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A nucleus-encoded chloroplast protein regulated by iron availability governs expression of the photosystem I subunit PsaA in Chlamydomonas reinhardtii

机译:铁可用性调节的核编码叶绿体蛋白控制着莱茵衣藻光系统I亚基PsaA的表达。

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摘要

The biogenesis of the photosynthetic electron transfer chain in the thylakoid membranes requires the concerted expression of genes in the chloroplast and the nucleus. Chloroplast gene expression is subjected to anterograde control by a battery of nucleus-encoded proteins that are imported in the chloroplast, where they mostly intervene at posttranscriptional steps. Using a new genetic screen, we identify a nuclear mutant that is required for expression of the PsaA subunit of photosystem I (PSI) in the chloroplast of Chlamydomonas reinhardtii. This mutant is affected in the stability and translation of psaA messenger RNA. The corresponding gene, TRANSLATION OF psaA1 (TAA1), encodes a large protein with two domains that are thought to mediate RNA binding: an array of octatricopeptide repeats (OPR) and an RNA-binding domain abundant in apicomplexans (RAP) domain. We show that as expected for its function, TAA1 is localized in the chloroplast. It was previously shown that when mixotrophic cultures of C. reinhardtii (which use both photosynthesis and mitochondrial respiration for growth) are shifted to conditions of iron limitation, there is a strong decrease in the accumulation of PSI and that this is rapidly reversed when iron is resupplied. Under these conditions, TAA1 protein is also down-regulated through a posttranscriptional mechanism and rapidly reaccumulates when iron is restored. These observations reveal a concerted regulation of PSI and of TAA1 in response to iron availability.
机译:类囊体膜中光合作用电子转移链的生物发生需要基因在叶绿体和细胞核中的一致表达。叶绿体基因的表达受到一系列核编码蛋白的顺行控制,这些蛋白被导入叶绿体中,在转录后的步骤中,它们主要进行干预。使用新的遗传筛选,我们确定了莱茵衣藻的叶绿体中表达光系统I(PSI)的PsaA亚基所需的核突变体。该突变体在psaA信使RNA的稳定性和翻译中受到影响。相应的基因,psaA1的翻译(TAA1),编码具有两个介导RNA结合的结构域的大蛋白:八碳肽重复序列(OPR)阵列和在蜂复合体(RAP)域中丰富的RNA结合结构域。我们显示,正如预期的功能一样,TAA1位于叶绿体中。以前的研究表明,当莱茵衣藻的混合营养培养(同时利用光合作用和线粒体呼吸促进生长)转移到铁限制条件下时,PSI的积累会大大降低,而当铁为铁时,PSI的积累会迅速逆转。重新供应。在这些条件下,TAA1蛋白也通过转录后机制下调,并在铁被还原后迅速重新积累。这些观察结果揭示了响应铁可用性的PSI和TAA1的协调调控。

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