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pH对高粱叶片C4磷酸烯醇式丙酮酸羧化酶的共价调控和代谢调控的影响。

The effect of pH on the covalent and metabolic control of C4 phosphoenolpyruvate carboxylase from Sorghum leaf.

作者信息

Echevarria C, Pacquit V, Bakrim N, Osuna L, Delgado B, Arrio-Dupont M, Vidal J

机构信息

Laboratorio de Fisiologia Vegetal, Universidad de Sevilla, Faculdad de Biologia, Spain.

出版信息

Arch Biochem Biophys. 1994 Dec;315(2):425-30. doi: 10.1006/abbi.1994.1520.

Abstract

The influence of pH on the in vitro activity and regulatory properties of Sorghum leaf C4 phosphoenolpyruvate carboxylase (PEPC) was investigated with respect to the phosphorylation status of the enzyme. In vitro protein phosphorylation was achieved using the catalytic subunit of a cAMP-dependent protein kinase (PKA) and a recombinant, immunopurified PEPC (0.9 mol of covalent Pi/mol PEPC subunit). Between pH 6.8 and 8, velocity and IC50 for L-malate increased for both the nonphosphorylated and the phosphorylated forms. With respect to the nonphosphorylated PEPC, the phospho-PEPC always gave high values for these kinetic parameters at the pH range investigated, especially between pH 7 and 7.3. The phosphorylation-induced stimulation of PEPC activity was four- to fivefold at pH 7.1 and approximately twofold at pH 7.3. The IC50 for L-malate showed a two- to threefold increase at pH 7.3, but varied less at pH 7.1 upon PEPC phosphorylation. Thus, phosphorylation of PEPC caused a predominant V effect or a mixed (V/IC50) effect at pH 7.1 or 7.3, respectively. This was also observed with the enzyme from desalted crude protein extracts from dark or light-adapted Sorghum leaves and leaf-derived mesophyll protoplasts illuminated in the presence of methylamine, a compound known to increase cytosolic pH (pHc). At pH 7.3, desensitization to L-malate of phospho-PEPC was due to an enhanced ability of PEP to compete with the inhibitor. The positive effector glucose-6P acted similarly to phosphorylation; however, a combination of both factors (glucose-6P and phosphorylation) led to a much larger increase in the IC50 for L-malate than that observed by a single factor.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

针对高粱叶片C4磷酸烯醇式丙酮酸羧化酶(PEPC)的磷酸化状态,研究了pH对其体外活性和调节特性的影响。使用cAMP依赖性蛋白激酶(PKA)的催化亚基和重组免疫纯化的PEPC(0.9摩尔共价磷酸根/摩尔PEPC亚基)实现体外蛋白质磷酸化。在pH 6.8至8之间,非磷酸化和磷酸化形式的L-苹果酸的反应速度和IC50均增加。对于非磷酸化的PEPC,在研究的pH范围内,磷酸化的PEPC在这些动力学参数上总是给出较高的值,特别是在pH 7至7.3之间。在pH 7.1时,磷酸化诱导的PEPC活性刺激为四至五倍,在pH 7.3时约为两倍。L-苹果酸的IC50在pH 7.3时增加了两至三倍,但在pH 7.1时,PEPC磷酸化后变化较小。因此,PEPC的磷酸化分别在pH 7.1或7.3时引起主要的V效应或混合(V/IC50)效应。在来自黑暗或光照适应的高粱叶片以及在甲胺存在下光照的叶肉原生质体的脱盐粗蛋白提取物中的酶中也观察到了这一点,甲胺是一种已知可增加细胞质pH(pHc)的化合物。在pH 7.3时,磷酸化的PEPC对L-苹果酸的脱敏是由于PEP与抑制剂竞争的能力增强。正效应物葡萄糖-6P的作用与磷酸化类似;然而,两种因素(葡萄糖-6P和磷酸化)的组合导致L-苹果酸的IC50增加幅度比单一因素观察到的要大得多。(摘要截短于250字)

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