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Biostable aptamers with antagonistic properties to the neuropeptide nociceptin/orphanin FQ

机译:对神经肽伤害感受器/孤儿蛋白FQ具有拮抗特性的生物稳定适体

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The neuropeptide nociceptin/orphanin FQ (N/OFQ), the endogenous ligand of the opioid receptor-like 1 (ORL1) receptor, has been shown to play a prominent role in the regulation of several biological functions such as pain and stress. Here we describe the isolation and characterization of N/OFQ binding biostable RNA aptamers (Spiegelmers) using a mirror-image in vitro selection approach. Spiegelmers are L-enantiomeric oligonucleotide ligands that display high affinity and specificity to their targets and high resistance to enzymatic degradation compared to D-Oligonucleotides. A representative Spiegelmer from the selections performed was size-minimized to two distinct sequences capable of high affinity binding to N/OFQ. The Spiegelmers were shown to antagonize binding of N/OFQ to the ORL1 receptor in a binding-competition assay. The calculated IC50 values for the Spiegelmers NOX 2149 and NOX 2137a/b were 110 nM and 330 nM, respectively. The competitive antagonistic properties of these Spiegelmers were further demonstrated by their effective and specific inhibition of G-protein activation in two additional models. The Spiegelmers antagonized the N/OFQ-induced GTPgammaS incorporation into cell membranes of a CHO-K1 cell line expressing the human ORL1 receptor. In oocytes from Xenopus laevis, NOX 2149 showed an antagonistic effect to the N/OFQ-ORL 1 receptor system that was functionally coupled with G-protein-regulated inwardly rectifying K+ channels. [References: 60]
机译:神经肽伤害感受器/孤儿蛋白FQ(N / OFQ)是阿片样受体样1(ORL1)受体的内源性配体,已显示出在调节多种生物功能(如疼痛和压力)中的重要作用。在这里,我们描述了使用镜像体外选择方法分离和表征N / OFQ结合的生物稳定RNA适体(Spiegelmers)。镜像异构体是L-对映体寡核苷酸配体,与D-寡核苷酸相比,对它们的靶标显示出高亲和力和特异性,并且对酶促降解具有高抗性。将进行的选择中的代表性Spiegelmer大小最小化为两个能够与N / OFQ高亲和力结合的不同序列。在结合竞争试验中,显示出该镜像异构体拮抗N / OFQ与ORL1受体的结合。 Spiegelmers NOX 2149和NOX 2137a / b的计算IC50值分别为110 nM和330 nM。这些Spiegelmers的竞争性拮抗特性在另外两个模型中进一步证明了它们对G蛋白活化的有效和特异性抑制。 Spiegelmers拮抗N / OFQ诱导的GTPgammaS掺入表达人ORL1受体的CHO-K1细胞系的细胞膜中。在非洲爪蟾的卵母细胞中,NOX 2149对N / OFQ-ORL 1受体系统表现出拮抗作用,该受体系统与G蛋白调节的向内整流K +通道功能性结合。 [参考:60]

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