Department of Pharmacology, University of Melbourne, Victoria 3010, Australia.
Pharmacol Ther. 2012 Aug;135(2):216-45. doi: 10.1016/j.pharmthera.2012.05.008. Epub 2012 May 27.
The unusual pharmacology of McN-A-343 was first described by Roszowski in 1961. The agonist appeared to be a selective stimulant of muscarinic receptors in sympathetic ganglia, now known to be the muscarinic M₁ receptor subtype. However, subsequent research demonstrated that McN-A-343 is a partial agonist with similar affinity at all five muscarinic acetylcholine receptor subtypes and its relative selectivity depends on a higher efficacy at the M₁ (and M₄) subtypes. Being a partial agonist its action is also dependent on factors, such as receptor density and coupling efficacy between receptor activation and tissue response. Nevertheless, the relatively high efficacy at M₁ receptors led to its widespread use as an aid to distinguish responses mediated through M₁ receptors from those utilizing M₂ or M₃ muscarinic receptor subtypes, especially in the CNS. There is also evidence that it has an allosteric action at some receptor subtypes. Recently, it was demonstrated that McN-A-343 can bind to an allosteric site on the M₂ receptor as well as to the orthosteric site and has thus been termed a "bitopic agonist". This allosteric site differs from that occupied by allosteric modulators, such as gallamine. Comparison of comparable mutagenic changes in M₂ and M₄ receptors also suggests that McN-A-343 utilizes different regions of the two receptors for ERK1/2 activation. McN-A-343 has a number of non-muscarinic actions. These include activation of some types of nicotinic acetylcholine receptors, antagonism of serotonin 5-HT₃ and 5-HT₄ receptor subtypes, inhibition of the uptake mechanism and a local anesthetic action.
1961 年,Roszowski 首次描述了 McN-A-343 异常的药理学特性。该激动剂似乎是交感神经节毒蕈碱受体的选择性兴奋剂,现在已知是毒蕈碱 M₁受体亚型。然而,随后的研究表明,McN-A-343 是一种具有相似亲和力的部分激动剂,对所有五种毒蕈碱乙酰胆碱受体亚型均具有相似的亲和力,其相对选择性取决于 M₁(和 M₄)亚型的更高效能。作为部分激动剂,其作用也取决于受体密度和受体激活与组织反应之间的偶联效率等因素。尽管如此,M₁ 受体的相对高效能导致其广泛用于辅助区分通过 M₁ 受体介导的反应与利用 M₂ 或 M₃ 毒蕈碱受体亚型的反应,特别是在中枢神经系统中。也有证据表明它在某些受体亚型中具有变构作用。最近,已经证明 McN-A-343 可以结合到 M₂ 受体的变构位点以及到正位位点,因此被称为“双位点激动剂”。该变构位点与变构调节剂(如箭毒碱)占据的位点不同。比较 M₂ 和 M₄ 受体中类似的诱变变化也表明,McN-A-343 利用两个受体的不同区域来激活 ERK1/2。McN-A-343 具有许多非毒蕈碱作用。这些作用包括一些类型的烟碱型乙酰胆碱受体的激活、5-羟色胺 5-HT₃ 和 5-HT₄ 受体亚型的拮抗作用、摄取机制的抑制和局部麻醉作用。