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Activation of interspecies-hybrid Rubisco enzymes to assess different models for the Rubisco-Rubisco activase interaction

机译:种间杂交Rubisco酶的活化以评估Rubisco-Rubisco活化酶相互作用的不同模型

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摘要

Ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) is prone to inactivation from non-productive binding of sugar-phosphates. Reactivation of Rubisco requires conformational remodeling by a specific chaperone, Rubisco activase. Rubisco activase from tobacco and other plants in the family Solanaceae is an inefficient activator of Rubisco from non-Solanaceae plants and from the green alga Chlamydomonas reinhardtii. To determine if the Rubisco small subunit plays a role in the interaction with Rubisco activase, a hybrid Rubisco (SSNT) composed of tobacco small subunits and Chlamydomonas large subunits was constructed. The SSNT hybrid, like other hybrid Rubiscos containing plant small subunits, supported photoautotrophic growth in Chlamydomonas, but growth in air was much slower than for cells containing wild-type Rubisco. The kinetic properties of the SSNT hybrid Rubisco were similar to the wild-type enzyme, indicating that the poor growth in air was probably caused by disruption of pyrenoid formation and the consequent impairment of the CO(2)concentrating mechanism. Recombinant Rubisco activase from Arabidopsis activated the SSNT hybrid Rubisco and hybrid Rubiscos containing spinach and Arabidopsis small subunits at rates similar to the rates with wild-type Rubisco. However, none of the hybrid Rubiscos was activated by tobacco Rubisco activase. That replacement of Chlamydomonas small subunits with plant small subunits does not affect the species-specific interaction between Rubisco and Rubisco activase suggests that the association is not dominated by the small subunits that surround the Rubisco central solvent channel. Therefore, the geometry of a side-on binding mode is more consistent with the data than a top-on or ring-stacking binding mode.
机译:核糖-1,5-双磷酸羧化酶/加氧酶(Rubisco)易于因糖-磷酸的非生产性结合而失活。 Rubisco的活化需要通过特定的伴侣Rubisco活化酶进行构象重塑。来自茄科的烟草和其他植物的Rubisco激活酶是来自非茄科植物和绿藻莱茵衣藻的Rubisco的低效激活剂。为了确定Rubisco小亚基是否在与Rubisco激活酶的相互作用中起作用,构建了由烟草小亚基和衣原体大亚基组成的杂种Rubisco(SSNT)。与包含植物小亚基的其他杂种Rubiscos一样,SSNT杂种也支持衣藻的光合自养生长,但是空气中的生长比包含野生型Rubisco的细胞慢得多。 SSNT杂种Rubisco的动力学性质类似于野生型酶,表明空气中的不良生长很可能是由类胡萝卜素形成的破坏和随之而来的CO(2)浓缩机制的损害引起的。来自拟南芥的重组Rubisco活化酶以类似于野生型Rubisco的速率活化了SSNT杂交Rubisco和含有菠菜和拟南芥小亚基的杂交Rubiscos。但是,杂种Rubiscos都没有被烟草Rubisco激活酶激活。用植物的小亚基代替衣藻的小亚基不会影响Rubisco和Rubisco活化酶之间的物种特异性相互作用,这表明该结合并不受围绕Rubisco中心溶剂通道的小亚基的支配。因此,侧面绑定模式的几何形状比顶部绑定或环形堆叠的绑定模式与数据更一致。

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