首页> 外文期刊>Plant physiology >SUBSATURATING RIBULOSE-1,5-BISPHOSPHATE CONCENTRATION PROMOTES INACTIVATION OF RIBULOSE-1,5-BISPHOSPHATE CARBOXYLASE/OXYGENASE (RUBISCO) - STUDIES USING CONTINUOUS SUBSTRATE ADDIITON IN THE PRESENCE AND ABSENCE OF RUBISCO ACTIVASE
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SUBSATURATING RIBULOSE-1,5-BISPHOSPHATE CONCENTRATION PROMOTES INACTIVATION OF RIBULOSE-1,5-BISPHOSPHATE CARBOXYLASE/OXYGENASE (RUBISCO) - STUDIES USING CONTINUOUS SUBSTRATE ADDIITON IN THE PRESENCE AND ABSENCE OF RUBISCO ACTIVASE

机译:饱和的核糖1,5-双歧糖浓度促进了核糖1,5-双糖羧化酶/加氧酶(RUBISCO)的活化-在存在或不存在核糖激活酶的情况下使用连续的基质添加物进行研究

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We developed a continuous-addition method for maintaining subsaturating concentrations of ribulose-1,5-bisphosphate (RuBP) for several minutes, while simultaneously monitoring its consumption by ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco). This method enabled us to observe the effects of subsaturating RuBP and CO2 concentrations on the activity of Rubisco during much longer periods than previously studied. At saturating CO2, the activity of the enzyme declined faster when RUBP was maintained at concentrations near its K-m value than when RuBP was saturating. At saturating RuBP, activity declined faster at limiting than at saturating CO2, in accordance with previous observations. The most rapid decline in activity occurred when both CO2 and RuBP concentrations were subsaturating. The activity loss was accompanied by decarbamylation of the enzyme, even though the enzyme was maintained at the same CO2 concentration before and after exposure to RuBP. Rubisco activase ameliorated the decline in activity at subsaturating CO2 and RuBP concentrations. The results are consistent with a proposed mechanism for regulating the carbamylation of Rubisco, which postulates that Rubisco activase counteracts Rubisco's unfavorable carbamylation equilibrium in the presence of RuBP by accelerating, in an ATP-dependent manner, the release of RuBP from its complex with uncarbamylated sites.
机译:我们开发了一种连续添加方法,可在几分钟内保持1,5-双磷酸核糖(RuBP)的亚饱和浓度,同时通过1,5-双磷酸核糖羧化酶/加氧酶(Rubisco)监测其消耗。该方法使我们能够在比以前研究的更长的时间内观察到RuBP和CO2浓度亚饱和对Rubisco活性的影响。在饱和CO2下,当RUBP保持在其K-m值附近时,酶的活性下降的速度比RuBP饱和时更快。根据先前的观察,在RuBP饱和时,极限活性比在CO2饱和时下降更快。当CO2和RuBP浓度都低于饱和时,活性下降最快。即使酶在暴露于RuBP之前和之后保持在相同的CO2浓度,活性也会伴随酶的脱氨甲酰化。 Rubisco活化酶改善了亚饱和CO2和RuBP浓度下活性的下降。结果与拟议的Rubisco氨基甲酸酯化调节机制相吻合,该机制推测Ruisco活化酶通过以ATP依赖性方式加速RuBP从具有未氨基甲酸酯化位点的复合物中释放RuBP,从而在RuBP存在下抵消Rubisco不利的氨基甲酸酯化平衡。 。

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