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II族焦磷酸酶中金属离子的结构研究:对双面离子的需求。

Structural studies of metal ions in family II pyrophosphatases: the requirement for a Janus ion.

作者信息

Fabrichniy Igor P, Lehtiö Lari, Salminen Anu, Zyryanov Anton B, Baykov Alexander A, Lahti Reijo, Goldman Adrian

机构信息

Program in Structural Biology and Biophysics, Institute of Biotechnology, University of Helsinki, P.O. Box 65, FIN-00014, Helsinki, Finland.

出版信息

Biochemistry. 2004 Nov 16;43(45):14403-11. doi: 10.1021/bi0484973.

Abstract

Family II inorganic pyrophosphatases (PPases) constitute a new evolutionary group of PPases, with a different fold and mechanism than the common family I enzyme; they are related to the "DHH" family of phosphoesterases. Biochemical studies have shown that Mn(2+) and Co(2+) preferentially activate family II PPases; Mg(2+) partially activates; and Zn(2+) can either activate or inhibit (Zyryanov et al., Biochemistry, 43, 14395-14402, accompanying paper in this issue). The three solved family II PPase structures did not explain the differences between the PPase families nor the metal ion differences described above. We therefore solved three new family II PPase structures: Bacillus subtilis PPase (Bs-PPase) dimer core bound to Mn(2+) at 1.3 A resolution, and, at 2.05 A resolution, metal-free Bs-PPase and Streptococcus gordonii (Sg-PPase) containing sulfate and Zn(2+). Comparison of the new and old structures of various family II PPases demonstrates why the family II enzyme prefers Mn(2+) or Co(2+), as an activator rather than Mg(2+). Both M1 and M2 undergo significant changes upon substrate binding, changing from five-coordinate to octahedral geometry. Mn(2+) and Co(2+), which readily adopt different coordination states and geometries, are thus favored. Combining our structures with biochemical data, we identified M2 as the high-affinity metal site. Zn(2+) activates in the M1 site, where octahedral geometry is not essential for catalysis, but inhibits in the M2 site, because it is unable to assume octahedral geometry but remains trigonal bipyramidal. Finally, we propose that Lys205-Gln81-Gln80 form a hydrophilic channel to speed product release from the active site.

摘要

II 族无机焦磷酸酶(PPases)构成了PPases的一个新进化群体,其折叠方式和作用机制与常见的 I 族酶不同;它们与磷酸酯酶的“DHH”家族相关。生化研究表明,Mn(2+) 和 Co(2+) 优先激活 II 族PPases;Mg(2+) 部分激活;而 Zn(2+) 既可以激活也可以抑制(Zyryanov等人,《生物化学》,43,14395 - 14402,本期随附论文)。已解析的三种 II 族PPase结构既没有解释PPase家族之间的差异,也没有解释上述金属离子差异。因此,我们解析了三种新的 II 族PPase结构:枯草芽孢杆菌PPase(Bs - PPase)二聚体核心与Mn(2+) 结合,分辨率为1.3 Å,以及分辨率为2.05 Å的无金属Bs - PPase和含有硫酸根和Zn(2+) 的戈登链球菌(Sg - PPase)。对各种 II 族PPases新旧结构的比较表明了为什么 II 族酶更喜欢Mn(2+) 或 Co(2+) 作为激活剂而不是Mg(2+)。M1和M2在底物结合时都会发生显著变化,从五配位变为八面体几何构型。因此,容易采用不同配位状态和几何构型的Mn(2+) 和 Co(2+) 更受青睐。将我们的结构与生化数据相结合,我们确定M2为高亲和力金属位点。Zn(2+) 在M1位点激活,在该位点八面体几何构型对催化不是必需的,但在M2位点抑制,因为它无法形成八面体几何构型而是保持三角双锥构型。最后,我们提出Lys205 - Gln81 - Gln80形成一个亲水通道以加速产物从活性位点释放。

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