturally occurring Bn peptides bound to hBRS-3 with a Kd <1000 nM. Twenty-six synthetic peptides that are high affinity agonists or antagonists at other bombesin receptors had an affinity >1000 nM. Guanosine 5'-(beta,gamma-imido)triphosphate inhibited binding to both cells due to a change in receptor affinity. These results demonstrate hBRS-3 has a unique pharmacology. It does not interact with high affinity with any known natural agonist or high affinity antagonist of the Bn receptor family, suggesting the natural ligand is either an undiscovered member of the Bn peptide family or an unrelated peptide. The availability of these cell lines and the hBRS-3 ligand should facilitate identification of the natural ligand for BRS-3, its pharmacology, and cell biology.
1993年发现的一种孤儿受体,因其与蛙皮素(Bn)受体有47% - 51%的氨基酸同源性,故而被称为蛙皮素受体亚型3(BRS - 3)。其药理学特性尚不清楚,因为没有天然组织拥有足够数量的受体来开展相关研究。我们构建了两种稳定表达人BRS - 3(hBRS - 3)的细胞系。hBRS - 3在人非小细胞肺癌细胞NCI - H1299中过表达,另一种则构建于缺乏内源性BRS - 3的Balb 3T3细胞中。已发现[D - Phe6,β - Ala11,Phe13,Nle14]Bn - (6 - 14)(其中Nle代表正亮氨酸)在两种细胞系中均具有高效刺激肌醇磷酸生成的能力。[125I - D - Tyr6,β - Ala11,Phe13,Nle14]Bn - (6 - 14)以高亲和力与两种细胞系结合。无论是Bn还是其他14种天然存在的Bn肽,与hBRS - 3结合时的解离常数(Kd)均<1000 nM。26种在其他蛙皮素受体上具有高亲和力的合成肽激动剂或拮抗剂,与hBRS - 3的亲和力均>1000 nM。鸟苷5'-(β,γ - 亚氨基)三磷酸由于受体亲和力的改变而抑制了与两种细胞的结合。这些结果表明hBRS - 3具有独特的药理学特性。它与Bn受体家族的任何已知天然激动剂或高亲和力拮抗剂均无高亲和力相互作用,这表明天然配体要么是Bn肽家族中未被发现的成员,要么是一种不相关的肽。这些细胞系和hBRS - 3配体的可得性应有助于鉴定BRS - 3的天然配体、其药理学特性及细胞生物学特性。