首页> 美国卫生研究院文献>Plant Physiology >Two SNF1-Related Protein Kinases from Spinach Leaf Phosphorylate and Inactivate 3-Hydroxy-3-Methylglutaryl-Coenzyme A Reductase Nitrate Reductase and Sucrose Phosphate Synthase in Vitro
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Two SNF1-Related Protein Kinases from Spinach Leaf Phosphorylate and Inactivate 3-Hydroxy-3-Methylglutaryl-Coenzyme A Reductase Nitrate Reductase and Sucrose Phosphate Synthase in Vitro

机译:菠菜叶磷酸酯的两个与SNF1相关的蛋白激酶 和灭活3-羟基-3-甲基戊二酰辅酶A还原酶硝酸盐 还原酶和蔗糖磷酸合酶体外

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摘要

We resolved from spinach (Spinacia oleracea) leaf extracts four Ca2+-independent protein kinase activities that phosphorylate the AMARAASAAALARRR (AMARA) and HMRSAMSGLHLVKRR (SAMS) peptides, originally designed as specific substrates for mammalian AMP-activated protein kinase and its yeast homolog, SNF1. The two major activities, HRK-A and HRK-C (3-hydroxy-3-methylglutaryl-coenzyme A reductase kinase A and C) were extensively purified and shown to be members of the plant SnRK1 (SNF1-related protein kinase 1) family using the following criteria: (a) They contain 58-kD polypeptides that cross-react with an antibody against a peptide sequence characteristic of the SnRK1 family; (b) they have similar native molecular masses and specificity for peptide substrates to mammalian AMP-activated protein kinase and the cauliflower homolog; (c) they are inactivated by homogeneous protein phosphatases and can be reactivated using the mammalian upstream kinase; and (d) they phosphorylate 3-hydroxy-3-methylglutaryl-coenzyme A reductase from Arabidopsis at the inactivating site, serine (Ser)-577. We propose that HRK-A and HRK-C represent either distinct SnRK1 isoforms or the same catalytic subunit complexed with different regulatory subunits. Both kinases also rapidly phosphorylate nitrate reductase purified from spinach, which is associated with inactivation of the enzyme that is observed only in the presence of 14-3-3 protein, a characteristic of phosphorylation at Ser-543. Both kinases also inactivate spinach sucrose phosphate synthase via phosphorylation at Ser-158. The SNF1-related kinases therefore potentially regulate several major biosynthetic pathways in plants: isoprenoid synthesis, sucrose synthesis, and nitrogen assimilation for the synthesis of amino acids and nucleotides.
机译:我们从菠菜(Spinacia oleracea)的叶中分离出四种Ca 2 + 无关的蛋白激酶活性,这些蛋白磷酸化了AMARAASAAALARRR(AMARA)和HMRSAMSGLHLVKRR(SAMS)肽,这些肽最初设计为哺乳动物AMP激活的特定底物蛋白激酶及其酵母同源物SNF1。广泛纯化了HRK-A和HRK-C(3-羟基-3-甲基戊二酰辅酶A还原酶激酶A和C)这两个主要活性,它们是植物SnRK1(与SNF1相关的蛋白激酶1)家族的成员。使用以下标准:(a)它们包含与针对SnRK1家族特征性肽序列的抗体发生交叉反应的58-kD多肽; (b)它们具有与哺乳动物AMP激活的蛋白激酶和花椰菜同源物相似的天然分子质量和对肽底物的特异性; (c)它们被同质蛋白灭活 磷酸酶,可以使用哺乳动物上游的物质重新激活 激酶(d)它们使3-羟基-3-甲基戊二酰辅酶磷酸化 拟南芥在失活位点的还原酶丝氨酸 (Ser)-577。我们建议HRK-A和HRK-C分别代表 SnRK1同工型或同一个催化亚基复合不同 调节亚基。两种激酶也能迅速磷酸化硝酸盐 从菠菜中纯化的还原酶,与失活有关 仅在14-3-3蛋白存在下才观察到的酶 Ser-543磷酸化的特征。两种激酶也 通过磷酸化使菠菜蔗糖磷酸合酶失活 Ser-158。因此,SNF1相关激酶可能会调节 植物的几种主要生物合成途径:类异戊二烯合成, 蔗糖合成和氮同化用于合成氨基 酸和核苷酸。

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