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Structures of phosphopantetheine adenylyltransferase from Burkholderia pseudomallei

机译:假伯克霍尔德氏菌磷酸泛素腺苷酸转移酶的结构

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摘要

Phosphopantetheine adenylyltransferase (PPAT) catalyzes the fourth of five steps in the coenzyme A biosynthetic pathway, reversibly transferring an adenylyl group from ATP onto 4′-phosphopantetheine to yield dephospho-coenzyme A and pyrophosphate. Burkholderia pseudomallei is a soil- and water-borne pathogenic bacterium and the etiologic agent of melioidosis, a potentially fatal systemic disease present in southeast Asia. Two crystal structures are presented of the PPAT from B. pseudomallei with the expectation that, because of the importance of the enzyme in coenzyme A biosynthesis, they will aid in the search for defenses against this pathogen. A crystal grown in ammonium sulfate yielded a 2.1 Å resolution structure that contained dephospho-coenzyme A with partial occupancy. The overall structure and ligand-binding interactions are quite similar to other bacterial PPAT crystal structures. A crystal grown at low pH in the presence of coenzyme A yielded a 1.6 Å resolution structure in the same crystal form. However, the experimental electron density was not reflective of fully ordered coenzyme A, but rather was only reflective of an ordered 4′-diphosphopantetheine moiety.
机译:磷酸泛酸腺苷酸基转移酶(PPAT)催化辅酶A生物合成途径的五个步骤中的第四步,将腺苷酸基团从ATP可逆地转移到4'-磷酸泛素上,产生脱磷辅酶A和焦磷酸。假伯克霍尔德氏菌是一种由土壤和水传播的致病细菌,也是类鼻疽病的病原体,后者是东南亚地区一种可能致命的全身性疾病。提出了假苹果芽孢杆菌PPAT的两个晶体结构,由于该酶在辅酶A生物合成中的重要性,因此有望帮助寻找针对这种病原体的防御方法。在硫酸铵中生长的晶体产生的分辨率为2.1Å的结构,其中包含部分占有的脱磷辅酶A。总体结构和配体结合相互作用与其他细菌PPAT晶体结构非常相似。在辅酶A存在下在低pH值下生长的晶体以相同的晶体形式产生1.6Å分辨率的结构。然而,实验的电子密度不能反映完全有序的辅酶A,而只能反映有序的4'-二磷酸泛函碱部分。

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