Hauptman-Woodward Institute and Department of Structural Biology, University at Buffalo, Buffalo, New York 14203, United States.
Biochemistry. 2012 Apr 17;51(15):3252-63. doi: 10.1021/bi300112e. Epub 2012 Apr 3.
Many bacteria use large modular enzymes for the synthesis of polyketide and peptide natural products. These multidomain enzymes contain integrated carrier domains that deliver bound substrates to multiple catalytic domains, requiring coordination of these chemical steps. Nonribosomal peptide synthetases (NRPSs) load amino acids onto carrier domains through the activity of an upstream adenylation domain. Our lab recently determined the structure of an engineered two-domain NRPS containing fused adenylation and carrier domains. This structure adopted a domain-swapped dimer that illustrated the interface between these two domains. To continue our investigation, we now examine PA1221, a natural two-domain protein from Pseudomonas aeruginosa. We have determined the amino acid specificity of this new enzyme and used domain specific mutations to demonstrate that loading the downstream carrier domain within a single protein molecule occurs more quickly than loading of a nonfused carrier domain intermolecularly. Finally, we have determined crystal structures of both apo- and holo-PA1221 proteins, the latter using a valine-adenosine vinylsulfonamide inhibitor that traps the adenylation domain-carrier domain interaction. The protein adopts an interface similar to that seen with the prior adenylation domain-carrier protein construct. A comparison of these structures with previous structures of multidomain NRPSs suggests that a large conformational change within the NRPS adenylation domains guides the carrier domain into the active site for thioester formation.
许多细菌使用大型模块化酶来合成聚酮和肽天然产物。这些多结构域酶包含集成的载体结构域,将结合的底物递送至多个催化结构域,需要协调这些化学步骤。非核糖体肽合成酶 (NRPSs) 通过上游氨酰化结构域的活性将氨基酸加载到载体结构域上。我们的实验室最近确定了一种含有融合氨酰化和载体结构域的工程化两结构域 NRPS 的结构。该结构采用了一个结构域交换二聚体,说明了这两个结构域之间的界面。为了继续我们的研究,我们现在检查来自铜绿假单胞菌的天然两结构域蛋白 PA1221。我们已经确定了该新酶的氨基酸特异性,并使用结构域特异性突变来证明在单个蛋白质分子内加载下游载体结构域比在分子间加载非融合载体结构域更快。最后,我们确定了 apo- 和 holo-PA1221 蛋白的晶体结构,后者使用了一种缬氨酸-腺苷基乙烯基磺酰胺抑制剂,该抑制剂捕获了氨酰化结构域-载体结构域相互作用。该蛋白采用与先前的氨酰化结构域-载体蛋白构建体相似的界面。这些结构与先前的多结构域 NRPSs 结构的比较表明,NRPSs 氨酰化结构域内的大构象变化指导载体结构域进入活性位点以形成硫酯键。