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硫胺素需求蛋白2参与硫胺素二磷酸的生物合成和稳态维持。

THIAMIN REQUIRING2 is involved in thiamin diphosphate biosynthesis and homeostasis.

作者信息

Hsieh Wei-Yu, Wang Hsin-Mei, Chung Yi-Hsin, Lee Kim-Teng, Liao Hong-Sheng, Hsieh Ming-Hsiun

机构信息

Institute of Plant and Microbial Biology, Academia Sinica, Taipei, 11529, Taiwan.

Molecular and Biological Agricultural Sciences, Taiwan International Graduate Program, Academia Sinica, Taipei, 11529, Taiwan.

出版信息

Plant J. 2022 Sep;111(5):1383-1396. doi: 10.1111/tpj.15895. Epub 2022 Jul 18.

Abstract

The THIAMIN REQUIRING2 (TH2) protein comprising a mitochondrial targeting peptide followed by a transcription enhancement A and a haloacid dehalogenase domain is a thiamin monophosphate (TMP) phosphatase in the vitamin B1 biosynthetic pathway. The Arabidopsis th2-3 T-DNA insertion mutant was chlorotic and deficient in thiamin diphosphate (TDP). Complementation assays confirmed that haloacid dehalogenase domain alone was sufficient to rescue the th2-3 mutant. In pTH2:TH2-GFP/th2-3 complemented plants, the TH2-GFP was localized to the cytosol, mitochondrion, and nucleus, indicating that the vitamin B1 biosynthetic pathway extended across multi-subcellular compartments. Engineered TH2-GFP localized to the cytosol, mitochondrion, nucleus, and chloroplast, could complement the th2 mutant. Together, these results highlight the importance of intracellular TMP and thiamin trafficking in vitamin B1 biosynthesis. In an attempt to enhance the production of thiamin, we created various constructs to overexpress TH2-GFP in the cytosol, mitochondrion, chloroplast, and nucleus. Unexpectedly, overexpressing TH2-GFP resulted in an increase rather than a decrease in TMP. While studies on th2 mutants support TH2 as a TMP phosphatase, analyses of TH2-GFP overexpression lines implicating TH2 may also function as a TDP phosphatase in planta. We propose a working model that the TMP/TDP phosphatase activity of TH2 connects TMP, thiamin, and TDP into a metabolic cycle. The TMP phosphatase activity of TH2 is required for TDP biosynthesis, and the TDP phosphatase activity of TH2 may modulate TDP homeostasis in Arabidopsis.

摘要

硫胺素需求蛋白2(TH2)由一个线粒体靶向肽、一个转录增强因子A和一个卤代酸脱卤酶结构域组成,是维生素B1生物合成途径中的硫胺素单磷酸(TMP)磷酸酶。拟南芥th2 - 3 T-DNA插入突变体出现黄化现象且硫胺素二磷酸(TDP)缺乏。互补试验证实,单独的卤代酸脱卤酶结构域足以拯救th2 - 3突变体。在pTH2:TH2-GFP/th2 - 3互补植株中,TH2-GFP定位于细胞质、线粒体和细胞核,表明维生素B1生物合成途径跨越多个亚细胞区室。定位于细胞质、线粒体、细胞核和叶绿体的工程化TH2-GFP能够互补th2突变体。这些结果共同突出了细胞内TMP和硫胺素转运在维生素B1生物合成中的重要性。为了提高硫胺素的产量,我们构建了各种载体,使TH2-GFP在细胞质、线粒体、叶绿体和细胞核中过表达。出乎意料的是,过表达TH2-GFP导致TMP增加而非减少。虽然对th2突变体的研究支持TH2作为TMP磷酸酶,但对TH2-GFP过表达株系的分析表明,TH2在植物中可能也作为TDP磷酸酶发挥作用。我们提出一个工作模型,即TH2的TMP/TDP磷酸酶活性将TMP、硫胺素和TDP连接成一个代谢循环。TH2的TMP磷酸酶活性是TDP生物合成所必需的,而TH2的TDP磷酸酶活性可能调节拟南芥中的TDP稳态。

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