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Daphnetin methylation stabilizes the activity of phosphoribulokinase in wheat during cold acclimation

机译:瑞香素甲基化可稳定小麦在冷驯化过程中磷酸核糖激酶的活性

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The methylation of daphnetin (7,8-dihydroxycoumarin) to its 8-methyl derivative is catalyzed by a wheat (Triticum aestivum L.) O-methyltransferase (TaOMT1). This enzyme is regulated by cold and photosystem II excitation pressure (plastid redox state). Here, we investigated the biological significance of this methylation and its potential role in modulating the activity of kinases in wheat. To identify the potential kinases that may interact with daphnetin in wheat, the soluble protein extract from aerial parts of cold-acclimated wheat was purified by DEAE-cellulose separation and affinity chromatography on a daphnetin derivative (7,8-dihydroxy-4-coumarin acetic acid)-EAH sepharose column. Mass spectrometric analysis indicated that wheat phosphoribulokinase (TaPRK) is the major kinase that binds to daphnetin. This TaPRK plays an important role in regulating the flow of carbon through the Calvin cycle, by catalyzing the final step in the regeneration of ribulose 1,5-bisphosphate from ribulose-5-phosphate (Ru5P) and ATP. The activities of TaPRK, endogenous or recombinant, are inhibited by daphnetin in a specific and dose-dependent manner, but not by its monomethyl derivative (7-methyl, 8-hydroxycoumarin). Furthermore, HPLC-MS analysis of wheat extracts reveals that 7,8-dimethoxycoumarin is more abundant than its monomethyl derivative. The results also show that cold acclimation does not alter the level of TaPRK mRNA or its enzyme activity, and thus ensures the stable generation of ribulose 1,5-biphosphate.
机译:小麦(Triticum aestivum L.)O-甲基转移酶(TaOMT1)催化蜂胶(7,8-二羟基香豆素)甲基化为其8-甲基衍生物。该酶受冷和光系统II激发压力(质体氧化还原态)的调节。在这里,我们调查了这种甲基化的生物学意义及其在调节小麦激酶活性中的潜在作用。为了鉴定可能与小麦中的树胶蛋白相互作用的激酶,通过在树胶蛋白衍生物(7,8-二羟基-4-香豆素乙酸上)上进行的DEAE-纤维素分离和亲和层析纯化冷驯化小麦地上部分的可溶性蛋白酸)-EAH Sepharose色谱柱。质谱分析表明,小麦磷酸核糖激酶(TaPRK)是结合蜂胶蛋白的主要激酶。这种TaPRK通过催化从5磷酸核糖(Ru5P)和ATP再生1,5-双磷酸核糖的最后一步,在调节整个Calvin循环的碳流量中起着重要作用。内啡肽或重组TaPRK的活性被蜂胶蛋白以特异性和剂量依赖性的方式抑制,但不受其单甲基衍生物(7-甲基,8-羟基香豆素)的抑制。此外,对小麦提取物的HPLC-MS分析表明,7,8-二甲氧基香豆素比其单甲基衍生物含量更高。结果还表明,冷驯化不会改变TaPRK mRNA的水平或其酶活性,从而确保稳定生成核糖1,5-二磷酸核糖。

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