Budde R J, Holbrook G P, Chollet R
Arch Biochem Biophys. 1985 Oct;242(1):283-90. doi: 10.1016/0003-9861(85)90503-x.
In maize leaves, pyruvate, orthophosphate dikinase (PPDK) is deactivated in the dark and reactivated in the light. Studies in vitro using purified PPDK and a partially purified regulatory protein from maize confirmed previous reports correlating deactivation/reactivation with the reversible phosphorylation/dephosphorylation of a threonyl residue. By monitoring the stability of the exogenous 32P-labeled adenylate substrates during deactivation, we have firmly established ADP as the specific phosphate donor. In isolated maize leaf mesophyll protoplasts preilluminated with 32Pi, we observed a three- to fivefold higher PPDK activity in situ in the light, and a corresponding three- to fivefold higher level of phosphorylation of the 94-kDa PPDK protomer in the dark. HPLC-based phosphoamino acid analysis of PPDK purified from maize leaves of both light- and dark-adapted plants revealed the presence of P-serine. The inactive enzyme from dark-adapted plants (inactivated in vivo) also contained P-threonine. Total phosphate content of PPDK purified from leaves of light-adapted plants was approximately 0.5 mol/mol protomer, and 1.5 mol/mol protomer from leaves of dark-adapted plants. Since the difference between enzyme purified from light-adapted (active PPDK) and dark-adapted (inactive PPDK) plants is the presence of P-threonine in the latter, this suggests an inactivation stoichiometry in vivo of 1 mol P-threonine/mol 94-kDa protomer. These complementary studies with maize leaf PPDK in vitro, in situ, and in vivo provide convincing evidence for the dark/light regulation of this key C4-photosynthesis enzyme by reversible phosphorylation.
在玉米叶片中,丙酮酸磷酸双激酶(PPDK)在黑暗中失活,在光照下重新激活。使用纯化的PPDK和来自玉米的部分纯化的调节蛋白进行的体外研究证实了先前的报道,即失活/重新激活与苏氨酰残基的可逆磷酸化/去磷酸化相关。通过监测失活过程中外源32P标记的腺苷酸底物的稳定性,我们确定了ADP是特定的磷酸供体。在用32Pi预光照的分离玉米叶片叶肉原生质体中,我们观察到光照下原位PPDK活性比黑暗中高三到五倍,并且在黑暗中94 kDa PPDK原体的磷酸化水平相应地高三到五倍。基于HPLC的磷酸氨基酸分析显示,从适应光照和黑暗的植物的玉米叶片中纯化的PPDK都存在磷酸丝氨酸。来自适应黑暗的植物(体内失活)的无活性酶也含有磷酸苏氨酸。从适应光照的植物叶片中纯化的PPDK的总磷含量约为0.5摩尔/摩尔原体,从适应黑暗的植物叶片中纯化的PPDK的总磷含量为1.5摩尔/摩尔原体。由于从适应光照(活性PPDK)和适应黑暗(无活性PPDK)的植物中纯化的酶之间的差异在于后者存在磷酸苏氨酸,这表明体内失活化学计量为1摩尔磷酸苏氨酸/摩尔94 kDa原体。这些对玉米叶片PPDK在体外、原位和体内的补充研究为这种关键的C4光合作用酶通过可逆磷酸化进行的暗/光调节提供了令人信服的证据。