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首页> 外文期刊>BMC Microbiology >Purification and preliminary crystallization of alanine racemase from Streptococcus pneumoniae
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Purification and preliminary crystallization of alanine racemase from Streptococcus pneumoniae

机译:肺炎链球菌丙氨酸消旋酶的纯化和初步结晶

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Over the past fifteen years, antibiotic resistance in the Gram-positive opportunistic human pathogen Streptococcus pneumoniae has significantly increased. Clinical isolates from patients with community-acquired pneumonia or otitis media often display resistance to two or more antibiotics. Given the need for new therapeutics, we intend to investigate enzymes of cell wall biosynthesis as novel drug targets. Alanine racemase, a ubiquitous enzyme among bacteria and absent in humans, provides the essential cell wall precursor, D-alanine, which forms part of the tetrapeptide crosslinking the peptidoglycan layer. The alanine racemases gene from S. pneumoniae (alr SP ) was amplified by PCR and cloned and expressed in Escherichia coli. The 367 amino acid, 39854 Da dimeric enzyme was purified to electrophoretic homogeneity and preliminary crystals were obtained. Racemic activity was demonstrated through complementation of an alr auxotroph of E. coli growing on L-alanine. In an alanine racemases photometric assay, specific activities of 87.0 and 84.8 U mg-1 were determined for the conversion of D- to L-alanine and L- to D-alanine, respectively. We have isolated and characterized the alanine racemase gene from the opportunistic human pathogen S. pneumoniae. The enzyme shows sufficient homology with other alanine racemases to allow its integration into our ongoing structure-based drug design project.
机译:在过去的十五年中,革兰氏阳性机会性人类病原体肺炎链球菌的抗生素耐药性显着增加。来自社区获得性肺炎或中耳炎患者的临床分离株通常表现出对两种或更多种抗生素的抗药性。鉴于需要新的疗法,我们打算研究细胞壁生物合成酶作为新的药物靶标。丙氨酸消旋酶是细菌中普遍存在的酶,在人类中不存在,提供了必需的细胞壁前体D-丙氨酸,D-丙氨酸形成了四肽交联肽聚糖层的一部分。通过PCR扩增肺炎链球菌(alr SP)的丙氨酸消旋体基因,并在大肠杆菌中克隆和表达。将367个氨基酸的39854 Da二聚酶纯化至电泳均质,得到初步晶体。外消旋活性通过在L-丙氨酸上生长的大肠杆菌的alr营养缺陷型的互补来证明。在丙氨酸消旋体光度测定法中,对于D-向L-丙氨酸和L-向D-丙氨酸的转化,分别确定了87.0和84.8 U mg-1的比活。我们已经从机会性人类病原体肺炎链球菌中分离并表征了丙氨酸消旋酶基因。该酶与其他丙氨酸消旋体显示出足够的同源性,可以整合到我们正在进行的基于结构的药物设计项目中。

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