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Partial purification and biochemical characterization of a heteromeric protein phosphatase 2A holoenzyme from maize (Zea mays L.) leaves that dephosphorylates C4 phosphoenolpyruvate carboxylase

机译:玉米(Zea mays L.)叶片异聚蛋白磷酸酶2A全酶的部分纯化和生化特性,对C4 磷酸烯醇丙酮酸羧化酶进行去磷酸化

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The activity and allosteric properties of plant phosphoenolpyruvate carboxylase (PEPC; EC 4.1.1.31) are controlled posttranslationally by specific reversible phosphorylation of a strictly conserved serine residue near the N-terminus. This up/down-regulation of PEPC is catalyzed by a dedicated and highly regulated serine/threonine (Ser/Thr) kinase (PEPC-kinase) and an opposing type-2A Ser/Thr phosphatase (PP2A). In marked contrast to PEPC-kinase, the PP2A holoenzyme from photosynthetic tissue has been virtually unstudied to date. In the present investigation, we have partially purified and characterized the native form of this PP2A from illuminated leaves of maize (Zea mays L.), a C4 plant, using maize [32P]PEPC as substrate. Various conventional chromatographic matrices, together with thiophosphorylated C4 PEPC-peptide and microcystin-LR affinity-supports, were exploited for the enrichment of this PP2A from soluble leaf extracts. Biochemical and immunological results indicate that the C4-leaf holoenzyme is analogous to other eukaryotic PP2As in being a ≈170-kDa heteromer comprised of a core PP2Ac-A heterodimer (≈38- and ≈65-kDa subunits, respectively) complexed with a putative, ≈74-kDa B-type regulatory/targeting subunit. This heterotrimer lacks any strict substrate specificity in that it dephosphorylates C4 PEPC, mammalian phosphorylase a, and casein in vitro. This activity is independent of free Me2+, insensitive to levamisole and the Inhibitor-2 protein that targets PP1, activated by several polycations such as protamine and poly-L-lysine, and highly sensitive to inhibition by microcystin-LR and okadaic acid (IC50≈30 pM), all of which are diagnostic features of yeast and mammalian PP2As. In addition, this C4-leaf PP2A holoenzyme (i) is inhibited in vitro by physiological concentrations of certain C4 PEPC-related metabolites (L-malate, PEP, glucose 6-phosphate, but not the activator glycine) when either 32P-labeled maize PEPC or rabbit muscle phosphorylase a is used as substrate, suggesting a direct effect on this Ser/Thr phosphatase; and (ii) displays, at best, only modest light/dark effects in vivo on its apparent molecular mass, component core subunits and activity against C4 PEPC, in marked contrast to the opposing activity of PEPC-kinase in C4 and Crassulacean acid metabolism leaves. This report represents one of the few studies of a heteromeric PP2A holoenzyme from photosynthetic tissue that dephosphorylates a known target enzyme in plants, such as PEPC, sucrose-phosphate synthase or nitrate reductase.
机译:植物磷酸烯醇丙酮酸羧化酶(PEPC; EC 4.1.1.31)的活性和变构性质通过在N端附近严格保守的丝氨酸残基的特异性可逆磷酸化来控制。 PEPC的这种上调/下调是由专用且高度调节的丝氨酸/苏氨酸(Ser / Thr)激酶(PEPC激酶)和相对的2A型Ser / Thr磷酸酶(PP2A)催化的。与PEPC激酶形成鲜明对比的是,迄今为止,尚未研究过来自光合组织的PP2A全酶。在本研究中,我们使用玉米[32 P] PEPC作为底物,从C4 玉米(Zea mays L.)的光照叶片中部分纯化了该PP2A的天然形式,并对其进行了表征。 。各种常规色谱基质,以及硫代磷酸化的C4 PEPC肽和微囊藻毒素-LR亲和支持物被用于从可溶性叶提取物中富集该PP2A。生化和免疫学结果表明,C4 -叶全酶与其他真核PP2As类似,是一个约170-kDa的异聚体,由一个核心PP2Ac-A异二聚体组成(分别约为38-和65-kDa亚基)。与推定的≈74kDa B型调节/靶向亚基复合。该异源三聚体缺乏严格的底物特异性,因为它在体外使C4 PEPC,哺乳动物磷酸化酶α和酪蛋白脱磷酸。该活性独立于游离的Me2 + ,对左旋咪唑和靶向PP1的Inhibitor-2蛋白不敏感,并被鱼精蛋白和聚L-赖氨酸等多种聚阳离子激活,对微囊藻毒素-LR和冈田酸的抑制高度敏感酸(IC50 ≈30pM),所有这些都是酵母和哺乳动物PP2As的诊断特征。此外,这种C4 -叶PP2A全酶(i)在体外受到某些C4 PEPC相关代谢物(L-苹果酸,PEP,葡萄糖6-磷酸而不是激活剂)的生理浓度的抑制。当使用32 P标记的玉米PEPC或兔肌肉磷酸化酶a作为底物时,提示对该Ser / Thr磷酸酶有直接作用; (ii)充其量仅在体内对其表观分子量,组分核心亚基和对C4 PEPC的活性仅表现出适度的明暗影响,与PEPC激酶在C4 < / sub>和Crassulacean酸代谢叶。该报告代表了来自光合组织的异聚PP2A全酶的少数研究之一,该酶使植物中已知的靶标酶(例如PEPC,蔗糖-磷酸合酶或硝酸盐还原酶)去磷酸化。

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