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拟南芥Bio2蛋白需要定位于线粒体才能发挥活性。

The Arabidopsis Bio2 protein requires mitochondrial targeting for activity.

作者信息

Arnal Nadège, Alban Claude, Quadrado Martine, Grandjean Olivier, Mireau Hakim

机构信息

INRA, Station de Génétique et d'Amélioration des Plantes, Route de Saint-Cyr, F-78026 Versailles cedex, France.

出版信息

Plant Mol Biol. 2006 Oct;62(3):471-9. doi: 10.1007/s11103-006-9034-x. Epub 2006 Aug 1.

Abstract

Mitochondria are involved in the production of various vitamins, such as biotin, in plants. It is unclear why these biosynthetic pathways have been maintained partly or entirely within the mitochondria throughout evolution. The last step in biotin biosynthesis occurs within the mitochondria and is catalyzed by the biotin synthase complex containing the BIO2 gene product. We investigated whether the Arabidopsis Bio2 enzyme could function outside mitochondria, by trying to complement a bio2 mutant with a truncated version of BIO2 lacking the region encoding the mitochondrial targeting sequence. We describe the characterization of a new T-DNA allele of bio2, with the sole phenotype of an absence of biotin production, in contrast to the previously characterized EMS bio2 allele (Patton et al. 1998, Plant Physiol 116(3):935-946). We found that a cytosolic version of the Bio2 protein could not complement this mutant. Supplementation with the substrate dethiobiotin (DTB) also failed to rescue the mutant phenotype. Thus, the lack of availability of DTB in the cytosol is not the only factor preventing this reaction from occurring outside mitochondria. Bio2 requires mitochondrial targeting for activity, enabling it to fulfill its role in biotin synthesis. The reaction catalyzed by Bio2 may be subject to biochemical constraints, and the apparent close connection with the mitochondrial Fe-S machinery may account for the reaction being retained within the organelle.

摘要

线粒体参与植物中多种维生素的合成,如生物素。目前尚不清楚为何这些生物合成途径在整个进化过程中部分或全部保留在线粒体内。生物素生物合成的最后一步发生在线粒体内,由含有BIO2基因产物的生物素合酶复合物催化。我们通过尝试用缺失线粒体靶向序列编码区域的BIO2截短版本来互补bio2突变体,研究了拟南芥Bio2酶是否能在线粒体之外发挥功能。我们描述了一个新的bio2 T-DNA等位基因的特征,与之前鉴定的EMS bio2等位基因(Patton等人,1998年,《植物生理学》116(3):935 - 946)相比,其唯一表型是缺乏生物素的产生。我们发现Bio2蛋白的胞质版本不能互补这个突变体。用底物脱硫生物素(DTB)进行补充也未能挽救突变体表型。因此,胞质中DTB的可用性不足并非阻止该反应在线粒体之外发生的唯一因素。Bio2需要线粒体靶向才能发挥活性,使其能够在生物素合成中发挥作用。Bio2催化的反应可能受到生化限制,与线粒体铁硫机制的明显紧密联系可能解释了该反应为何保留在细胞器内。

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