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Early steps in isoprenoid biosynthesis:Multilevel regulation of the supply of common precursors in plant cells

机译:异戊二烯生物合成中的早期步骤:多级调节植物细胞中常见前体的调节

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Isoprenoids are produced in all organisms but are especially abundant and diverse in plants.Two separate pathways operate in plant cells to synthesize prenyl diphosphate precursors common to all isoprenoids.Cytosolic and mitochondrial precursors are produced by the mevalonic acid (MVA) pathway whereas the recently discovered methylerythritol phosphate (MEP) pathway is located in plastids.However,both pathways may participate in the synthesis of at least some isoprenoids under certain circumstances.Although genes encoding all the enzymes from both pathways have already been cloned,little is known about the regulatory mechanisms that control the supply of isoprenoid precursors.Genetic approaches are providing valuable information on the regulation of both pathways.Thus,recent data from overexpression experiments in transgenic plants show that several enzymes share control over the metabolic flux through the MEP pathway,whereas a single regulatory step has been proposed for the MVA pathway.Identification of Arabidopsis thaliana mutants that are resistant to the inhibition of the MVA and the MEP pathways is a promising approach to uncover mechanisms involved in the crosstalk between pathways.The characterization of some of these mutants impaired in light perception and signaling has recently provided genetic evidence for a role of light as a key factor to modulate the availability of isoprenoid precursors in Arabidopsis seedlings.The picture emerging from recent data supports that a complex regulatory network appears to be at work in plant cells to ensure the supply of isoprenoid precursors when needed.
机译:异戊二烯在所有生物中产生,但在植物中特别丰富多样。植物细胞中的不同途径在植物细胞中操作,合成所有异戊二烯类别共同的戊基二磷酸前体。含有甲戊酸(MVA)途径产生的戊酯和线粒体前体,而最近发现甲醇培养醇磷酸盐(MEP)途径位于Plastids中。然而,在某些情况下,两种途径可以参与至少一些异戊二烯的合成。虽然已经克隆了从两种途径的所有酶编码所有酶的基因,但是关于调节机制很少控制异戊二烯前体的供应。必读方法是关于途径调节的有价值的信息.Thus,转基因植物中过表达实验的最新数据表明,几种酶通过MEP途径对代谢通量进行控制,而单一的调节已经为MVA路径提出了步骤Y.拟南芥的鉴定性抗MVA和MEP途径的抑制性是一种有希望的方法,可以揭示涉及伴随串行之间的串扰的机制。最近提供了在光感知和信号传导中受损的一些突变体的表征光的遗传证据作为调节拟南芥幼苗中异戊二烯前兆的关键因素的关键因素。从最近的数据出现的图片支持复杂的监管网络似乎在植物细胞中的工作,以确保在植物细胞中的工作需要。

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