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韧皮部定位的质子偶联蔗糖载体ZmSUT1在蔗糖梯度和质子动力的控制下介导蔗糖外流。

Phloem-localized, proton-coupled sucrose carrier ZmSUT1 mediates sucrose efflux under the control of the sucrose gradient and the proton motive force.

作者信息

Carpaneto Armando, Geiger Dietmar, Bamberg Ernst, Sauer Norbert, Fromm Jörg, Hedrich Rainer

机构信息

Istituto di Biofisica, Consiglio Nazionale delle Ricerche, Genova, Italy.

出版信息

J Biol Chem. 2005 Jun 3;280(22):21437-43. doi: 10.1074/jbc.M501785200. Epub 2005 Apr 1.

Abstract

The phloem network is as essential for plants as the vascular system is for humans. This network, assembled by nucleus- and vacuole-free interconnected living cells, represents a long distance transport pathway for nutrients and information. According to the Münch hypothesis, osmolytes such as sucrose generate the hydrostatic pressure that drives nutrient and water flow between the source and the sink phloem (Münch, E. (1930) Die Stoffbewegungen in der Pflanze, Gustav Fischer, Jena, Germany). Although proton-coupled sucrose carriers have been localized to the sieve tube and the companion cell plasma membrane of both source and sink tissues, knowledge of the molecular representatives and the mechanism of the sucrose phloem efflux is still scant. We expressed ZmSUT1, a maize sucrose/proton symporter, in Xenopus oocytes and studied the transport characteristics of the carrier by electrophysiological methods. Using the patch clamp techniques in the giant inside-out patch mode, we altered the chemical and electrochemical gradient across the sucrose carrier and analyzed the currents generated by the proton flux. Thereby we could show that ZmSUT1 is capable of mediating both the sucrose uptake into the phloem in mature leaves (source) as well as the desorption of sugar from the phloem vessels into heterotrophic tissues (sink). As predicted from a perfect molecular machine, the ZmSUT1-mediated sucrose-coupled proton current was reversible and depended on the direction of the sucrose and pH gradient as well as the membrane potential across the transporter.

摘要

韧皮部网络对植物的重要性如同血管系统对人类的重要性一样。这个由无细胞核和液泡的相互连接的活细胞组成的网络,是营养物质和信息的长距离运输途径。根据明希假说,诸如蔗糖等渗透溶质会产生静水压力,驱动营养物质和水流在源端和库端韧皮部之间流动(明希,E.(1930年)《植物中的物质运动》,古斯塔夫·费舍尔出版社,德国耶拿)。尽管质子偶联蔗糖载体已定位在源端和库端组织的筛管和伴胞质膜上,但关于蔗糖韧皮部外排的分子代表和机制的了解仍然很少。我们在非洲爪蟾卵母细胞中表达了玉米蔗糖/质子同向转运体ZmSUT1,并通过电生理方法研究了该载体的转运特性。使用巨膜外翻片模式下的膜片钳技术,我们改变了跨蔗糖载体的化学和电化学梯度,并分析了质子通量产生的电流。由此我们可以证明,ZmSUT1能够介导成熟叶片(源端)中蔗糖向韧皮部的摄取,以及糖从韧皮部导管向异养组织(库端)的解吸。正如从一个完美的分子机器所预测的那样,ZmSUT1介导的蔗糖偶联质子电流是可逆的,并且取决于蔗糖和pH梯度的方向以及跨转运体的膜电位。

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