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Properties of Chloroplasts Isolated from Siphonous Algae: Effects of Osmotic Shock and Detergent Treatment on Intactness 1

机译:从虹吸藻中分离出的叶绿体的性质:渗透压和洗涤剂处理对完整度的影响1

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摘要

Chloroplasts isolated from the siphonous green alga Caulerpa simpliciuscula (Turner) C.Ag. were shown to be resistant to dissolution by the nonionic detergent Teric-10 at concentrations as high as 0.3% (v/v) when treated at 0 C. There was little release of stromal enzymes under these conditions. These chloroplasts were disrupted by osmotic shock as shown by measurement of the release of both glucose-6-phosphate dehydrogenase and NADP-dependent glutamate dehydrogenase into the suspending medium. Ribulose-1,5-bisphosphate carboxylase, an accepted marker for chloroplast stromal protein in higher plants, was largely retained in the disrupted chloroplast following the osmotic shock. This is considered to be due to the location of a significant proportion of enzyme within the pyrenoid, which protects it from dissolution and causes it to behave as though it were an insoluble protein.
机译:从虹吸绿藻Caulerpa simpliciuscula(Turner)C.Ag.分离的叶绿体当在0℃下处理时,它们显示出对浓度高达0.3%(v / v)的非离子去污剂Teric-10的溶解具有抵抗力。在这些条件下几乎没有基质酶的释放。如通过测量葡萄糖-6磷酸脱氢酶和NADP依赖性谷氨酸脱氢酶向悬浮介质中的释放所显示的,这些叶绿体被渗透压破坏。 1,5-双磷酸核糖羧化酶是高等植物中叶绿体基质蛋白的公认标记,在渗透性休克后大部分保留在破坏的叶绿体中。认为这是由于在类胡萝卜素中存在很大比例的酶,从而保护了其免于溶解并使其表现为好像是不可溶的蛋白质。

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