Hillson Nathan J, Balibar Carl J, Walsh Christopher T
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Biochemistry. 2004 Sep 7;43(35):11344-51. doi: 10.1021/bi0489199.
Nonribosomal peptide synthetases (NRPS), fatty acid synthases (FAS), and polyketide synthases (PKS) are multimodular enzymatic assembly lines utilized in natural product biosynthesis. The oligomeric structure of these assembly line enzymes has been a topic of interest because higher order oligomeric quaternary structural arrangements allow for alternate paths of acyl intermediate elongation and present unique challenges for the chimeric engineering of hybrid assembly lines. Unlike other NRPS systems that in general appear to be monomeric, the six domain (Cy1-Cy2-A-C1-PCP-C2) VibF subunit of vibriobactin synthetase has previously been shown to be dimeric, the same oligomeric state as that observed for FAS and PKS assembly lines. It has been demonstrated that the C1 domain within VibF is catalytically inactive and is not required for vibriobactin production. Utilizing sedimentation equilibrium analytical ultracentrifugation experiments to determine the oligomeric states of several VibF subfragments, we report that the C1 domain is largely responsible for VibF dimerization. Comparative rates of vibriobactin production, coupled with dissociation constants for VibF subfragment pair heterocomplexes, suggest that the mere presence of C1 does not detectably enhance the catalytic rates of neighboring domains, but it may properly orient Cy1-Cy2-A relative to PCP-C2.
非核糖体肽合成酶(NRPS)、脂肪酸合成酶(FAS)和聚酮化合物合成酶(PKS)是天然产物生物合成中使用的多模块酶组装线。这些组装线酶的寡聚结构一直是人们感兴趣的话题,因为高阶寡聚四级结构排列允许酰基中间体延伸的替代途径,并给杂交组装线的嵌合工程带来独特挑战。与其他通常似乎是单体的NRPS系统不同,弧菌素合成酶的六个结构域(Cy1-Cy2-A-C1-PCP-C2)VibF亚基先前已被证明是二聚体,与FAS和PKS组装线观察到的寡聚状态相同。已经证明,VibF中的C1结构域没有催化活性,弧菌素产生不需要它。利用沉降平衡分析超速离心实验来确定几个VibF亚片段的寡聚状态,我们报告C1结构域在很大程度上负责VibF二聚化。弧菌素产生的比较速率,加上VibF亚片段对异源复合物的解离常数,表明仅C1的存在并不能显著提高相邻结构域的催化速率,但它可能使Cy1-Cy2-A相对于PCP-C2正确定向。