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[抗乙醛酸循环体膜抗体]

[Antibodies against glyoxysomal membranes].

作者信息

Hock B

机构信息

Institut für Allgemeine Botanik, Arbeitsgruppe Biochemie der Morphogenese, Ruhr-Universität, D-4630, Bochum-Querenburg, Federal Republic of Germany.

出版信息

Planta. 1974 Sep;115(3):271-80. doi: 10.1007/BF00390523.

Abstract

Antibodies against glyoxysomes were prepared by injection of purified glyoxysomal membranes from watermelon cotyledons (day 3) into rabbits and isolation of the gammaglobulin fraction from the antiserum by ammonium sulfate fractionation. Double gel diffusion as well as two-dimensional immunoelectrophoresis (tandem technique, Fig. 4) tests using the purified antiserum and glyoxysomes or crude cotyledon extracts gave a single converging immunoprecipitation band. The antigen concentrations at different developmental stages were determined by one-dimensional immunoelectrophoresis (Fig. 5). Cotyledons of dry seeds contain low but measurable amounts of antigen. After day 2 there is a fast increase and after day 3 a subsequent slow decline of antigen. Since mitochondria and endoplasmic reticulum also formed single identical bands with antiglyoxysoma antibodies (Fig. 6) the results of Fig. 5 reflect the synthesis and destruction of membrane material belonging to several organelles.The reported experiments support the hypothesis of Kagawa, Lord and Beevers (1973) that components of glyoxysomal and mitochondrial membranes originate in a light membrane fraction derived from the endoplasmic reticulum. The consequences of this hypothesis in terms of organelle morphogenesis are discussed.

摘要

通过将从西瓜子叶(第3天)纯化的乙醛酸循环体膜注射到兔子体内,并通过硫酸铵分级分离从抗血清中分离出γ球蛋白部分,制备了针对乙醛酸循环体的抗体。使用纯化的抗血清和乙醛酸循环体或粗子叶提取物进行的双向凝胶扩散以及二维免疫电泳(串联技术,图4)测试产生了一条单一的汇聚免疫沉淀带。通过一维免疫电泳(图5)测定了不同发育阶段的抗原浓度。干种子的子叶含有少量但可测量的抗原。第2天后抗原迅速增加,第3天后抗原随后缓慢下降。由于线粒体和内质网与抗乙醛酸循环体抗体也形成了单一相同的条带(图6),图5的结果反映了属于几个细胞器的膜材料的合成和破坏。所报道的实验支持了Kagawa、Lord和Beevers(1973年)的假设,即乙醛酸循环体和线粒体膜的成分起源于内质网衍生的轻膜部分。讨论了这一假设在细胞器形态发生方面的后果。

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