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活细胞中从头嘌呤生物合成复合物的可逆区室化

Reversible compartmentalization of de novo purine biosynthetic complexes in living cells.

作者信息

An Songon, Kumar Ravindra, Sheets Erin D, Benkovic Stephen J

机构信息

Department of Chemistry, Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Science. 2008 Apr 4;320(5872):103-6. doi: 10.1126/science.1152241.

Abstract

Purines are synthesized de novo in 10 chemical steps that are catalyzed by six enzymes in eukaryotes. Studies in vitro have provided little evidence of anticipated protein-protein interactions that would enable substrate channeling and regulation of the metabolic flux. We applied fluorescence microscopy to HeLa cells and discovered that all six enzymes colocalize to form clusters in the cellular cytoplasm. The association and dissociation of these enzyme clusters can be regulated dynamically, by either changing the purine levels of or adding exogenous agents to the culture media. Collectively, the data provide strong evidence for the formation of a multi-enzyme complex, the "purinosome," to carry out de novo purine biosynthesis in cells.

摘要

嘌呤在真核生物中通过10个化学步骤从头合成,由6种酶催化。体外研究几乎没有提供预期的蛋白质-蛋白质相互作用的证据,而这种相互作用能够实现底物通道化和代谢通量的调节。我们将荧光显微镜应用于HeLa细胞,发现所有6种酶共定位,在细胞质中形成簇。这些酶簇的缔合和解离可以通过改变培养基中的嘌呤水平或添加外源试剂来动态调节。总体而言,这些数据为一种多酶复合物“嘌呤体”的形成提供了有力证据,该复合物在细胞中进行嘌呤的从头生物合成。

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