...
首页> 外文期刊>Journal of Medicinal Chemistry >Novel Cyclic Templates of alpha-MSH Give Highly Selective and Potent Antagonists/Agonists for Human Melanocortin-3/4 Receptors.
【24h】

Novel Cyclic Templates of alpha-MSH Give Highly Selective and Potent Antagonists/Agonists for Human Melanocortin-3/4 Receptors.

机译:α-MSH的新型循环模板为人类黑皮质素3/4受体提供了高度选择性和强效的拮抗剂/激动剂。

获取原文
获取原文并翻译 | 示例

摘要

In an effort to develop highly selective and potent agonists and/or antagonists for the hMC3 and hMC4 receptors, a new approach involving the use of linker arms and a backbone to side chain cyclization strategy was employed. Three key analogues were identified to have the required selectivity and potency at the hMC3 or hMC4 receptors, implicated to play pivotal roles in energy homeostasis and other biological effects. The novel cyclic peptide (O)C-CH(2)-CH(2)-C(O)-c-[His(6)-D-Phe(7)-Arg(8)-Trp(9)-Lys(10)]-NH(2) (1) was found to be a highly selective and potent agonist of the hMC4 receptor. Structure-activity studies have shown that replacing the succinyl linker arm of 1 by an o-phthalic acid group and substituting a D-Nal(2')(7) residue in place of D-Phe(7) results in a potent antagonist 7 at the hMC4 receptor. Furthermore, increasing the 23-membered lactam ring of 1 by one carbon atom (succinyl --> glutaric acid linker) gives a highly selective and potent antagonist 9 for the hMC3 receptor. Analogues 1, 7, and 9 therefore represent the first examples of a class of cyclic melanotropin ligands with high selectivity and defined biological activities at the physiologically important hMC3 and hMC4 receptors.
机译:为了开发对hMC3和hMC4受体的高度选择性和有效的激动剂和/或拮抗剂,采用了一种新方法,该方法涉及使用连接臂和主链至侧链环化策略。确定了三个关键类似物,它们在hMC3或hMC4受体上具有所需的选择性和效力,暗示在能量稳态和其他生物学效应中起关键作用。新型环肽(O)C-CH(2)-CH(2)-C(O)-c- [His(6)-D-Phe(7)-Arg(8)-Trp(9)-Lys (10)]-NH(2)(1)被发现是hMC4受体的高度选择性和强效激动剂。结构活性研究表明,用邻苯二甲酸基团取代1的琥珀酰连接臂并用D-Nal(2')(7)残基代替D-Phe(7)会产生有效的拮抗剂7在hMC4受体上。此外,将1的23元内酰胺环增加一个碳原子(琥珀酰基->戊二酸连接基),可为hMC3受体提供高度选择性和有效的拮抗剂9。因此,类似物1、7和9代表了一类环状黑素营养素配体的第一个实例,该配体对生理上重要的hMC3和hMC4受体具有高选择性和确定的生物学活性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号