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Histidine-Specific Peptide Modification via Visible-Light-Promoted C-H Alkylation

机译:通过可见光促进的C H烷基化的组氨酸特异性肽修饰

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Histidine (His) carries a unique heteroaromatic imidazole side chain and plays irreplaceable functional roles in peptides and proteins. Existing strategies for site-selective histidine modification predominantly rely on the N-substitution reactions of the moderately nucleophilic imidazole group, which inherently suffers from the interferences from lysine and cysteine residues. Chemoselective modification of histidine remains one of the most difficult challenges in peptide chemistry. Herein, we report peptide modification via radical-mediated chemoselective C-H alkylation of histidine using C-4-alkyl-1,4-dihydropyridine (DHP) reagents under visible-light-promoted conditions. The method exploits the electrophilic reactivity of the imidazole ring via a Minisci-type reaction pathway. This method exhibits an exceptionally broad scope for both peptides and DHP alkylation reagents. Its utility has been demonstrated in a series of important peptide drugs, complex natural products, and a small protein. Distinct from N-substitution reactions, the unsubstituted nitrogen groups of the modified imidazole ring are conserved in the C-H alkylated products.
机译:组氨酸(His)带有独特的杂芳族咪唑侧链,在肽和蛋白质中起着不可替代的作用。位点选择性组氨酸修饰的现有策略主要依赖于中等亲核性咪唑基团的N取代反应,该反应固有地遭受赖氨酸和半胱氨酸残基的干扰。组氨酸的化学选择性修饰仍然是肽化学中最困难的挑战之一。本文中,我们报道了在可见光促进条件下,使用C-4-烷基-1,4-二氢吡啶(DHP)试剂通过组氨酸的自由基介导的化学选择性C-H烷基化进行肽修饰。该方法通过Minisci型反应途径利用了咪唑环的亲电反应性。该方法对肽和DHP烷基化试剂均显示出异常广泛的范围。在一系列重要的肽类药物,复杂的天然产物和小蛋白中已证明了其实用性。与N-取代反应不同,改性的咪唑环的未取代的氮基在C-H烷基化产物中是保守的。

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