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首页> 外文期刊>Nucleic acids research >Cyclodipeptide synthases, a family of class-I aminoacyl-tRNA synthetase-like enzymes involved in non-ribosomal peptide synthesis
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Cyclodipeptide synthases, a family of class-I aminoacyl-tRNA synthetase-like enzymes involved in non-ribosomal peptide synthesis

机译:环二肽合酶,涉及非核糖体肽合成的一类I类氨酰基-tRNA合成酶样酶

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Cyclodipeptide synthases (CDPSs) belong to a newly defined family of enzymes that use aminoacyl-tRNAs (aa-tRNAs) as substrates to synthesize the two peptide bonds of various cyclodipeptides, which are the precursors of many natural products with noteworthy biological activities. Here, we describe the crystal structure of AlbC, a CDPS from Streptomyces noursei. The AlbC structure consists of a monomer containing a Rossmann-fold domain. Strikingly, it is highly similar to the catalytic domain of class-I aminoacyl-tRNA synthetases (aaRSs), especially class-Ic TyrRSs and TrpRSs. AlbC contains a deep pocket, highly conserved among CDPSs. Site-directed mutagenesis studies indicate that this pocket accommodates the aminoacyl moiety of the aa-tRNA substrate in a way similar to that used by TyrRSs to recognize their tyrosine substrates. These studies also suggest that the tRNA moiety of the aa-tRNA interacts with AlbC via at least one patch of basic residues, which is conserved among CDPSs but not present in class-Ic aaRSs. AlbC catalyses its two-substrate reaction via a ping-pong mechanism with a covalent intermediate in which l-Phe is shown to be transferred from Phe-tRNAPhe to an active serine. These findings provide insight into the molecular bases of the interactions between CDPSs and their aa-tRNAs substrates, and the catalytic mechanism used by CDPSs to achieve the non-ribosomal synthesis of cyclodipeptides.
机译:环二肽合酶(CDPS)属于一个新定义的酶家族,该酶使用氨基酰基tRNA(aa-tRNA)作为底物来合成各种环二肽的两个肽键,而环二肽是许多具有显着生物学活性的天然产物的前体。在这里,我们描述了AlbC(一种来自链霉菌的CDPS)的晶体结构。 AlbC结构由包含Rossmann折叠结构域的单体组成。惊人地,它与I类氨酰基-tRNA合成酶(aaRS),尤其是Ic TyrRS和TrpRS的催化结构域高度相似。 AlbC包含一个深口袋,在CDPS中高度保守。定点诱变研究表明,该口袋以类似于TyrRS识别酪氨酸底物的方式容纳aa-tRNA底物的氨酰基部分。这些研究还表明,aa-tRNA的tRNA部分通过至少一个碱性残基补丁与AlbC相互作用,这在CDPS中是保守的,但在Ic类aaRS中不存在。 AlbC通过乒乓机制与共价中间体催化其两个底物的反应,其中l-Phe已显示从Phe-tRNA Phe 转移至活性丝氨酸。这些发现为深入了解CDPS与它们的aa-tRNA底物之间相互作用的分子基础,以及CDPS用于实现环二肽的非核糖体合成的催化机理。

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