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聚球藻核酮糖-1,5-二磷酸羧化酶/加氧酶激活的四级复合物在2.2埃分辨率下的X射线结构。

The X-ray structure of Synechococcus ribulose-bisphosphate carboxylase/oxygenase-activated quaternary complex at 2.2-A resolution.

作者信息

Newman J, Gutteridge S

机构信息

Department of Molecular Biology, Biomedical Center, Uppsala, Sweden.

出版信息

J Biol Chem. 1993 Dec 5;268(34):25876-86.

PMID:8245022
Abstract

The structure of the hexadecameric ribulose-bisphosphate carboxylase/oxygenase from Synechococcus PCC6301 has been solved to 2.2-A resolution. Crystallization was in the presence of CO2, Mg2+, and 2'-carboxyarabinitol bisphosphate to form a stable enzyme quaternary complex that mimics one of the intermediate states of the carboxylation reaction. The structure was solved by molecular replacement using the coordinates of spinach carboxylase. The deviations in C alpha positions of the L- and S-subunits are only 0.3 and 2.0 A, respectively, and localized at specific regions of the two polypeptides. One region that shows significant divergence of the peptide backbone is loop 6 of the beta barrel in the L-subunit. Two other elements, the C terminus, and a highly conserved loop of the N-terminal domain of a second L-subunit, interact with loop 6 in the quaternary complex. These three regions, plus two other flexible segments, completely enfold the bisphosphate inhibitor. Significant alteration in their spatial relationship must occur to allow substrates or products access to and from the active site. The active site residues, activating cofactors, and inhibitor are well resolved in the electron density map. The disposition of these groups around the essential metal provides some indication of their role at different stages of the catalytic cycle.

摘要

聚球藻PCC6301的十六聚体核酮糖- 1,5 -二磷酸羧化酶/加氧酶结构已解析至2.2埃分辨率。结晶过程是在二氧化碳、镁离子和2'-羧基阿拉伯糖醇二磷酸存在的情况下进行的,以形成一种稳定的酶四级复合物,该复合物模拟了羧化反应的中间状态之一。该结构通过使用菠菜羧化酶的坐标进行分子置换来解析。L亚基和S亚基的Cα位置偏差分别仅为0.3埃和2.0埃,且定位在两条多肽的特定区域。肽链骨架显示出显著差异的一个区域是L亚基中β桶的环6。另外两个元件,即第二个L亚基的C末端和N末端结构域的一个高度保守的环,在四级复合物中与环6相互作用。这三个区域,加上另外两个柔性片段,完全包裹住二磷酸抑制剂。它们的空间关系必须发生显著改变,才能使底物或产物进出活性位点。活性位点残基、激活辅因子和抑制剂在电子密度图中得到了很好的解析。这些基团围绕必需金属的排列方式为它们在催化循环不同阶段的作用提供了一些线索。

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