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A chloroplast-localized vesicular transport system: a bio-informatics approach

机译:叶绿体定位的囊泡运输系统:一种生物信息学方法

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摘要

BackgroundThe thylakoid membrane of higher plant chloroplasts is made of membrane lipids synthesized in the chloroplast envelope. As the inner envelope membrane and the thylakoid are separated by the aqueous stroma, a system for transporting newly synthesized lipids from the inner envelope membrane to the thylakoid is required. Ultrastructural as well as biochemical studies have indicated that lipid transport inside the chloroplast could be mediated by a system similar in characteristics to vesicular trafficking in the cytosol. If indeed the chloroplast system is related to cytosolic vesicular trafficking systems, a certain degree of sequence conservation between components of the chloroplast and the cytosolic systems could be expected. We used the Arabidopsis thaliana genome and web-based subcellular localization prediction tools to search for chloroplast-localized homologues of cytosolic vesicular trafficking components.
机译:背景高等植物叶绿体的类囊体膜是由在叶绿体包膜中合成的膜脂质制成的。由于内包膜和类囊体被水基质分开,因此需要用于将新合成的脂质从内包膜运输到类囊体的系统。超微结构和生化研究表明,叶绿体内部的脂质转运可以由与细胞溶质中的囊泡转运相似的系统介导。如果确实叶绿体系统与胞质囊泡运输系统有关,则可以预期在叶绿体组分和胞质系统之间一定程度的序列保守性。我们使用拟南芥基因组和基于网络的亚细胞定位预测工具来搜索叶绿体定位的胞浆水泡运输组件的同源物。

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