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质体中的磷酸转运体

PHOSPHATE TRANSLOCATORS IN PLASTIDS.

作者信息

Flugge Ulf-Ingo

机构信息

Botanisches Institut der Universitat zu Koln, Gyrhofstrasse 15, Koln, D-50931 Germany; e-mail:

出版信息

Annu Rev Plant Physiol Plant Mol Biol. 1999 Jun;50:27-45. doi: 10.1146/annurev.arplant.50.1.27.

Abstract

During photosynthesis, energy from solar radiation is used to convert atmospheric carbon dioxide into intermediates that are used within and outside the chloroplast for a multitude of metabolic pathways. The daily fixed carbon is exported from the chloroplasts as triose phosphates and 3-phosphoglycerate. In contrast, nongreen plastids rely on the import of carbon, mainly hexose phosphates. Most organelles require the import of phosphoenolpyruvate as an immediate substrate for carbon to enter the shikimate pathway, leading to a variety of important secondary compounds. The envelope membrane of plastids contains specific translocators that are involved in these transport processes. Elucidation of the molecular structure of some of these translocators during the past few years has provided new insights in the functioning of particular translocators. This review focuses on the characterization of different classes of phosphate translocators in plastids that mediate the transport of the phosphorylated compounds in exchange with inorganic phosphate.

摘要

在光合作用过程中,太阳辐射的能量被用于将大气中的二氧化碳转化为中间体,这些中间体在叶绿体内部和外部用于多种代谢途径。每天固定的碳以磷酸丙糖和3-磷酸甘油酸的形式从叶绿体输出。相比之下,非绿色质体依赖于碳的输入,主要是磷酸己糖。大多数细胞器需要输入磷酸烯醇丙酮酸作为碳进入莽草酸途径的直接底物,从而产生各种重要的次生化合物。质体的包膜含有参与这些运输过程的特定转运体。在过去几年中,对其中一些转运体分子结构的阐明为特定转运体的功能提供了新的见解。本综述着重介绍了质体中不同类别的磷酸转运体的特性,这些转运体介导磷酸化化合物与无机磷酸的交换运输。

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