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首页> 外文期刊>The Plant Cell >A Role for TIC55 as a Hydroxylase of Phyllobilins, the Products of Chlorophyll Breakdown during Plant Senescence
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A Role for TIC55 as a Hydroxylase of Phyllobilins, the Products of Chlorophyll Breakdown during Plant Senescence

机译:TiC55作为Phyllobilins的羟化酶的作用,植物衰老期间的叶绿素分解产物

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摘要

Chlorophyll degradation is the most obvious hallmark of leaf senescence. Phyllobilins, linear tetrapyrroles that are derived from opening of the chlorin macrocycle by the Rieske-type oxygenase PHEOPHORBIDE a OXYGENASE (PAO), are the end products of chlorophyll degradation. Phyllobilins carry defined modifications at several peripheral positions within the tetrapyrrole backbone. While most of these modifications are species-specific, hydroxylation at the C3(2) position is commonly found in all species analyzed to date. We demonstrate that this hydroxylation occurs in senescent chloroplasts of Arabidopsis thaliana. Using bell pepper (Capsicum annuum) chromoplasts, we establish that phyllobilin hydroxylation is catalyzed by a membrane-bound, molecular oxygen-dependent, and ferredoxin-dependent activity. As these features resemble the requirements of PAO, we considered membrane-bound Rieske-type oxygenases as potential candidates. Analysis of mutants of the two Arabidopsis Rieske-type oxygenases (besides PAO) uncovered that phyllobilin hydroxylation depends on TRANSLOCON AT THE INNER CHLOROPLAST ENVELOPE55 (TIC55). Our work demonstrates a catalytic activity for TIC55, which in the past has been considered as a redox sensor of protein import into plastids. Given the wide evolutionary distribution of both PAO and TIC55, we consider that chlorophyll degradation likely coevolved with land plants.
机译:叶绿素降解是叶片衰老最明显的标志。 Phyllobilins,由Rieske型氧氨基磷酸氧酶(PAO)开口氯宏循环的线性四吡咯,是氧基酶(PAO)的最终产物。 Phyllobilins在四吡咯主干内的几个外围位置进行定义的修饰。虽然大多数这些修饰是特异性的,但在分析到日期分析的所有物种中,常见于C3(2)的羟基化。我们证明这种羟基化发生在拟南芥的衰老叶片中。使用甜椒(辣椒囊)染色体,我们建立了羟基硅蛋白羟基化通过膜结合,分子氧依赖性和富勒沙霉素依赖性活性催化。随着这些特征类似于PAO的要求,我们认为膜结合的RIESKE型氧气酶作为潜在的候选者。拟南芥型氧化酶突变体的分析(除了PAO)外发现,羟基硅蛋白羟基化取决于内叶绿素封套55(TiC55)的译。我们的工作证明了TIC55的催化活性,过去已被认为是蛋白质进口蛋白质进口的氧化还原传感器。鉴于PAO和TIC55的广泛进化分布,我们认为叶绿素降解可能与土地植物共束。

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    《The Plant Cell》 |2016年第10期|共18页
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  • 正文语种 eng
  • 中图分类 植物细胞学;
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