首页> 外文期刊>Chembiochem: A European journal of chemical biology >An ACP Structural Switch: Conformational Differences between the Apo and Holo Forms of the Actinorhodin Polyketide Synthase Acyl Carrier Protein
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An ACP Structural Switch: Conformational Differences between the Apo and Holo Forms of the Actinorhodin Polyketide Synthase Acyl Carrier Protein

机译:ACP结构转换:放线菌素聚酮化合物合酶酰基载体蛋白的Apo和Holo形式之间的构象差异

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摘要

The actinorhodin (act) synthase acyl carrier protein (ACP) from Streptomyces coelicolor plays a central role in polyketide biosynthesis. Polyketide intermediates are bound to the free sulfhydryl group of a phosphopantetheine arm that is covalently linked to a conserved serine residue in the holo form of the ACP The solution NMR structures of both the apo and holo forms of the ACP are reported, which represents the first high resolution comparison of these two forms of an ACP Ensembles of twenty apo and holo structures were calculated and yielded atomic root mean square deviations of well-ordered backbone atoms to the average coordinates of 0.37 and 0.42 angstrom, respectively. Three restraints defining the protein to the phosphopantetheine interface were identified. Comparison of the apo and holo forms revealed previously undetected conformational changes. Helix III moved towards helix II (contraction of the ACP), and Leu43 on helix II subtly switched from being solvent exposed to forming intramolecular interactions with the newly added phosphopantetheine side chain. Tryptophan fluorescence and S. coelicolor fatty acid synthase (FAS) holo-synthose (ACPS) assays indicated that apo-ACP has a twofold higher affinity (K-d of 1.1 mu M) than holo-ACP (K-d of 2.1 mu m) for ACPS. Site-directed mutagenesis of Leu43 and Asp62 revealed that both mutations affect binding, but have differential affects on modification by ACPS. Leu43 mutations in particular strongly modulate binding affinity for ACPS. Comparison of apo and holo-ACP structures with known models of the Bacillus subtilis FAS ACP-holo-acyl carrier protein synthase (ACPS) complex suggests that conformational modulation of helix II and III between apo- and holo-ACP could play a role in dissociation of the ACP-ACPS complex.
机译:来自天蓝色链霉菌的放线菌丝蛋白(Act)合酶酰基载体蛋白(ACP)在聚酮化合物的生物合成中起着核心作用。聚酮化合物中间体结合到磷酸泛肽臂的游离巯基上,后者与ACP整体形式中的保守丝氨酸残基共价连接。据报道,ACP的apo和整体形式的溶液NMR结构,这是第一个对这两种形式的ACP集合的20种载脂和全环结构进行了高分辨率比较,得出了有序骨架原子相对于平均坐标分别为0.37和0.42埃的原子均方根偏差。确定了三个限制蛋白定义到磷酸泛肽界面的限制条件。载脂蛋白和全脂蛋白形式的比较揭示了以前未检测到的构象变化。螺旋III移向螺旋II(ACP的缩合),螺旋II上的Leu43巧妙地从溶剂暴露转变为与新添加的磷酸泛肽侧链形成分子内相互作用。色氨酸荧光和嗜酸性链球菌脂肪酸合成酶(FAS)全合成酶(ACPS)分析表明,apo-ACP对ACPS的全亲和力(K-d为1.1μM)比全ACP(K-d为2.1μm)高两倍。 Leu43和Asp62的定点诱变显示这两个突变都影响结合,但对ACPS的修饰有不同的影响。 Leu43突变尤其强烈调节与ACPS的结合亲和力。将apo和holo-ACP结构与枯草芽孢杆菌FAS的已知模型进行比较ACP-全息酰基载体蛋白合酶(ACPS)复合物表明apo-和holo-ACP之间螺旋II和III的构象调控可能在解离中起作用ACP-ACPS复合体。

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