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Automated linkage of proteins and payloads producing monodisperse conjugates

机译:蛋白质和有效载荷产生单分散缀合物的自动联动

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Controlled protein functionalization holds great promise for a wide variety of applications. However, despite intensive research, the stoichiometry of the functionalization reaction remains difficult to control due to the inherent stochasticity of the conjugation process. Classical approaches that exploit peculiar structural features of specific protein substrates, or introduce reactive handles via mutagenesis, are by essence limited in scope or require substantial protein reengineering. We herein present equimolar native chemical tagging (ENACT), which precisely controls the stoichiometry of inherently random conjugation reactions by combining iterative low-conversion chemical modification, process automation, and bioorthogonal trans -tagging. We discuss the broad applicability of this conjugation process to a variety of protein substrates and payloads.
机译:受控蛋白质功能化对各种应用具有很大的承诺。然而,尽管研究了密集的研究,官能化反应的化学计量仍然难以控制由于缀合过程的固有随机性。利用特定蛋白质底物的特殊结构特征的经典方法,或通过诱变引入反应性手柄,本质上是有限的,或者需要大量的蛋白质再造。我们在本文中,通过组合迭代的低转换化学改性,过程自动化和生物正交反应,精确地控制固有随机缀合反应的化学计量的等摩尔本地化学标记(制定)。我们讨论这种缀合过程对各种蛋白质基材和有效载荷的广泛适用性。

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