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A homologue of the bacterial cell division site-determining factor MinD mediates placement of the chloroplast division apparatus

机译:细菌细胞分裂位点决定因子MinD的同源物介导叶绿体分裂装置的放置

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摘要

Background: Chloroplast division in plant cells occurs by binary fission, yielding two daughter plastids of equal size. Previously, we reported that two Arabidopsis homologues of FtsZ, a bacterial protein that forms a cytokinetic ring during cell division, are essential for plastid division in plants, and may be involved in the formation of plastid-dividing rings on both the stromal and cytosolic surfaces of the chloroplast envelope membranes. In bacteria, positioning of the FtsZ ring at the center of the cell is mediated in part by the protein MinD, Here, we identified AtMinD1, an Arabidopsis homologue of MinD, and investigated whether positioning of the plastid-division apparatus at the plastid midpoint might involve a mechanism similar to that in bacteria. Results: Sequence analysis and in vitro chloroplast import experiments indicated that AtMinD1 contains a transit peptide that targets it to the chloroplast. Transgenic Arabidopsis plants with reduced AtMinD1 expression exhibited Variability in chloroplast size and number and asymmetrically constricted chloroplasts, strongly suggesting that the plastid-division machinery is misplaced. Overexpression of AtMinD1 inhibited chloroplast division. These phenotypes resemble those of bacterial mutants with altered minD expression. Conclusions: Placement of the plastid-division machinery at the organelle midpoint requires a plastid-targeted form of MinD. The results are consistent with a model whereby assembly of the division apparatus is initiated inside the chloroplast by the plastidic form of FtsZ, and suggest that positioning of the cytosolic components of the apparatus is specified by the position of the plastidic components. [References: 57]
机译:背景:植物细胞中的叶绿体分裂通过二元裂变发生,产生两个大小相等的子质体。以前,我们报道了FtsZ的两个拟南芥同源物,一种在细胞分裂过程中形成细胞动力学环的细菌蛋白,对于植物的质体分裂至关重要,并且可能参与基质和胞质表面质体分裂环的形成的叶绿体包膜。在细菌中,FtsZ环在细胞中心的定位部分地由蛋白质MinD介导。在这里,我们鉴定了MinD的拟南芥同源物AtMinD1,并研究了质体分裂装置在质体中点的定位是否可能涉及类似于细菌的机制。结果:序列分析和体外叶绿体导入实验表明,AtMinD1含有将其靶向叶绿体的转运肽。 AtMinD1表达降低的转基因拟南芥植物在叶绿体大小和数量上显示出变异性,并且叶绿体不对称收缩,强烈表明质体分裂机制错位了。 AtMinD1的过表达抑制叶绿体分裂。这些表型类似于具有改变的minD表达的细菌突变体的表型。结论:将质体分离机构放置在细胞器中点需要MinD的质体靶向形式。结果与模型相符,该模型通过FtsZ的质体形式在叶绿体内部组装分离装置,并表明该装置的胞质成分的位置由质体成分的位置确定。 [参考:57]

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