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首页> 外文期刊>Journal of Molecular Biology >Structures of yeast Apa2 reveal catalytic insights into a canonical Ap 4A phosphorylase of the histidine triad superfamily
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Structures of yeast Apa2 reveal catalytic insights into a canonical Ap 4A phosphorylase of the histidine triad superfamily

机译:酵母Apa2的结构揭示了对组氨酸三联体超家族的经典Ap 4A磷酸化酶的催化见解

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摘要

The homeostasis of intracellular diadenosine 5′,5″′- P1,P4-tetraphosphate (Ap4A) in the yeast Saccharomyces cerevisiae is maintained by two 60% sequence-identical paralogs of Ap4A phosphorylases (Apa1 and Apa2). Enzymatic assays show that, compared to Apa1, Apa2 has a relatively higher phosphorylase activity towards Ap3A (5′,5″′-P1,P3- tetraphosphate), Ap4A, and Ap5A (5′,5″′- P1,P5-tetraphosphate), and Ap4A is the favorable substrate for both enzymes. To decipher the catalytic insights, we determined the crystal structures of Apa2 in the apo-, AMP-, and Ap 4A-complexed forms at 2.30, 2.80, and 2.70 ? resolution, respectively. Apa2 is an α/β protein with a core domain of a twisted eight-stranded antiparallel β-sheet flanked by several α-helices, similar to the galactose-1-phosphate uridylyltransferase (GalT) members of the histidine triad (HIT) superfamily. However, a unique auxiliary domain enables an individual Apa2 monomer to possess an intact substrate-binding cleft, which is distinct from previously reported dimeric GalT proteins. This cleft is perfectly complementary to the favorable substrate Ap4A, the AMP and ATP moieties of which are perpendicular to each other, leaving the α-phosphate group exposed at the sharp turn against the catalytic residue His161. Structural comparisons combined with site-directed mutagenesis and activity assays enable us to define the key residues for catalysis. Furthermore, multiple-sequence alignment reveals that Apa2 and homologs represent canonical Ap4A phosphorylases, which could be grouped as a unique branch in the GalT family.
机译:酵母Saccharomyces cerevisiae中的胞内二氢腺苷5',5'''-P1,P4-四磷酸(Ap4A)的体内稳态由两个Ap4A磷酸化酶序列相同的旁系同源物(Apa1和Apa2)维持。酶法测定表明,与Apa1相比,Apa2对Ap3A(5',5'''-P1,P3-四磷酸),Ap4A和Ap5A(5',5'''-P1,P5-四磷酸)的磷酸化酶活性相对较高),而Ap4A是这两种酶的有利底物。为了破译催化见解,我们确定了载脂蛋白,AMP和Ap 4A复合形式的Apa2的晶体结构,分别为2.30、2.80和2.70。分辨率分别。 Apa2是一种α/β蛋白,其核心结构域是一个扭曲的八链反平行β-折叠,其侧翼是几个α-螺旋,类似于组氨酸三联体(HIT)超家族的半乳糖1-磷酸尿嘧啶转移酶(GalT)成员。但是,独特的辅助结构域使单个Apa2单体具有完整的底物结合裂口,这与以前报道的二聚GalT蛋白不同。该裂口与有利的底物Ap4A完全互补,后者的AMP和ATP部分彼此垂直,从而使α-磷酸基团在急剧转弯时暴露于催化残基His161。结构比较与定点诱变和活性分析相结合,使我们能够定义催化的关键残基。此外,多序列比对揭示Apa2和同源物代表规范的Ap4A磷酸化酶,可以将其分组为GalT家族中的唯一分支。

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