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Peptide Ligation at High Dilution via Reductive Diselenide-Selenoester Ligation

机译:通过还原性二硒代-硒酸酯连接在高稀释度下进行肽连接

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摘要

Peptide ligation chemistry has revolutionized protein science by providing access to homogeneously modified peptides and proteins. However, lipidated polypeptides and integral membrane proteins—an important class of biomolecules—remain enormously challenging to access synthetically owing to poor aqueous solubility of one or more of the fragments under typical ligation conditions. Herein we describe the advent of a reductive diselenide-selenoester ligation (rDSL) method that enables efficient ligation of peptide fragments down to low nanomolar concentrations, without resorting to solubility tags or hybridizing templates. The power of rDSL is highlighted in the efficient synthesis of the FDA-approved therapeutic lipopeptide tesamorelin and palmitylated variants of the transmembrane lipoprotein phospholemman (FXYD1). Lipidation of FXYD1 was shown to critically modulate inhibitory activity against the Na~+/K~+ pump.
机译:肽连接化学通过提供对均质修饰的肽和蛋白质的访问,彻底改变了蛋白质科学。然而,由于在典型的连接条件下一个或多个片段的水溶性差,因此脂化多肽和完整的膜蛋白(一类重要的生物分子)在合成方面仍然面临着巨大的挑战。在本文中,我们描述了一种还原性二硒化物-硒酸酯连接(rDSL)方法的出现,该方法能够有效地将肽片段连接至低纳摩尔浓度,而无需借助溶解性标签或杂交模板。 rDSL的功能在FDA批准的治疗性脂肽tesamorelin和跨膜脂蛋白磷酸化lemman(FXYD1)的棕榈酸酯化变体的有效合成中得到了强调。研究表明,FXYD1的脂质作用可关键调节对Na〜+ / K〜+泵的抑制活性。

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