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Characterization of a Plastoglobule-Localized SOUL4 Heme-Binding Protein in Arabidopsis thaliana

机译:<斜视>拟南芥中血管石斛局部灵魂4血红素结合蛋白的表征

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Heme plays an active role in primary plant metabolic pathways as well as in stress signaling. In this study, we characterized the predicted heme-binding protein SOUL4. Proteomics evidence suggests that SOUL4 is a component of Arabidopsis plastoglobules (PGs, chloroplast lipid droplets). SOUL4 contains heme-binding motifs and the recombinant protein is shown here to bind heme in vitro . Fluorescence-tagged SOUL4 colocalized with the specific PG marker Fibrillin1A (FBN1A) in transiently transformed Nicotiana benthamiana leaves. In addition, SOUL4 cofractionated with another PG marker Fibrillin2 (FBN2) in sucrose gradient ultracentrifugation experiments. In vitro kinase experiments revealed that SOUL4 is phosphorylated by a yet unknown chloroplast protein kinase. Our data demonstrate that SOUL4 is a bona fide PG protein and may function in heme-buffering in the chloroplast.
机译:血红素在原发性植物代谢途径以及应力信号中发挥积极作用。在这项研究中,我们表征了预测的血红素结合蛋白灵魂4。蛋白质组学的证据表明Soul4是拟南芥血浆(PGS,叶绿体液滴)的组成部分。 Soul4含有血红结合基序,这里显示重组蛋白质以在体外结合血红素。荧光标记的SOUL4与特定的PG标记纤维蛋白1A(FBN1A)分成瞬时转化的NICOTIANA Benthamiana叶子。此外,在蔗糖梯度超速离心实验中,Soul4与另一PG标记纤维蛋白2(FBN2)相结合。体外激酶实验表明,SOUL4通过尚不清楚的叶绿体蛋白激酶磷酸化。我们的数据表明SOUL4是真绒PG蛋白,可以在叶绿体中的血红液缓冲中起作用。

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