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The Gene for the Ribulose-15-Bisphosphate Carboxylase/Oxygenase (Rubisco) Small Subunit Relocated to the Plastid Genome of Tobacco Directs the Synthesis of Small Subunits That Assemble into Rubisco

机译:核糖-15-二磷酸羧化酶/加氧酶(Rubisco)小亚基的基因转移到烟草的质子基因组指导组装到Rubisco的小亚基的合成。

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摘要

To assess the extent to which a nuclear gene for a chloroplast protein retained the ability to be expressed in its presumed preendosymbiotic location, we relocated the RbcS gene for the small subunit of ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) to the tobacco plastid genome. Plastid RbcS transgenes, both with and without the transit presequence, were equipped with 3′ hepta-histidine–encoding sequences and psbA promoter and terminator elements. Both transgenes were transcribed abundantly, and their products were translated into small subunit polypeptides that folded correctly and assembled into the Rubisco hexadecamer. When present, either the transit presequence was not translated or the transit peptide was cleaved completely. After assembly into Rubisco, transplastomic small subunits were relatively stable. The hepta-histidine sequence fused to the C terminus of a single small subunit was sufficient for isolation of the whole Rubisco hexadecamer by Ni2+ chelation. Small subunits produced by the plastid transgenes were not abundant, never exceeding >∼1% of the total small subunits, and they differed from cytoplasmically synthesized small subunits in their N-terminal modifications. The scarcity of transplastomic small subunits might be caused by inefficient translation or assembly.
机译:为了评估叶绿体蛋白的核基因在其假定的内共生素定位中保留表达能力的程度,我们将核糖-1,5-双磷酸羧化酶/加氧酶(Rubisco)的小亚基的RbcS基因重新定位到烟草质体基因组。带有和不带有转运序列的Plastid RbcS转基因都配备了3'七组​​氨酸编码序列以及psbA启动子和终止子元件。两种转基因都被大量转录,其产物被翻译成小的亚基多肽,可以正确折叠并组装成Rubisco hexadecamer。当存在时,转运前序不被翻译或转运肽被完全切割。组装成Rubisco后,转质体小亚基相对稳定。与一个小亚基的C末端融合的七组氨酸序列足以通过Ni 2 + 螯合分离整个Rubisco hexadecamer。由质体转基因产生的小亚基并不丰富,从未超过总小亚基的>〜 1%,并且它们在细胞的N末端修饰方面不同于细胞质合成的小亚基。转质体小亚基的缺乏可能是由于翻译或装配效率低下引起的。

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