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绿色还是红色:是什么阻碍了四吡咯途径中的物质流动?

Green or red: what stops the traffic in the tetrapyrrole pathway?

作者信息

Cornah Johanna E, Terry Matthew J, Smith Alison G

机构信息

Institute of Cell and Molecular Biology, University of Edinburgh, Kings Buildings, Mayfield Road, Edinburgh, Scotland, UK EH9 3JR.

出版信息

Trends Plant Sci. 2003 May;8(5):224-30. doi: 10.1016/S1360-1385(03)00064-5.

Abstract

Regulation of tetrapyrrole biosynthesis is crucial to plant metabolism. The two pivotal control points are formation of the initial precursor, 5-aminolaevulinic acid (ALA), and the metal-ion insertion step: chelation of Fe(2+) into protoporphyrin IX leads to haem and phytochromobilin, whereas insertion of Mg(2+) is the first step to chlorophyll. Recent studies with mutants and transgenic plants have demonstrated that perturbation of the branch point affects ALA formation. Moreover, one of the signals that controls the expression of genes for nuclear-encoded chloroplast proteins has been shown to be Mg-protoporphyrin-IX. Here, we discuss the regulation of branch-point flux and the relative contributions of the haem and chlorophyll branches to the regulation of ALA synthesis and thus to flow through the tetrapyrrole pathway.

摘要

四吡咯生物合成的调控对植物代谢至关重要。两个关键控制点是初始前体5-氨基乙酰丙酸(ALA)的形成以及金属离子插入步骤:Fe(2+)螯合到原卟啉IX中会生成血红素和藻胆色素,而Mg(2+)的插入是叶绿素合成的第一步。最近对突变体和转基因植物的研究表明,分支点的扰动会影响ALA的形成。此外,已证明控制核编码叶绿体蛋白基因表达的信号之一是镁原卟啉IX。在这里,我们讨论分支点通量的调控以及血红素和叶绿素分支对ALA合成调控进而对四吡咯途径通量的相对贡献。

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