首页> 外文期刊>Journal of Medicinal Chemistry >Mimicking of Arginine by Functionalized N-omega-Carbamoylated Arginine As a New Broadly Applicable Approach to Labeled Bioactive Peptides: High Affinity Angiotensin, Neuropeptide Y, Neuropeptide FF, and Neurotensin Receptor Ligands As Examples
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Mimicking of Arginine by Functionalized N-omega-Carbamoylated Arginine As a New Broadly Applicable Approach to Labeled Bioactive Peptides: High Affinity Angiotensin, Neuropeptide Y, Neuropeptide FF, and Neurotensin Receptor Ligands As Examples

机译:通过功能化的N-ω-氨基甲酰化的精氨酸模拟精氨酸,作为一种新的广泛应用于标记的生物活性肽的方法:高亲和力血管紧张素,神经肽Y,神经肽FF和神经降压素受体配体为例

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摘要

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-omega-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 K-i values in the low nanomolar range, even when bulky fluorophores had been attached. Two new tritiated tracers for angiotensin and neurotensin receptors are described.
机译:通过与荧光团或带有放射性核素的部分缀合来生物活性肽的衍生化是制备分子工具和诊断剂的有效且常用的方法。赖氨酸,半胱氨酸和N端氨基酸主要用于肽结合,但我们描述了一种新的,广泛适用的肽结合方法,其基于精氨酸中胍基被功能化的氨基甲酰基胍部分非经典生物等位取代。这项概念验证研究的对象是四个含精氨酸的肽受体配体(血管紧张素II,神经降压素(8-13),神经肽Y的C端五肽类似物和神经肽FF类似物)。通过标准的Fmoc固相肽合成,将带有末端氨基的带有间隔基的N-ω-氨基甲酰基化的精氨酸掺入肽中。合成的化学稳定的肽衍生物即使在连接了庞大的荧光团后,仍显示出高亲和力,其K-i值处于低纳摩尔范围内。描述了两种新的针对血管紧张素和神经降压素受体的tri示踪剂。

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