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Structure and Function of the First Full-Length Murein Peptide Ligase (Mpl) Cell Wall Recycling Protein

机译:第一个全长的Murein肽连接酶(Mpl)细胞壁回收蛋白的结构和功能。

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摘要

Bacterial cell walls contain peptidoglycan, an essential polymer made by enzymes in the Mur pathway. These proteins are specific to bacteria, which make them targets for drug discovery. MurC, MurD, MurE and MurF catalyze the synthesis of the peptidoglycan precursor UDP-N-acetylmuramoyl-L-alanyl-γ-D-glutamyl-meso-diaminopimelyl-D-alanyl-D-alanine by the sequential addition of amino acids onto UDP-N-acetylmuramic acid (UDP-MurNAc). MurC-F enzymes have been extensively studied by biochemistry and X-ray crystallography. In Gram-negative bacteria, ∼30–60% of the bacterial cell wall is recycled during each generation. Part of this recycling process involves the murein peptide ligase (Mpl), which attaches the breakdown product, the tripeptide L-alanyl-γ-D-glutamyl-meso-diaminopimelate, to UDP-MurNAc. We present the crystal structure at 1.65 Å resolution of a full-length Mpl from the permafrost bacterium Psychrobacter arcticus 273-4 (PaMpl). Although the Mpl structure has similarities to Mur enzymes, it has unique sequence and structure features that are likely related to its role in cell wall recycling, a function that differentiates it from the MurC-F enzymes. We have analyzed the sequence-structure relationships that are unique to Mpl proteins and compared them to MurC-F ligases. We have also characterized the biochemical properties of this enzyme (optimal temperature, pH and magnesium binding profiles and kinetic parameters). Although the structure does not contain any bound substrates, we have identified ∼30 residues that are likely to be important for recognition of the tripeptide and UDP-MurNAc substrates, as well as features that are unique to Psychrobacter Mpl proteins. These results provide the basis for future mutational studies for more extensive function characterization of the Mpl sequence-structure relationships.
机译:细菌细胞壁含有肽聚糖,这是一种通过Mur途径中的酶产生的必需聚合物。这些蛋白质是细菌特有的,使其成为药物发现的靶标。 MurC,MurD,MurE和MurF通过将氨基酸顺序添加到UDP上来催化肽聚糖前体UDP-N-乙酰基村酰基-L-丙氨酰基-γ-D-谷氨酰胺基-间-二氨基吡蜜酰基-D-丙氨酰基-D-丙氨酸的合成-N-乙酰基尿酸(UDP-MurNAc)。 MurC-F酶已通过生物化学和X射线晶体学进行了广泛研究。在革兰氏阴性细菌中,约30-60%的细菌细胞壁在每一代中都被回收。该再循环过程的一部分涉及鼠李素肽连接酶(Mpl),其将分解产物三肽L-丙氨酰基-γ-D-谷氨酰胺基-间位-二氨基庚二酸酯连接到UDP-MurNAc。我们从永久冻土细菌Psychrobacter arcticus 273-4(PaMpl)的全长Mpl的1.65Å分辨率下呈现晶体结构。尽管Mpl结构与Mur酶相似,但它具有独特的序列和结构特征,可能与其在细胞壁回收中的作用有关,这项功能将其与MurC-F酶区分开。我们已经分析了Mpl蛋白独特的序列-结构关系,并将其与MurC-F连接酶进行了比较。我们还表征了该酶的生化特性(最佳温度,pH和镁结合曲线以及动力学参数)。尽管该结构不包含任何结合的底物,但我们已鉴定出约30个残基,这些残基可能对于识别三肽和UDP-MurNAc底物以及Psychrobacter Mpl蛋白独有的特征很重要。这些结果为未来的突变研究提供了基础,以进一步表征Mpl序列-结构关系。

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