首页> 美国卫生研究院文献>British Journal of Pharmacology and Chemotherapy >The peptidic urotensin-II receptor ligand GSK248451 possesses less intrinsic activity than the low-efficacy partial agonists SB-710411 and urantide in native mammalian tissues and recombinant cell systems
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The peptidic urotensin-II receptor ligand GSK248451 possesses less intrinsic activity than the low-efficacy partial agonists SB-710411 and urantide in native mammalian tissues and recombinant cell systems

机译:在天然哺乳动物组织和重组细胞系统中肽类尿紧张素II受体配体GSK248451的内在活性低于低效部分激动剂SB-710411和urantide。

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摘要

class="enumerated" style="list-style-type:decimal">Several peptidic urotensin-II (UT) receptor antagonists exert ‘paradoxical' agonist activity in recombinant cell- and tissue-based bioassay systems, likely the result of differential urotensin-II receptor (UT receptor) signal transduction/coupling efficiency between assays. The present study has examined this phenomenon in mammalian arteries and recombinant UT-HEK (human embryonic kidney) cells.BacMam-mediated recombinant UT receptor upregulation in HEK cells augmented agonist activity for all four peptidic UT ligands studied. The nominal rank order of relative intrinsic efficacy was U-II>urantide ([Pen5-DTrp7-Orn8]hU-II4–11)>SB-710411 (Cpa-c[DCys-Pal-DTrp-Lys-Val-Cys]-Cpa-amide)≫GSK248451 (Cin-c[DCys-Pal-DTrp-Orn-Val-Cys]-His-amide) (the relative coupling efficiency of recombinant HEK cells was cat>human≫rat UT receptor).The present study further demonstrated that the use of high signal transduction/coupling efficiency isolated blood vessel assays (primate>cat arteries) is required in order to characterize UT receptor antagonism thoroughly. This cannot be attained simply by using the rat isolated aorta, an artery with low signal transduction/coupling efficiency in which low-efficacy agonists appear to function as antagonists.In contrast to the ‘low-efficacy agonists' urantide and SB-710411, GSK248451 functioned as a potent UT receptor antagonist in all native isolated tissues studied (UT receptor selectivity was confirmed in the rat aorta). Further, GSK248451 exhibited an extremely low level of relative intrinsic activity in recombinant HEK cells (4–5-fold less than seen with urantide). Since GSK248451 (1 mg kg−1, i.v.) blocked the systemic pressor actions of exogenous U-II in the anaesthetized cat, it represents a suitable peptidic tool antagonist for delineating the role of U-II in the aetiology of mammalian cardiometabolic diseases.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 几种肽型尿紧张素II(UT)受体拮抗剂在基于细胞和组织的重组生物测定系统中发挥“反常”激动剂活性,这很可能是测定之间尿毒素II受体(UT受体)信号转导/偶联效率不同的结果。本研究已经在哺乳动物动脉和重组UT-HEK(人类胚胎肾脏)细胞中研究了这一现象。 BacMam介导的HEK细胞中的重组UT受体上调增强了所研究的所有四种肽UT配体的激动剂活性。相对内在功效的标称等级顺序为U-II>尿嘧啶([Pen 5 -DTrp 7 -Orn 8 ] hU-II4– 11)> SB-710411(Cpa-c [DCys-Pal-DTrp-Lys-Val-Cys] -Cpa-酰胺)≫GSK248451(Cin-c [DCys-Pal-DTrp-Orn-Val-Cys] -His-酰胺)(重组HEK细胞的相对偶联效率为cat> human≫rat UT受体)。 本研究进一步证明了高信号转导/偶联效率分离血管测定法的应用(灵长类动物>猫动脉),以彻底表征UT受体拮抗作用。使用大鼠离体的主动脉不能简单地做到这一点,主动脉是一种信号传导/耦合效率低的动脉,其中低效激动剂似乎起着拮抗剂的作用。 与“低效激动剂”相反urantide和SB-710411,GSK248451在研究的所有天然离体组织中均充当有效的UT受体拮抗剂(在大鼠主动脉中确认了UT受体的选择性)。此外,GSK248451在重组HEK细胞中表现出极低的相对内在活性水平(比尿嘧啶少4-5倍)。由于GSK248451(1 mg kg −1 ,iv)阻断了麻醉猫的外源性U-II的全身性升压作用,因此它代表了一种合适的肽类工具拮抗剂,用于描述U-II在麻醉猫中的作用。哺乳动物心脏代谢疾病的病因学。

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