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A Nucleus-Encoded Chloroplast Phosphoprotein Governs Expression of the Photosystem I Subunit PsaC in Chlamydomonas reinhardtii

机译:核编码叶绿体磷酸蛋白控制莱茵衣藻光系统I亚基PsaC的表达。

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摘要

The nucleo-cytoplasmic compartment exerts anterograde control on chloroplast gene expression through numerous proteins that intervene at posttranscriptional steps. Here, we show that the maturation of psaC mutant (mac1) of Chlamydomonas reinhardtii is defective in photosystem I and fails to accumulate psaC mRNA. The MAC1 locus encodes a member of the Half-A-Tetratricopeptide (HAT) family of super-helical repeat proteins, some of which are involved in RNA transactions. The Mac1 protein localizes to the chloroplast in the soluble fraction. MAC1 acts through the 5' untranslated region of psaC transcripts and is required for their stability. Small RNAs that map to the 5'end of psaC RNA in the wild type but not in the mac1 mutant are inferred to represent footprints of MAC1-dependent protein binding, and Mac1 expressed in bacteria binds RNA in vitro. A coordinate response to iron deficiency, which leads to dismantling of the photosynthetic electron transfer chain and in particular of photosystem I, also causes a decrease of Mac1. Overexpression of Mac1 leads to a parallel increase in psaC mRNA but not in PsaC protein, suggesting that Mac1 may be limiting for psaC mRNA accumulation but that other processes regulate protein accumulation. Furthermore, Mac 1 is differentially phosphorylated in response to iron availability and to conditions that alter the redox balance of the electron transfer chain.
机译:核质区室通过转录后步骤介入的多种蛋白质对叶绿体基因表达进行顺行控制。在这里,我们显示莱茵衣藻的psaC突变体(mac1)的成熟在光系统I中是有缺陷的,并且无法积累psaC mRNA。 MAC1基因座编码超螺旋重复蛋白Half-A-Tetratricopeptide(HAT)家族的成员,其中一些与RNA交易有关。 Mac1蛋白在可溶性部分中定位于叶绿体。 MAC1通过psaC转录物的5'非翻译区起作用,并且是其稳定性所必需的。推断在野生型中而不是在mac1突变体中映射到psaC RNA 5'末端的小RNA代表了MAC1依赖性蛋白结合的足迹,并且细菌中表达的Mac1在体外结合RNA。对铁缺乏的协调响应,这导致光合电子转移链,尤其是光系统I的拆除,也导致Mac1减少。 Mac1的过表达会导致psaC mRNA的平行增加,但不会导致PsaC蛋白的平行增加,这表明Mac1可能会限制psaC mRNA的积累,但其他过程会调节蛋白质的积累。此外,响应于铁的可用性和改变电子转移链的氧化还原平衡的条件,Mac 1被差异磷酸化。

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