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硫胺素焦磷酸激酶是拟南芥中硫胺素辅因子激活所必需的。

Thiamin pyrophosphokinase is required for thiamin cofactor activation in Arabidopsis.

作者信息

Ajjawi Imad, Rodriguez Milla Miguel A, Cushman John, Shintani David K

机构信息

Department of Biochemistry and Molecular Biology, University of Nevada, Reno, NV 89557, USA.

出版信息

Plant Mol Biol. 2007 Sep;65(1-2):151-62. doi: 10.1007/s11103-007-9205-4. Epub 2007 Jul 5.

Abstract

Thiamin pyrophosphate (TPP) is an essential enzyme cofactor required for the viability of all organisms. Whether derived from exogenous sources or through de novo synthesis, thiamin must be pyrophosphorylated for cofactor activation. The enzyme thiamin pyrophosphokinase (TPK) catalyzes the conversion of free thiamin to TPP in plants and other eukaryotic organisms and is central to thiamin cofactor activation. While TPK activity has been observed in a number of plant species, the corresponding gene/protein has until now not been identified or characterized for its role in thiamin metabolism. Here we report the functional identification of two Arabidopsis TPK genes, AtTPK1 and AtTPK2 and the enzymatic characterization of the corresponding proteins. AtTPK1 and AtTPK2 are biochemically redundant cytosolic proteins that are similarly expressed throughout different plant tissues. The essential nature of TPKs in plant metabolism is reflected in the observation that while single gene knockouts of either AtTPK1 or AtTPK2 were viable, the double mutant possessed a seedling lethal phenotype. HPLC analysis revealed the double mutant is nearly devoid of TPP and instead accumulates the precursor of the TPK reaction, free thiamin. These results suggest that TPK activity provides the sole mechanism by which exogenous and de novo derived thiamin is converted to the enzyme cofactor TPP.

摘要

硫胺素焦磷酸(TPP)是所有生物体生存所必需的一种酶辅因子。无论硫胺素是来源于外源还是通过从头合成,它都必须进行焦磷酸化才能激活辅因子。硫胺素焦磷酸激酶(TPK)催化植物和其他真核生物中游离硫胺素转化为TPP,并且在硫胺素辅因子激活过程中起核心作用。虽然在许多植物物种中都观察到了TPK活性,但到目前为止,尚未鉴定出相应的基因/蛋白质,也未对其在硫胺素代谢中的作用进行表征。在此,我们报告了拟南芥两个TPK基因AtTPK1和AtTPK2的功能鉴定以及相应蛋白质的酶学特性。AtTPK1和AtTPK2是具有生化冗余性的胞质蛋白,在不同植物组织中的表达情况相似。TPK在植物代谢中的重要性体现在以下观察结果中:虽然AtTPK1或AtTPK2的单基因敲除植株能够存活,但双突变体具有幼苗致死表型。高效液相色谱分析表明,双突变体几乎不含TPP,而是积累了TPK反应的前体——游离硫胺素。这些结果表明,TPK活性是外源和从头合成的硫胺素转化为酶辅因子TPP的唯一机制。

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