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Nanoteamwork: covalent protein assembly beyond duets towards protein ensembles and orchestras

机译:NanoteamWork:超越二重奏的共价蛋白组装往蛋白质合奏和管弦乐队

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摘要

Biological processes often depend on the harmonious interplay of multiple macromolecules. Biotechnology has had great success in applying and modifying individual components, but the building of multi-component teams is at an early stage. Cells are intelligent in sensing their environment, so manipulating just one signal can limit potency and promote side-effects for therapeutics. Here we critically assess the latest advances in irreversibly connecting individual protein units, through different spontaneous or catalysed reactions. Then we outline efforts to go beyond bipartite assembly, towards multimeric or sequence-programmed architectures. These early steps will be put in context of the enormous opportunities for synthetic protein nanomachines, focusing on catalysis and the control of cell signalling for cancer and the immune system.
机译:生物过程通常取决于多个大分子的和谐相互作用。 生物技术在申请和修改各个组件方面取得了巨大成功,但多组分团队的建设处于早期阶段。 在传感环境中,细胞是智能化的,因此操纵一个信号可以限制效力并促进治疗剂的副作用。 在这里,我们通过不同的自发或催化反应评估不可逆地连接单个蛋白质单位的最新进展。 然后我们概述了超越双层装配,朝向多端或序列编程的架构的努力。 将在合成蛋白纳米载体的巨大机会的背景下提出这些早期步骤,专注于催化和癌细胞信号传导的控制和免疫系统的控制。

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