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Freezing Injury and Phospholipid Degradation in Vivo in Woody Plant Cells: III. Effects of Freezing on Activity of Membrane-bound Phospholipase D in Microsome-enriched Membranes 1

机译:木本植物细胞中的冻伤和体内磷脂降解:III。冷冻对富含微粒体的膜1中膜结合磷脂酶D活性的影响

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摘要

Freeze-thawing of microsome-enriched membranes from living bark tissues of black locust trees, especially those from less hardy tissues, caused a drastic increase in sensitivity to Ca2+ and a complete loss of the regulatory action of Mg2+ in membrane-bound phospholipase D activity with endogenous (membrane-bound) substrates. Also, the freeze-thaw cycle made phospholipase D in these membranes more resistant to digestion by proteases. Thus, the regulatory properties of the membrane-bound phospholipase D seem to be dependent on the nature of the membranes and on the interaction between the enzyme and membranes as well. The alteration of regulatory properties by freezing was protected by sucrose, at lower concentrations, and more effectively for membranes from hardy tissues than for membranes from less hardy tissue. Addition of partially purified soluble phospholipase D to the reaction system containing membranes caused only a slight stimulation of the degradation of endogenous phospholipids. Phospholipid degradation in vivo during freezing of less hardy tissue may be catalyzed mainly by the bound enzyme. Disintegration of the tonoplast, however, besides releasing soluble phospholipase D into the cytosol, would release organic acids (lowering the pH) and free Ca2+. Both factors would stimulate drastically the membrane-bound phospholipase D, causing degradation of membrane phospholipids.
机译:刺槐树的活树皮组织(尤其是刚度较低的树皮)的富含树体的膜被冻融,导致对Ca2 +的敏感性急剧增加,Mg2 +的膜结合磷脂酶D活性完全丧失了对Mg2 +的调节作用。内源性(膜结合)底物。而且,冻融循环使这些膜中的磷脂酶D对蛋白酶的消化更有抵抗力。因此,膜结合的磷脂酶D的调节性质似乎取决于膜的性质以及酶与膜之间的相互作用。蔗糖以较低的浓度保护了通过冷冻而改变的调节特性,对来自坚硬组织的膜比来自较不坚硬组织的膜更有效。将部分纯化的可溶性磷脂酶D添加到含有膜的反应系统中仅引起内源性磷脂降解的轻微刺激。较不耐寒的组织在冷冻过程中体内的磷脂降解可能主要是由结合的酶催化的。但是,液泡膜的崩解除了将可溶性磷脂酶D释放到细胞质之外,还将释放有机酸(降低pH)和游离Ca2 +。这两个因素都会极大地刺激与膜结合的磷脂酶D,从而引起膜磷脂的降解。

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  • 作者

    Yoshida, Shizuo;

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  • 年度 1979
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  • 原文格式 PDF
  • 正文语种 en
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