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证据表明,来自滨海松(Pinus pinaster Ait.)子叶的叶绿体中存在可操作的谷氨酰胺转运蛋白。

Evidence for an operative glutamine translocator in chloroplasts from maritime pine (Pinus pinaster Ait.) cotyledons.

机构信息

Departamento de Biología Molecular y Bioquímica, Facultad de Ciencias, Universidad de Málaga, Málaga, Spain.

出版信息

Plant Biol (Stuttg). 2010 Sep 1;12(5):717-23. doi: 10.1111/j.1438-8677.2009.00274.x.

Abstract

In higher plants, ammonium is assimilated into amino acids through the glutamine synthetase (GS)/glutamate synthase (GOGAT) cycle. This metabolic cycle is distributed in different cellular compartments in conifer seedlings: glutamine synthesis occurs in the cytosol and glutamate synthesis within the chloroplast. A method for preparing intact chloroplasts of pine cotyledons is presented with the aim of identifying a glutamine-glutamate translocator. Glutamine-glutamate exchange has been studied using the double silicone layer system, suggesting the existence of a translocator that imports glutamine into the chloroplast and exports glutamate to the cytoplasm. The translocator identified is specific for glutamine and glutamate, and the kinetic constants for both substrates indicate that it is unsaturated at intracellular concentrations. Thus, the experimental evidence obtained supports the model of the GS/GOGAT cycle in developing pine seedlings that accounts for the stoichiometric balance of metabolites. As a result, the efficient assimilation of free ammonia produced by photorespiration, nitrate reduction, storage protein mobilisation, phenylpropanoid pathway or S-adenosylmethionine synthesis is guaranteed.

摘要

在高等植物中,铵通过谷氨酰胺合成酶(GS)/谷氨酸合酶(GOGAT)循环被同化到氨基酸中。这个代谢循环在针叶树幼苗的不同细胞区室中分布:谷氨酰胺合成发生在细胞质中,而谷氨酸合成则发生在叶绿体中。本研究旨在鉴定一种谷氨酰胺-谷氨酸转运蛋白,因此提出了一种制备完整松胚叶叶绿体的方法。使用双层硅脂层系统研究了谷氨酰胺-谷氨酸交换,表明存在一种将谷氨酰胺导入叶绿体并将谷氨酸输出到细胞质的转运蛋白。鉴定出的转运蛋白对谷氨酰胺和谷氨酸具有特异性,并且两种底物的动力学常数表明,在细胞内浓度下它是不饱和的。因此,获得的实验证据支持了 GS/GOGAT 循环在发育中的松幼苗中的模型,该模型解释了代谢物的化学计量平衡。结果,保证了光合作用、硝酸盐还原、储存蛋白动员、苯丙烷途径或 S-腺苷甲硫氨酸合成过程中产生的游离氨的有效同化。

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