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Parasite plastids: maintenance and functions

机译:寄生虫质体:维护和功能

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Malaria and related parasites retain a vestigial, but biosynthetically active, plastic. organelle acquired far back in evolution from a red algal cell. The organelle appears to be essential for parasite transmission from cell to cell and carries the smallest known plastic. genome. Why has this genome been retained? The genes it carries seem to be dedicated to the expression of just two 'housekeeping' genes. We speculate that one of these, called ycf24 in plants and sufB in bacteria, is tied to an essential 'dark' reaction of the organelle-fatty acid biosynthesis. 'Ball-park' clues to the function of bacterial suf genes have emerged only recently and point to the areas of iron homeostasis, [Fe-S] cluster formation and oxidative stress. We present experimental evidence for a physical interaction between SufB and its putative partner SufC (ycf16). In both malaria and plants, SufC is encoded in the nucleus and specifies an ATPase that is imported into the plastid. [References: 59]
机译:疟疾和相关寄生虫保留着残留的但具有生物合成活性的塑料。细胞器从红藻细胞进化而来很久。细胞器似乎是寄生虫从一个细胞到另一个细胞传播的关键,并且携带着最小的已知塑料。基因组。为什么保留了该基因组?它携带的基因似乎仅用于表达两个“管家”基因。我们推测其中之一,在植物中称为ycf24,在细菌中称为sufB,与细胞器-脂肪酸生物合成的基本“暗”反应有关。关于细菌suf基因功能的“球公园”线索直到最近才出现,并指向铁稳态,[Fe-S]团簇形成和氧化应激等领域。我们提供了SufB及其推定的伙伴SufC(ycf16)之间的物理相互作用的实验证据。在疟疾和植物中,SufC都在细胞核中编码,并指定了导入质体的ATPase。 [参考:59]

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