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膜转运代谢体

Membrane transport metabolons.

作者信息

Moraes Trevor F, Reithmeier Reinhart A F

机构信息

Department of Biochemistry, University of Toronto, Ontario, Canada.

出版信息

Biochim Biophys Acta. 2012 Nov;1818(11):2687-706. doi: 10.1016/j.bbamem.2012.06.007. Epub 2012 Jun 13.

Abstract

In this review evidence from a wide variety of biological systems is presented for the genetic, functional, and likely physical association of membrane transporters and the enzymes that metabolize the transported substrates. This evidence supports the hypothesis that the dynamic association of transporters and enzymes creates functional membrane transport metabolons that channel substrates typically obtained from the extracellular compartment directly into their cellular metabolism. The immediate modification of substrates on the inner surface of the membrane prevents back-flux through facilitated transporters, increasing the efficiency of transport. In some cases products of the enzymes are themselves substrates for the transporters that efflux the products in an exchange or antiport mechanism. Regulation of the binding of enzymes to transporters and their mutual activities may play a role in modulating flux through transporters and entry of substrates into metabolic pathways. Examples showing the physical association of transporters and enzymes are provided, but available structural data is sparse. Genetic and functional linkages between membrane transporters and enzymes were revealed by an analysis of Escherichia coli operons encoding polycistronic mRNAs and provide a list of predicted interactions ripe for further structural studies. This article supports the view that membrane transport metabolons are important throughout Nature in organisms ranging from bacteria to humans.

摘要

在本综述中,我们展示了来自各种生物系统的证据,证明膜转运蛋白与代谢所转运底物的酶之间存在遗传、功能以及可能的物理关联。这一证据支持了以下假说:转运蛋白与酶的动态关联形成了功能性膜转运代谢体,这些代谢体将通常从细胞外区室获取的底物直接导入细胞代谢过程。底物在膜内表面的即时修饰可防止其通过易化转运蛋白发生回流,从而提高转运效率。在某些情况下,酶的产物本身就是转运蛋白的底物,转运蛋白通过交换或反向转运机制将产物排出。酶与转运蛋白的结合及其相互活性的调节可能在调节通过转运蛋白的通量以及底物进入代谢途径方面发挥作用。文中提供了转运蛋白与酶存在物理关联的实例,但现有的结构数据较少。通过对编码多顺反子mRNA的大肠杆菌操纵子进行分析,揭示了膜转运蛋白与酶之间的遗传和功能联系,并提供了一系列有待进一步进行结构研究的预测相互作用。本文支持这样一种观点,即膜转运代谢体在从细菌到人类的各种生物中在自然界中都很重要。

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