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An Engineered Aryl Acid Adenylation Domain with an Enlarged Substrate Binding Pocket

机译:具有扩大基底粘合口袋的工程化芳基腺化域

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摘要

Adenylation (A) domains act as the gatekeepers of non-ribosomal peptide synthetases (NRPSs), ensuring the activation and thioesterification of the correct amino acid/aryl acid building blocks. Aryl acid building blocks are most commonly observed in iron-chelating siderophores, but are not limited to them. Very little is known about the reprogramming of aryl acid A-domains. We show that a single asparagine-to-glycine mutation in an aryl acid A-domain leads to an enzyme that tolerates a wide range of non-native aryl acids. The engineered catalyst is capable of activating non-native aryl acids functionalized with nitro, cyano, bromo, and iodo groups, even though no enzymatic activity of wild-type enzyme was observed toward these substrates. Co-crystal structures with non-hydrolysable aryl-AMP analogues revealed the origins of this expansion of substrate promiscuity, highlighting an enlargement of the substrate binding pocket of the enzyme. Our findings may be exploited to produce diversified aryl acid containing natural products and serve as a template for further directed evolution in combinatorial biosynthesis.
机译:腺苷酸化(A)结构域用作非核糖体肽合成酶(NRPS)的守护者,确保了正确的氨基酸/芳基构建块的活化和硫酯化。芳基构建块最常见于铁螯合铁杆菌中,但不限于它们。关于芳基A-域的重编程很少。我们表明,芳基A结构域中的单个天冬酰胺 - 甘氨酸突变导致耐受宽范围的非天然芳基酸的酶。工程化催化剂能够激活用硝基,氰基,溴和碘基团官能化的非天然芳基酸,即使没有向这些基材观察野生型酶的酶活性。具有非水解芳基-AMP类似物的共晶结构揭示了基材施加的这种膨胀的起源,突出了酶的基底结合口袋的放大。我们的发现可以利用以生产含有天然产物的多元化芳基酸,并用作组合生物合成中进一步指导演变的模板。

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