首页> 美国卫生研究院文献>Plant Physiology >Heat Denaturation Profiles of Ribulose-15-Bisphosphate Carboxylase/Oxygenase (Rubisco) and Rubisco Activase and the Inability of Rubisco Activase to Restore Activity of Heat-Denatured Rubisco.
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Heat Denaturation Profiles of Ribulose-15-Bisphosphate Carboxylase/Oxygenase (Rubisco) and Rubisco Activase and the Inability of Rubisco Activase to Restore Activity of Heat-Denatured Rubisco.

机译:核糖-15-二磷酸羧化酶/加氧酶(Rubisco)和Rubisco活化酶的热变性曲线以及Rubisco活化酶无法恢复热变性Rubisco的活性。

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摘要

We compared the heat-denaturation profiles of ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) and Rubisco activase and further examined the ability of Rubisco activase to restore the activity of heat-denatured Rubisco originally reported (E. Sanchez de Jimenez, L. Medrano, and E. Martinez-Barajas [1995] Biochemistry 34: 2826-2831). Rubisco was heat-treated in both the carbamylated and uncarbamylated forms and in the presence and absence of 10 mM dithiothreitol (DTT). Both forms were highly resistant to heat denaturation and further protection was gained in the presence of DTT. A 50% loss in total activity occurred after 1 h at 57.5 and 55.2[deg]C for uncarbamylated Rubisco and at 60.2 and 59.6[deg]C for carbamylated Rubisco, in each case with and without DTT, respectively. In contrast, Rubisco activase lost 50% activity after only 5 min at 33[deg]C and the loss in activity was not affected by the presence of Rubisco. When Rubisco, heat-denatured to various extents, was incubated at room temperature with Rubisco activase or bovine serum albumin as a control, Rubisco activase did not have a significant specific ability to restore Rubisco activity. We conclude that Rubisco activase alone does not have the ability to restore the activity of heat-denatured Rubisco and is unlikely to protect or restore Rubisco activity from heat denaturation in vivo because it is more heat-labile than Rubisco.
机译:我们比较了核糖-1,5-双磷酸羧化酶/加氧酶(Rubisco)和Rubisco活化酶的热变性曲线,并进一步研究了Rubisco活化酶恢复最初报道的热变性Rubisco活性的能力(E. Sanchez de Jimenez, L.Medrano和E.Martinez-Barajas [1995] Biochemistry 34:2826-2831)。在存在和不存在10 mM二硫苏糖醇(DTT)的情况下,对Rubisco进行氨基甲酸酯化和未氨基甲酸酯化两种形式的热处理。两种形式都高度抗热变性,并且在DTT的存在下获得了进一步的保护。在1小时后,分别在有和没有DTT的情况下,未氨基甲酰化的Rubisco在57.5和55.2℃下以及氨甲酰化的Rubisco在60.2和59.6℃下总活性损失了50%。相反,在33℃仅5分钟后,Rubisco活化酶丧失了50%的活性,并且活性的丧失不受Rubisco的存在的影响。当将室温热变性的Rubisco与Rubisco激活酶或牛血清白蛋白作为对照在室温下孵育时,Rubisco激活酶没有明显的恢复Rubisco活性的比能力。我们得出的结论是,单独的Rubisco激活酶不具有恢复热变性Rubisco活性的能力,并且不太可能保护或恢复Rubisco活性不受体内热变性的影响,因为它比Rubisco更不稳定。

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