首页> 外文OA文献 >Asymmetric synthesis of stereochemically-defined and conformationally-constrained novel amino acids via direct alkylation of chiral nickel(II)-coordinated Schiff bases of glycine and alanine, and design and synthesis of selective peptide and non-peptide ligands for the delta-opioid receptor
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Asymmetric synthesis of stereochemically-defined and conformationally-constrained novel amino acids via direct alkylation of chiral nickel(II)-coordinated Schiff bases of glycine and alanine, and design and synthesis of selective peptide and non-peptide ligands for the delta-opioid receptor

机译:通过手性镍(II)配位的甘氨酸和丙氨酸的席夫碱直接烷基化的立体化学定义和构象约束的新氨基酸的不对称合成,以及δ-阿片受体的选择性肽和非肽配体的设计与合成

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摘要

A systematic practical method to prepare highly chi (χ)-constrained amino acids has been developed. It was found that increasing the size of R¹ (see figure) from H to Me to Et to n-Pr led to decreased reactivity of the starting complexes. In the case of R¹ as i-Pr, no alkylation was observed. With an increase of the size of R² from H to Me to Et to i-Bu, the reactivities of the alkyl bromides decreased. The starting Schiff bases had more effective stereocontrol at the α-carbon center than at the β-carbon center. The starting Schiff bases showed differential reactivity toward the racemic electrophile (kinetic resolution). Satisfactory differentiations were obtained at room temperature which makes this method synthetically useful. In the case of R¹ as H (NiGlyBPB), the thermodynamically-controlled stereoselectivity of alkylation was as high as 30:1. [DIAGRAM OMITTED]* A series of dipeptide analogues (TMT-Tic and DMT-Tic) were designed and synthesized to mimic the potent and highly selective delta-opioid receptor pentapeptide ligand-[(2S,3R)TMT¹]-DPDPE and thus to explore the topographical requirements for recognition of ligands at the opioid receptor through bioassays and NMR studies to facilitate the design of non-peptide compounds to be used as therapeutic agents for pain. (2S,3R)-TMT-L-Tic was found to have best binding affinities at the δ-opioid receptor in TMT-Tic series. In preliminary NMR studies, it was found that these designed peptide ligands have their own distinct conformations in the aqueous media. Meanwhile some modified non-peptide analogues of SL-3111 were prepared to continue our efforts to find effective non-peptide ligands for the δ-opioid receptor. More systematic studies are still ongoing using NMR and computational methods. *Please refer to dissertation for diagram.
机译:已经开发了一种系统的实用方法来制备高度受chi(χ)约束的氨基酸。发现从H到Me到Et到n-Pr增加R 1的大小(见图)导致起始配合物的反应性降低。在R 1为i-Pr的情况下,未观察到烷基化。随着R 2从H到Me到Et到i-Bu的尺寸增加,烷基溴化物的反应性降低。起始席夫碱在α-碳中心比在β-碳中心具有更有效的立体控制。起始席夫碱显示出对消旋亲电试剂的不同反应性(动力学拆分)。在室温下获得令人满意的差异,这使得该方法在合成上有用。在R 1为H(NiGlyBPB)的情况下,热力学控制的烷基化立体选择性高达30:1。设计并合成了一系列二肽类似物(TMT-Tic和DMT-Tic),以模仿有效且高度选择性的δ阿片受体五肽配体-[(2S,3R)TMT¹] -DPDPE,从而通过生物测定和NMR研究探索在阿片样物质受体处识别配体的地形要求,以帮助设计用作疼痛治疗剂的非肽化合物。在TMT-Tic系列中,发现(2S,3R)-TMT-L-Tic在δ阿片受体上具有最佳结合亲和力。在初步的NMR研究中,发现这些设计的肽配体在水性介质中具有各自独特的构象。同时,制备一些SL-3111的修饰的非肽类似物以继续我们的努力,以寻找有效的δ阿片受体非肽配体。使用NMR和计算方法仍在进行更系统的研究。 *请参考论文的图表。

著录项

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    Tang Xue-jun;

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  • 年度 2002
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