Prell George D, Martinelli Giorgio P, Holstein Gay R, Matulić-Adamić Jasenka, Watanabe Kyoichi A, Chan Susan L F, Morgan Noel G, Haxhiu Musa A, Ernsberger Paul
Department of Pharmacology and Biological Chemistry, Mount Sinai School of Medicine, New York, NY 10029, USA.
Proc Natl Acad Sci U S A. 2004 Sep 14;101(37):13677-82. doi: 10.1073/pnas.0404846101. Epub 2004 Sep 13.
We identified the previously unknown structures of ribosylated imidazoleacetic acids in rat, bovine, and human tissues to be imidazole-4-acetic acid-ribotide (IAA-RP) and its metabolite, imidazole-4-acetic acid-riboside. We also found that IAA-RP has physicochemical properties similar to those of an unidentified substance(s) extracted from mammalian tissues that interacts with imidazol(in)e receptors (I-Rs). ["Imidazoline," by consensus (International Union of Pharmacology), includes imidazole, imidazoline, and related compounds. We demonstrate that the imidazole IAA-RP acts at I-Rs, and because few (if any) imidazolines exist in vivo, we have adopted the term "imidazol(in)e-Rs."] The latter regulate multiple functions in the CNS and periphery. We now show that IAA-RP (i) is present in brain and tissue extracts that exhibit I-R activity; (ii) is present in neurons of brainstem areas, including the rostroventrolateral medulla, a region where drugs active at I-Rs are known to modulate blood pressure; (iii) is present within synaptosome-enriched fractions of brain where its release is Ca(2+)-dependent, consistent with transmitter function; (iv) produces I-R-linked effects in vitro (e.g., arachidonic acid and insulin release) that are blocked by relevant antagonists; and (v) produces hypertension when microinjected into the rostroventrolateral medulla. Our data also suggest that IAA-RP may interact with a novel imidazol(in)e-like receptor at this site. We propose that IAA-RP is a neuroregulator acting via I-Rs.
我们确定了大鼠、牛和人体组织中此前未知的核糖基化咪唑乙酸结构,它们是咪唑 - 4 - 乙酸核糖核苷酸(IAA - RP)及其代谢产物咪唑 - 4 - 乙酸核糖苷。我们还发现,IAA - RP具有与从哺乳动物组织中提取的一种未鉴定物质相似的物理化学性质,该物质可与咪唑啉受体(I - Rs)相互作用。[根据国际药理学联合会的共识,“咪唑啉”包括咪唑、咪唑啉及相关化合物。我们证明咪唑IAA - RP作用于I - Rs,并且由于体内存在的咪唑啉很少(如果有的话),我们采用了“咪唑(啉)受体”这一术语。]后者调节中枢神经系统和外周的多种功能。我们现在表明,IAA - RP(i)存在于表现出I - R活性的脑和组织提取物中;(ii)存在于脑干区域的神经元中,包括延髓头端腹外侧区,已知作用于I - Rs的药物在此区域可调节血压;(iii)存在于富含突触体的脑部分中,其释放依赖于Ca(2 +),这与递质功能一致;(iv)在体外产生与I - R相关的效应(例如花生四烯酸和胰岛素释放),这些效应可被相关拮抗剂阻断;以及(v)微量注射到延髓头端腹外侧区时会导致高血压。我们的数据还表明,IAA - RP可能在此部位与一种新型的类咪唑(啉)受体相互作用。我们提出IAA - RP是一种通过I - Rs起作用的神经调节剂。