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Chloroplast biogenesis: The use of mutants to study the etioplast-chloroplast transition

机译:叶绿体生物发生:利用突变体研究质体-叶绿体过渡

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In angiosperm plants, the etioplast-chloroplast transition is light-dependent. A key factor in this process is the protochlorophyllide oxidoreductase A (PORA), which catalyzes the light-induced reduction of protochlorophyllide to chlorophyllide. The import pathway of the precursor protein prePORA into chloroplasts was analyzed in vivo and in vitro by using homozygous loss-of-function mutants in genes coding for chlorophyllide a oxygenase (CAO) or for members of the outer-envelope solute-channel protein family of 16 kDa (OEP16), both of which have been implied to be key factors for the import of prePORA. Our in vivo analyses show that cao or oep16 mutants contain a normally structured prolamellar body that contains the protochlorophyllide holochrome. Furthermore, etioplasts from cao and oep16 mutants contain PORA protein as found by mass spectrometry. Our data demonstrate that both CAO and OEP16 are dispensable for chloroplast biogenesis and play no central role in the import of prePORA in vivo and in vitro as further indicated by protein import studies.
机译:在被子植物中,质体-叶绿体过渡是光依赖性的。该过程中的关键因素是原叶绿素原体氧化还原酶A(PORA),它催化光诱导的原叶绿素原体还原为叶绿素内酯。前体蛋白prePORA进入叶绿体的导入途径在体内和体外进行了分析,方法是在编码叶绿素加氧酶(CAO)或外膜溶质通道蛋白家族成员的基因中使用纯合功能缺失突变体16 kDa(OEP16),这两者均暗示是进口prePORA的关键因素。我们的体内分析表明,cao或oep16突变体包含一个正常结构的层状体,其中包含原叶绿素内酯全色。此外,cao和oep16突变体的原生质体含有通过质谱法发现的PORA蛋白。我们的数据表明,CAO和OEP16都是叶绿体生物发生中不可或缺的,并且在蛋白进口研究中进一步表明在体内和体外prePORA的导入中没有中心作用。

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