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Freezing Injury and Phospholipid Degradation in Vivo in Woody Plant Cells: II. Regulatory Effects of Divalent Cations on Activity of Membrane-bound Phospholipase D 1

机译:木本植物细胞体内的冻伤和体内磷脂降解:II。二价阳离子对膜结合磷脂酶D 1活性的调节作用

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摘要

Activity of membrane-bound phospholipase D in microsomes from bark tissues of black locust tree (Robina pseudoacacia L.) was demonstrated to be regulated by a competitive binding of divalent cations. Binding of Ca2+ at high concentrations (1 to 50 millimolar) modified the pH activity profile, shifting the optimum pH by 0.5 unit toward neutral and increasing the activity in the neutral pH. Mg2+, on the other hand, inhibited the reaction of membrane-bound phospholipase D without added Ca2+, and competitively inhibited the Ca2+ stimulation. The regulatory effects of those ions were dependent on pH. Reduction in pH resulted in a decrease in the apparent dissociation constant for Ca2+ and an increase in that for Mg2+. From Lineweaver-Burk double reciprocal plots of Ca2+ and the initial velocity, it was suggested that the binding of Ca2+ in the higher concentration resulted in nearly the same conformational change of enzyme as reduction in pH. Mg2+, on the other hand, counteracted those effects of Ca2+ and lower pH on the enzyme conformation in such a manner as to inactivate. The membrane-bound phospholipase D because more sensitive to Ca2+ and less sensitive to Mg2+ as the hardiness of the tissues decreased. This fact may indicate that some qualitative changes in membranes are involved in the hardiness changes and also in the susceptibility of phospholipid to degradation by phospholipase D in plant cells.
机译:证明了刺槐树(Robina pseudoacacia L.)树皮组织中微粒体中膜结合磷脂酶D的活性受二价阳离子竞争结合的调节。 Ca2 +在高浓度(1至50毫摩尔)下的结合改变了pH活性曲线,使最佳pH向中性方向移动了0.5个单位,并增加了中性pH的活性。另一方面,Mg 2+抑制不添加Ca 2+的膜结合磷脂酶D的反应,并且竞争性地抑制Ca 2+的刺激。这些离子的调节作用取决于pH。 pH值的降低导致Ca2 +的表观解离常数降低,而Mg2 +的表观解离常数增加。从Lineweaver-Burk Ca2 +和初始速度的双倒数图可以看出,Ca2 +在较高浓度下的结合导致酶构象变化与pH降低几乎相同。另一方面,Mg2 +以失活的方式抵消了Ca2 +和较低pH对酶构象的影响。膜结合磷脂酶D是因为随着组织硬度的降低,对Ca2 +的敏感性更高,而对Mg2 +的敏感性更低。这个事实可能表明膜的一些定性变化与植物细胞的硬度变化以及磷脂对磷脂酶D降解的敏感性有关。

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    Yoshida, Shizuo;

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  • 年度 1979
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  • 正文语种 en
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