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Interactions of PatA with the Divisome during Heterocyst Differentiation in Anabaena

机译:Anabaena杂物分化期间PATA与二聚物的相互作用

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The Anabaena organismic unit is a filament of communicating cells. Under conditions of nitrogen scarcity, some cells along the filament differentiate into heterocysts, which are specialized in the fixation of atmospheric N 2 and provide the vegetative cells with N 2 fixation products. At a certain stage, the differentiation process becomes irreversible, so that even when nitrogen is replenished, no return to the vegetative cell state takes place, possibly as a consequence of loss of cell division capacity. Upon N-stepdown, midcell FtsZ-rings were detected in vegetative cells, but not in differentiating cells, and this was also the case for ZipN, an essential protein that participates in FtsZ tethering to the cytoplasmic membrane and divisome organization. Later, expression of ftsZ was arrested in mature heterocysts. PatA is a protein required for the differentiation of intercalary heterocysts in Anabaena . The expression level of the patA gene was increased in differentiating cells, and a mutant strain lacking PatA exhibited enhanced FtsZ-rings. PatA was capable of direct interactions with ZipN and SepF, another essential component of the Anabaena Z-ring. Thus, PatA appears to promote inhibition of cell division in the differentiating cells, allowing progress of the differentiation process. PatA, which in mature heterocysts was detected at the cell poles, could interact also with SepJ, a protein involved in production of the septal junctions that provide cell-cell adhesion and intercellular communication in the filament, hinting at a further role of PatA in the formation or stability of the intercellular structures that are at the basis of the multicellular character of Anabaena . IMPORTANCE Anabaena is a cyanobacterial model that represents an ancient and simple form of biological multicellularity. The Anabaena organism is a filament of cohesive and communicating cells that can include cells specialized in different tasks. Thus, under conditions of nitrogen scarcity, certain cells of the filament differentiate into heterocysts, which fix atmospheric nitrogen and provide organic nitrogen to the rest of cells, which, in turn, provide heterocysts with organic carbon. Heterocyst differentiation involves extensive morphological, biochemical, and genetic changes, becoming irreversible at a certain stage. We studied the regulation during heterocyst differentiation of several essential components of the Anabaena cell division machinery and found that protein PatA, which is required for differentiation and is induced in differentiating cells, interacts with essential cell division factors and destabilizes the cell division complex. This suggests a mechanism for establishment of commitment to differentiation by inhibition of cell division.
机译:Anabaena有机体单位是通信细胞的灯丝。在氮稀释条件下,沿着长丝的一些细胞分化为杂物,其专门用于大气压的固定,并提供N 2固定产品的营养细胞。在某个阶段,分化过程变得不可逆转,因此即使补充氮气,也不会返回到营养细胞状态,可能是由于细胞划分能力损失的结果。在N降下,在营养细胞中检测到Midcell FTSZ环,但在植物细胞中检测到,并且Zipn的情况也是Zipn的情况,该必要蛋白质参与FTSZ培养物与细胞质膜和多数组织。后来,FTSZ的表达在成熟杂物中被捕。 Pata是蛋白质所需的蛋白质,用于在Anabaena中的杂项杂物。在差异细胞中增加了PATA基因的表达水平,缺乏PATA的突变菌株表现出增强的FTSZ环。 Pata能够与Zipn和Sepf相互直接,Anabaena Z-Ring的另一个基本组成部分。因此,Pata似乎促进抑制区分细胞中细胞分裂,允许分化过程的进展。在细胞杆上检测到成熟杂物中的PATA,可以与SEPJ相互作用,该蛋白质参与生产细胞 - 细胞粘附和细胞间通信的丝细胞,暗示在PATA的进一步作用基于Anabaena的多细胞性质的细胞间结构的形成或稳定性。重要性Anabaena是一种蓝藻模型,代表了一种古老而简单的生物多晶体形式。 Anabaena有机体是一种粘性和沟通细胞的细胞,可包括专门从事不同任务的细胞。因此,在氮稀释条件下,细丝的某些细胞分化成杂环,其固定大气氮,并为其余细胞提供有机氮,反过来提供有机碳的杂环。杂物分化涉及广泛的形态学,生化和遗传变化,在某一阶段变得不可逆转。我们研究了杂物阴性杂交分化的杂物分化期间的调节,发现蛋白质PATA在分化细胞中所需的分化并诱导,与必需细胞分裂因子相互作用,并使细胞分裂复合物变得破坏稳定。这表明通过抑制细胞划分来建立对分化的承诺的机制。

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