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首页> 外文期刊>Angewandte Chemie >Cooperation between a T Domain and a Minimal C-Terminal Docking Domain to Enable Specific Assembly in a Multiprotein NRPS
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Cooperation between a T Domain and a Minimal C-Terminal Docking Domain to Enable Specific Assembly in a Multiprotein NRPS

机译:T域与最小C端对接域之间的合作,以使多蛋白NRP中的特定组装能够

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摘要

Non-ribosomal peptide synthetases (NRPS) produce natural products from amino acid building blocks. They often consist of multiple polypeptide chains which assemble in a specific linear order via specialized N- and C-terminal docking domains ((N/C)DDs). Typically, docking domains function independently from other domains in NRPS assembly. Thus, docking domain replacements enable the assembly of "designer" NRPS from proteins that normally do not interact. The multiprotein "peptide-antimicrobial-Xenorhabdus" (PAX) peptide-producing PaxS NRPS is assembled from the three proteins PaxA, PaxB and PaxC. Herein, we show that the small (C)DD of PaxA cooperates with its preceding thiolation (T-1) domain to bind the (DD)-D-N of PaxB with very high affinity, establishing a structural and thermodynamical basis for this unprecedented docking interaction, and we test its functional importance in vivo in a truncated PaxS assembly line. Similar docking interactions are apparently present in other NRPS systems.
机译:非核糖体肽合成酶(NRPS)从氨基酸构建基块中产生天然产物。它们通常由多条多肽链组成,这些多肽链通过专门的N端和C端对接域((N/C)DDs)以特定的线性顺序组装。通常,停靠域的功能独立于NRPS组件中的其他域。因此,对接域替换能够从通常不相互作用的蛋白质中组装“设计师”NRP。产生PaxS NRPS的多蛋白“肽抗菌异种鼠尾草”(PAX)肽由三种蛋白质PaxA、PaxB和PaxC组装而成。在此,我们展示了PaxA的小(C)DD与其之前的硫酰化(T-1)结构域以非常高的亲和力结合PaxB的(DD)-D-N,为这种前所未有的对接相互作用建立了结构和热力学基础,并在截短的PaxS装配线上测试了其在体内的功能重要性。其他NRPS系统中显然存在类似的对接相互作用。

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