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首页> 外文期刊>Biochemistry >Solution structure of the actinorhodin polyketide synthase acyl carrier protein from Streptomyces coelicolor A3(2).
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Solution structure of the actinorhodin polyketide synthase acyl carrier protein from Streptomyces coelicolor A3(2).

机译:链霉菌A3(2)的放线菌丝蛋白聚酮化合物合酶酰基载体蛋白的溶液结构。

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The solution structure of the actinorhodin acyl carrier protein (act apo-ACP) from the polyketide synthase (PKS) of Streptomyces coelicolor A3(2) has been determined using 1H NMR spectroscopy, representing the first polyketide synthase component for which detailed structural information has been obtained. Twenty-four structures were generated by simulated annealing, employing 699 distance restraints and 94 dihedral angle restraints. The structure is composed, principally, of three major helices (1, 2, and 4), a shorter helix (3) and a large loop region separating helices 1 and 2. The structure is well-defined, except for a portion of the loop region (residues 18-29), the N-terminus (1-4), and a short stretch (57-61) in the loop connecting helices 2 and 3. The RMS distribution of the 24 structures about the average structure is 1.47 A for backbone atoms, 1.84 A for all heavy atoms (residues 5-86), and 1.01 A for backbone atoms over the helical regions (5-18, 41-86). The tertiary fold of act apo-ACP shows a strong structural homology with Escherichia coli fatty acid synthase (FAS) ACP, though some structural differences exist. First, there is no evidence that act apo-ACP is conformationally averaged between two or more states as observed in E. coli FAS ACP. Second, act apo-ACP shows a disordered N-terminus (residues 1-4) and a longer flexible loop (19-41 with 19-29 disordered) as opposed to E. coli FAS ACP where the N-terminal helix starts at residue 3 and the loop region is three amino acids shorter (16-35). Most importantly, however, although the act apo-ACP structure contains a hydrophobic core, there are in addition a number of buried hydrophilic groups, principally Arg72 and Asn79, both of which are 100% conserved in the PKS ACPs and not the FAS ACPs and may therefore play a role in stabilizing the growing polyketide chain. The structure-function relationship of act ACP is discussed in the light of these structural data and recent genetic advances in the field.
机译:链霉菌A3(2)的聚酮化合物合酶(PKS)的放线菌丝蛋白酰基载体蛋白(act apo-ACP)的溶液结构已使用1H NMR光谱法进行了测定,代表了第一个聚酮化合物合酶组分的详细结构信息获得。通过模拟退火生成了二十四个结构,采用了699个距离约束和94个二面角约束。该结构主要由三个主要螺旋(1、2和4),一个较短的螺旋(3)和一个将螺旋1和2分开的大环形区域组成。结构清晰,除了一部分环状区域(残基18-29),N末端(1-4)和连接螺旋2和3的环状结构中的短片段(57-61)。围绕平均结构的24个结构的RMS分布为1.47 A为骨架原子,所有重原子为1.84 A(残基5-86),而在螺旋区域(5-18、41-86)为1.01A。脱辅基-ACP的三级折叠显示与大肠杆菌脂肪酸合酶(FAS)ACP具有很强的结构同源性,尽管存在一些结构差异。首先,没有证据表明在大肠杆菌FAS ACP中观察到apo-ACP作用在两个或多个状态之间构象平均。其次,apo-ACP行为显示N末端无序(残基1-4)和更长的柔性环(19-41含19-29残基),与E. coli FAS ACP相反,后者的N末端螺旋始于残基3和环区是三个氨基酸短(16-35)。然而,最重要的是,尽管act apo-ACP结构包含疏水核心,但除此之外,还有许多埋藏的亲水基团,主要是Arg72和Asn79,它们在PKS ACP中均是100%保守的,而在FAS ACP和FCS ACP中是保守的因此可能在稳定增长的聚酮化合物链中发挥作用。根据这些结构数据和该领域的最新遗传学进展,讨论了ACP的结构-功能关系。

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