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体外光合作用过程中菠菜叶绿体与培养基之间代谢物的分布

The distribution of metabolites between spinach chloroplasts and medium during photosynthesis in vitro.

作者信息

Lilley R M, Chon C J, Mosbach A, Heldt H W

出版信息

Biochim Biophys Acta. 1977 May 11;460(2):259-72. doi: 10.1016/0005-2728(77)90212-2.

DOI:10.1016/0005-2728(77)90212-2
PMID:870037
Abstract
  1. The formation of metabolites in the stroma compartment of isolated chloroplasts during carbon fixation, and their export to the medium, have been investigated using improved techniques. 2. Rapid separation of photosynthesising chloroplasts from the medium, accompanied by simultaneous quenching of metabolism was achieved by using silicone oil layer filtering centrifugation under illumination. Metabolites were separated by microscale ion-exchange chromatography. Quantitative determination of each metabolite was based on labelling with 32P. 3. It was found that fixed carbon was exported from the chloroplasts only as triose phosphate and phosphoglycerate, and to a minor extent, as pentose monophosphate. The main compounds accumulating in the stroma were hexose and heptose monophosphates and phosphoglycerate. A marked decrease in the concentration of inorganic phosphate in the stroma during the first 5 min of illumination was accompanied by a complementary increase in organic phosphate so that the total amount of phosphate within the chloroplasts remained constant. 4. The concentration difference for phosphoglycerate between the stroma and the medium was much higher than for triose phosphate or inorganic phosphate, although all three compounds are transported across the inner membrane of the chloroplast envelope by the same carrier. It was concluded that the efflux of phosphoglycerate was restricted.
摘要
  1. 利用改进的技术,对分离的叶绿体在碳固定过程中基质区室中代谢产物的形成及其向培养基中的输出进行了研究。2. 在光照下,通过硅油层过滤离心法实现了光合叶绿体与培养基的快速分离,同时代谢也被同步淬灭。代谢产物通过微量离子交换色谱法进行分离。每种代谢产物的定量测定基于用³²P标记。3. 发现固定碳仅以磷酸丙糖和磷酸甘油酸的形式从叶绿体输出,少量以单磷酸戊糖的形式输出。基质中积累的主要化合物是己糖和庚糖单磷酸以及磷酸甘油酸。光照的前5分钟内,基质中无机磷酸浓度显著下降,同时有机磷酸相应增加,使得叶绿体内磷酸总量保持恒定。4. 尽管磷酸甘油酸、磷酸丙糖和无机磷酸这三种化合物都是通过同一载体跨叶绿体被膜内膜运输的,但基质与培养基之间磷酸甘油酸的浓度差远高于磷酸丙糖或无机磷酸。得出的结论是,磷酸甘油酸的外流受到限制。

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