Structural and computational insights into the substrate specificity of acyltransferase domains from modular polyketide synthases

Shuxin Huang, Huining Ji, Jianting Zheng
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Abstract

Polyketides are natural products synthesized by polyketide synthases (PKSs), where acyltransferase (AT) domains play a crucial role in selection of extender units. Engineering of AT domains enables the site-specific incorporation of non-natural extender units, leading to generation of novel derivatives. Here, we determined the crystal structures of AT domains from the fifth module of tylosin PKS (TylAT5) derived from Streptomyces fradiae and the eighth module of spinosad PKS (SpnAT8) derived from Saccharopolyspora spinosa, and combined them with molecular dynamics simulations and enzyme kinetic studies to elucidate the molecular basis of substrate selection. The ethylmalonyl-CoA-specific conserved motif TAGH of TylAT5 and the MMCoA-specific conserved motif YASH of SpnAT8 were identified within the substrate-binding pocket, and several key residues close to the substrate acyl moiety were located. Through site-directed mutagenesis of four residues near the active site, we successfully reprogrammed the specificity of these two AT domains toward malonyl-CoA. Mutations in TylAT5 enhanced its catalytic activity 2.6-fold toward malonyl-CoA, and mutations in SpnAT8 eliminated the substrate promiscuity. These results extend our understanding of AT substrate specificity and would benefit the engineering of PKSs.

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模块化多酮类合成酶酰基转移酶结构域底物特异性的结构和计算见解。
多酮苷是由多酮苷合成酶(PKSs)合成的天然产物,其中酰基转移酶(AT)结构域在选择延伸单元方面起着至关重要的作用。通过对 AT 结构域进行工程改造,可以在特定位点加入非天然延伸单元,从而产生新型衍生物。在这里,我们测定了来自弗拉迪亚链霉菌(Streptomyces fradiae)的泰乐菌素PKS第五模块(TylAT5)和来自刺葡萄孢(Saccharopolyspora spinosa)的刺葡萄孢PKS第八模块(SpnAT8)的AT结构域的晶体结构,并结合分子动力学模拟和酶动力学研究阐明了底物选择的分子基础。在底物结合口袋中发现了TylAT5的乙基丙二酰-CoA特异性保守基团TAGH和SpnAT8的MMCoA特异性保守基团YASH,并找到了靠近底物酰基的几个关键残基。通过对活性位点附近的四个残基进行定点突变,我们成功地重塑了这两个 AT 结构域对丙二酰-CoA 的特异性。TylAT5 的突变将其对丙二酰-CoA 的催化活性提高了 2.6 倍,而 SpnAT8 的突变则消除了底物杂合性。这些结果扩展了我们对 AT 底物特异性的认识,并将有利于 PKSs 的工程化。
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