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谷物胚乳淀粉体包膜上 ADP - 葡萄糖转运的特性分析

Characterization of ADP-glucose transport across the cereal endosperm amyloplast envelope.

作者信息

Bowsher Caroline G, Scrase-Field Edward F A L, Esposito Sergio, Emes Michael J, Tetlow Ian J

机构信息

Faculty of Life Sciences, 3.614 Stopford Building, University of Manchester, Oxford Road, Manchester M13 9PT, UK.

出版信息

J Exp Bot. 2007;58(6):1321-32. doi: 10.1093/jxb/erl297. Epub 2007 Feb 13.

DOI:10.1093/jxb/erl297
PMID:17301030
Abstract

Most of the carbon used for starch biosynthesis in cereal endosperms is derived from ADP-glucose (ADP-Glc) synthesized by extra-plastidial AGPase activity, and imported directly across the amyloplast envelope. The properties of the wheat endosperm amyloplast ADP-Glc transporter were analysed with respect to substrate kinetics and specificities using reconstituted amyloplast envelope proteins in a proteoliposome-based assay system, as well as with isolated intact organelles. Experiments with liposomes showed that ADP-Glc transport was dependent on counter-exchange with other adenylates. Rates of ADP-Glc transport were highest with ADP and AMP as counter-exchange substrates, and kinetic analysis revealed that the transport system has a similar affinity for ADP and AMP. Measurement of ADP and AMP efflux from intact amyloplasts showed that, under conditions of ADP-Glc-dependent starch biosynthesis, ADP is exported from the plastid at a rate equal to that of ADP-Glc utilization by starch synthases. Photo-affinity labelling of amyloplast membranes with the substrate analogue 8-azido-[alpha-32P]ADP-Glc showed that the polypeptide involved in substrate binding is an integral membrane protein of 38 kDa. This study shows that the ADP-Glc transporter in cereal endosperm amyloplasts imports ADP-Glc in exchange for ADP which is produced as a by-product of the starch synthase reaction inside the plastid.

摘要

谷物胚乳中用于淀粉生物合成的大部分碳来自于由质体外AGPase活性合成的ADP-葡萄糖(ADP-Glc),并直接穿过造粉体包膜导入。在基于蛋白脂质体的测定系统中,使用重组的造粉体包膜蛋白以及分离的完整细胞器,分析了小麦胚乳造粉体ADP-Glc转运体在底物动力学和特异性方面的特性。脂质体实验表明,ADP-Glc转运依赖于与其他腺苷酸的反向交换。以ADP和AMP作为反向交换底物时,ADP-Glc的转运速率最高,动力学分析表明转运系统对ADP和AMP具有相似的亲和力。完整造粉体中ADP和AMP流出的测量结果表明,在依赖ADP-Glc的淀粉生物合成条件下,ADP从质体中输出的速率与淀粉合酶利用ADP-Glc的速率相等。用底物类似物8-叠氮基-[α-32P]ADP-Glc对造粉体膜进行光亲和标记,结果表明参与底物结合的多肽是一种38 kDa的整合膜蛋白。这项研究表明,谷物胚乳造粉体中的ADP-Glc转运体以ADP-Glc交换ADP的方式进行转运,ADP是质体内淀粉合酶反应的副产物。

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