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Asymmetric Syntheses of Analogs of Kainic Acid

机译:海藻酸类似物的不对称合成

摘要

Kainic acid has been used for nearly 50 years as a tool in neuroscience due to its pronounced neuroexcitatory properties. However, the significant price increase of kainic acid resulting from the disruption in the supply from its natural source, the alga Digenea Simplex, as well as inefficient synthesis of kainic acid, call for the exploration of functional mimics of kainic acid that can be synthesized in a simpler way.Aza kainoids analog could be one of them. The unsubstituted aza analog of kainoids has demonstrates its ability as an ionotropic glutamate receptor agonist and showed affinity in the chloride dependent glutamate (GluCl) binding site. This opened a question of the importance of the presence of one nitrogen or both nitrogens in the aza kainoid analogs for binding to glutamate receptors. Therefore, two different pyrrolidine analogs of kainic acid, trans-4-(carboxymethyl)pyrrolidine-3-carboxylic acid and trans-2-carboxy-3-pyrrolidineacetic acid, were synthesized through multi-step sequences. The lack of the affinity of both pyrrolidine analogs in GluCl binding site indicated that both nitrogens in aza kainoid analogs are involved in hydrogen bonding with receptors, significantly enhancing their affinity in GluCl binding site.Another potential functional mimic of kainic acid is isoxazolidine analogs of kainoids whose skeleton can be constituted directly via a 1, 3 dipolar cycloaddition as the key step. The difficulty in synthesizing N-unsubstituted isoxazolidines when applying such common protecting groups as alkyl, phenyl and benzyl groups, and the requirement of a desired enantioselectivity due to the three chiral ceneters in kainic acid, pose great challenges. Hence, several different protected nitrones were studied to establish that diphenylmethine nitrone may be a good candidate as the dipole in that the generated isoxazolidines can be deprotected in mild conditions with high yields. Our investigations also indicated that the exo/endo selectivity of the 1, 3 dipolar cycloaddition can be controlled by Lewis acids, and that the application of a directing group in dipolarophiles can accomplish a satisfied enantioselectivity. Those results demonstrated the synthesis of isoxazoldines analogs of kainic acid is very promising.
机译:海藻酸由于其明显的神经兴奋特性已被用作神经科学的工具近50年。然而,由于其天然来源藻类Digenea Simplex的供应中断而导致的海藻酸价格大幅上涨,以及海藻酸的合成效率低下,因此需要探索可在海藻酸中合成的功能性模仿物。比较简单的方法是Aza类人猿类似物之一。类胡萝卜素的未取代的氮杂类似物已显示出其作为离子型谷氨酸受体激动剂的能力,并在氯化物依赖性谷氨酸(GluCl)结合位点显示出亲和力。这就提出了一个问题,即氮杂kainoid类似物中存在一个氮或两个氮对于结合谷氨酸受体的重要性。因此,通过多步序列合成了海藻酸的两种不同的吡咯烷类似物,反式-4-(羧甲基)吡咯烷-3-羧酸和反式-2-羧基-3-吡咯烷乙酸。两种吡咯烷类似物在GluCl结合位点均缺乏亲和力,这表明氮杂kainoid类似物的两个氮原子均与受体发生氢键结合,从而显着增强了它们在GluCl结合位点的亲和力。其骨架可以直接通过1、3偶极环加成反应构成关键步骤。当应用诸如烷基,苯基和苄基之类的常见保护基时,合成N-未取代的异恶唑烷的困难以及由于海藻酸中的三个手性对映体而要求的对映选择性的要求构成了巨大的挑战。因此,对几种不同的受保护的硝酮进行了研究,以建立二苯基次甲基硝酮作为偶极子的良好候选者,因为生成的异恶唑烷可以在温和的条件下以高收率脱保护。我们的研究还表明,1,3偶极环加成反应的内/外选择性可以通过路易斯酸来控制,并且在偶极亲和剂中应用导向基团可以实现令人满意的对映选择性。这些结果证明,海藻酸的异恶唑烷类似物的合成非常有前途。

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    Wang Wentian;

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  • 年度 2012
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