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核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)开放态与关闭态之间的转变由结合的双磷酸酯的磷酸间距离触发。

The transition between the open and closed states of rubisco is triggered by the inter-phosphate distance of the bound bisphosphate.

作者信息

Duff A P, Andrews T J, Curmi P M

机构信息

Initiative in Biomolecular Structure, School of Physics University of New South Wales, Sydney, NSW 2052, Australia.

出版信息

J Mol Biol. 2000 May 19;298(5):903-16. doi: 10.1006/jmbi.2000.3724.

Abstract

d-Ribulose-1,5-bisphosphate carboxylase/oxygenase (rubisco) catalyses the central CO(2)-fixing reaction of photosynthesis in a complex, multiple-step process. Several structures of rubisco complexed with substrate analogues, inhibitors and products have been determined by X-ray crystallography. The structures fall into two well-defined and distinct states. The active site is either "open" or "closed". The timing and mechanism of the transition between these two states have been uncertain. We solved the crystal structure of unactivated (metal-free) rubisco from tobacco with only inorganic phosphate bound and conclude that phosphate binding per se does not trigger closure, as it does in the similarly structured enzyme, triosephosphate isomerase. Comparison of all available rubisco structures suggests that, instead, the distance between the terminal phosphates (P1 and P2) of the bisphosphate ligand is the trigger: if that distance is less than 9.1 A, then the active site closes; if it is greater than 9.4 A then the enzyme remains open. Shortening of the inter-phosphate distance results from the ligand binding in a more curved conformation when O atoms of the ligand's sugar backbone interact either with the metal, if it is present, or with charged groups in the metal-binding site, if the metal is absent. This shortening brings the P1 phosphate into hydrogen bonding contact with Thr65. Thr65 exists in two discrete states related by a rotation of the backbone psi torsion angle. This rotation is coupled to domain rotation and hence to active site closure. Rotation of the side-chain of Thr65 also affects the C-terminal strand of large subunit which packs against Loop 6 after closure. The position of the C-terminal strand in the closed state is stabilised by multiple polar interactions with a distinctive highly-charged latch site involving the side-chain of Asp473. In the open state, this latch site may be occupied instead by phosphorylated anions.

摘要

1,5-二磷酸核酮糖羧化酶/加氧酶(rubisco)在一个复杂的多步骤过程中催化光合作用的核心二氧化碳固定反应。通过X射线晶体学已经确定了rubisco与底物类似物、抑制剂和产物复合的几种结构。这些结构分为两种明确且不同的状态。活性位点要么是“开放的”,要么是“关闭的”。这两种状态之间转变的时间和机制一直不确定。我们解析了来自烟草的未活化(无金属)rubisco的晶体结构,其仅结合有无机磷酸盐,并得出结论:与结构类似的酶磷酸丙糖异构酶不同,磷酸盐本身不会触发关闭。对所有可用的rubisco结构进行比较表明,相反,双磷酸配体的末端磷酸盐(P1和P2)之间的距离才是触发因素:如果该距离小于9.1埃,那么活性位点关闭;如果大于9.4埃,那么酶保持开放。当配体糖骨架的O原子与存在的金属相互作用,或者在无金属时与金属结合位点中的带电基团相互作用时,配体以更弯曲的构象结合,导致磷酸间距离缩短。这种缩短使P1磷酸盐与苏氨酸(Thr)65形成氢键接触。Thr65存在于通过主链ψ扭转角旋转相关的两种离散状态中。这种旋转与结构域旋转相关联,从而与活性位点关闭相关联。Thr65侧链的旋转也会影响大亚基的C末端链,该链在关闭后与环6堆积。在关闭状态下,C末端链的位置通过与涉及天冬氨酸(Asp)473侧链的独特高电荷闩锁位点的多个极性相互作用而稳定。在开放状态下,这个闩锁位点可能被磷酸化阴离子占据。

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