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The Substrate-free and -bound Crystal Structures of the Duplicated Taurocyamine Kinase from the Human Parasite Schistosoma mansoni

机译:从人寄生虫曼氏血吸虫重复的牛磺胺激酶的无底物和绑定的晶体结构。

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摘要

The taurocyamine kinase from the blood fluke Schistosoma mansoni (SmTK) belongs to the phosphagen kinase (PK) family and catalyzes the reversible Mg2+-dependent transfer of a phosphoryl group between ATP and taurocyamine. SmTK is derived from gene duplication, as are all known trematode TKs. Our crystallographic study of SmTK reveals the first atomic structure of both a TK and a PK with a bilobal structure. The two unliganded lobes present a canonical open conformation and interact via their respective C- and N-terminal domains at a helix-mediated interface. This spatial arrangement differs from that observed in true dimeric PKs, in which both N-terminal domains make contact. Our structures of SmTK complexed with taurocyamine or l-arginine compounds explain the mechanism by which an arginine residue of the phosphagen specificity loop is crucial for substrate specificity. An SmTK crystal was soaked with the dead end transition state analog (TSA) components taurocyamine-NO32−-MgADP. One SmTK monomer was observed with two bound TSAs and an asymmetric conformation, with the first lobe semiclosed and the second closed. However, isothermal titration calorimetry and enzyme kinetics experiments showed that the two lobes function independently. A small angle x-ray scattering model of SmTK-TSA in solution with two closed active sites was generated.
机译:血吸虫曼氏血吸虫(SmTK)中的牛磺胺激酶属于磷酸激酶(PK)家族,催化ATP和牛磺胺之间磷酸酯基的可逆Mg 2 + 依赖性转移。 SmTK与所有已知的吸虫TK一样,都来自基因复制。我们对SmTK的晶体学研究揭示了TK和PK具有双叶结构的第一个原子结构。这两个未配位的叶呈现典型的开放构象,并在螺旋介导的界面上通过它们各自的C端和N端结构域相互作用。这种空间排列不同于在真正的二聚体PK中观察到的空间排列,其中两个N末端结构域都相互接触。我们与牛磺胺或1-精氨酸化合物复合的SmTK结构解释了磷酸酶特异性环的精氨酸残基对底物特异性至关重要的机制。将SmTK晶体浸泡在死端过渡态类似物(TSA)组分taurocyamine-NO3 2- -MgADP中。观察到一个具有两个结合的TSA和不对称构象的SmTK单体,第一个叶半封闭,第二个叶封闭。然而,等温滴定热法和酶动力学实验表明,两个叶独立地起作用。生成了具有两个封闭活性位点的溶液中SmTK-TSA的小角度X射线散射模型。

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