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Structural and dynamic characterization of a freestanding acyl carrier protein involved in the biosynthesis of cyclic lipopeptide antibiotics

机译:涉及循环脂肽抗生素生物合成的独立酰基载体蛋白的结构和动态特征

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摘要

Abstract Friulimicin is a cyclic lipodecapeptide antibiotic that is produced by Actinoplanes friuliensis . Similar to the related lipopeptide drug daptomycin, the peptide skeleton of friulimicin is synthesized by a large multienzyme nonribosomal peptide synthetase (NRPS) system. The LipD protein plays a major role in the acylation reaction of friulimicin. The attachment of the fatty acid group promotes its antibiotic activity. Phylogenetic analysis reveals that LipD is most closely related to other freestanding acyl carrier proteins (ACPs), for which the genes are located near to NRPS gene clusters. Here, we report that the solution NMR structure of apo‐LipD is very similar to other four‐helix bundle forming ACPs from fatty acid synthase (FAS), polyketide synthase, and NRPS systems. By recording NMR dynamics data, we found that the backbone motions in holo‐LipD are more restricted than in apo‐LipD due to the attachment of phosphopantetheine moiety. This enhanced stability of holo‐LipD was also observed in differential scanning calorimetry experiments. Furthermore, we demonstrate that, unlike several other ACPs, the folding of LipD does not depend on the presence of divalent cations, although the presence of Mg 2+ or Ca 2+ can increase the protein stability. We propose that small structural rearrangements in the tertiary structure of holo‐LipD which lead to the enhanced stability are important for the cognate enzyme recognition for the acylation reaction. Our results also highlight the different surface charges of LipD and FAS‐ACP from A. friuliensis that would allow the acyl‐CoA ligase to interact preferentially with the LipD instead of binding to the FAS‐ACP.
机译:摘要Friulimicin是一种循环脂肪肽抗生素,由Actinoplanes Friuliensis产生。类似于相关的脂肽药物达摩霉素,通过大酶非纤维素肽合成酶(NRPS)系统合成Friulimicin的肽骨架。 LIPD蛋白在Friulimicin的酰化反应中起主要作用。脂肪酸基团的附着促进其抗生素活性。系统发育分析表明,LIPD与其他独立的酰基载体蛋白(ACPS)密切相关,基因位于NRPS基因簇附近。在此,我们报道了apo-lipd的溶液NMR结构与来自脂肪酸合成酶(Fas),聚酮合酶和NRPS系统的其他四螺旋束形成Acps非常相似。通过记录NMR动力学数据,我们发现,由于磷酸乙酰乙酰乙醚部分的附着,Holo-Lipd中的骨干运动比Apo-Lipd更受限制。在差示扫描量热法实验中还观察到这种具有Holo-Lipd的增强稳定性。此外,我们证明,与其他几个ACP不同,LIPD的折叠不依赖于二价阳离子的存在,尽管Mg 2+或Ca 2+的存在可以增加蛋白质稳定性。我们提出了在Holo-Lipd的三级结构中的小结构重排,这导致增强稳定性对于酰化反应的同源酶识别是重要的。我们的结果还突出了来自A. FAS-ACP的不同表面指控,富含酰基-COA连接酶优先与LIPD相互作用而不是与FAS-ACP结合。

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