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首页> 外文期刊>The Plant Cell >GUN4-Porphyrin Complexes Bind the ChlH/GUN5 Subunit of Mg-Chelatase and Promote Chlorophyll Biosynthesis in Arabidopsis
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GUN4-Porphyrin Complexes Bind the ChlH/GUN5 Subunit of Mg-Chelatase and Promote Chlorophyll Biosynthesis in Arabidopsis

机译:GUN4-卟啉配合物结合镁螯合酶的ChlH / GUN5亚基并促进拟南芥中的叶绿素生物合成。

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The GENOMES UNCOUPLED4 (GUN4) protein stimulates chlorophyll biosynthesis by activating Mg-chelatase, the enzyme that commits protoporphyrin IX to chlorophyll biosynthesis. This stimulation depends on GUN4 binding the ChlH subunit of Mg-chelatase and the porphyrin substrate and product of Mg-chelatase. After binding porphyrins, GUN4 associates more stably with chloroplast membranes and was proposed to promote interactions between ChlH and chloroplast membranes-the site of Mg-chelatase activity. GUN4 was also proposed to attenuate the production of reactive oxygen species (ROS) by binding and shielding light-exposed porphyrins from collisions with O-2. To test these proposals, we first engineered Arabidopsis thaliana plants that express only porphyrin binding-deficient forms of GUN4. Using these transgenic plants and particular mutants, we found that the porphyrin binding activity of GUN4 and Mg-chelatase contribute to the accumulation of chlorophyll, GUN4, and Mg-chelatase subunits. Also, we found that the porphyrin binding activity of GUN4 and Mg-chelatase affect the associations of GUN4 and ChlH with chloroplast membranes and have various effects on the expression of ROS-inducible genes. Based on our findings, we conclude that ChlH and GUN4 use distinct mechanisms to associate with chloroplast membranes and that mutant alleles of GUN4 and Mg-chelatase genes cause sensitivity to intense light by a mechanism that is potentially complex.
机译:GENOMES UNCOUPLED4(GUN4)蛋白通过激活Mg-螯合酶来刺激叶绿素的生物合成,Mg-螯合酶使原卟啉IX参与叶绿素的生物合成。这种刺激取决于GUN4结合Mg-螯合酶的ChlH亚基以及Mg-螯合酶的卟啉底物和产物。结合卟啉后,GUN4与叶绿体膜更稳定地缔合,并被提议促进ChlH和叶绿体膜之间的相互作用-Mg-螯合酶活性的位点。还提出了GUN4通过结合和屏蔽曝光的卟啉与O-2的碰撞来减弱活性氧(ROS)的产生。为了测试这些建议,我们首先设计了仅表达卟啉结合缺陷型GUN4的拟南芥植物。使用这些转基因植物和特定的突变体,我们发现GUN4和Mg-螯合酶的卟啉结合活性有助于叶绿素,GUN4和Mg-螯合酶亚基的积累。另外,我们发现GUN4和Mg-螯合酶的卟啉结合活性影响GUN4和ChlH与叶绿体膜的缔合,并且对ROS诱导型基因的表达具有多种影响。根据我们的发现,我们得出结论,ChlH和GUN4使用不同的机制与叶绿体膜相关联,并且GUN4和Mg-螯合酶基因的突变等位基因通过可能复杂的机制对强光敏感。

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