首页> 美国卫生研究院文献>PLoS Genetics >Unique Function of the Bacterial Chromosome Segregation Machinery in Apically Growing Streptomyces - Targeting the Chromosome to New Hyphal Tubes and its Anchorage at the Tips
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Unique Function of the Bacterial Chromosome Segregation Machinery in Apically Growing Streptomyces - Targeting the Chromosome to New Hyphal Tubes and its Anchorage at the Tips

机译:细菌染色体分离机制在顶端生长的链霉菌中的独特功能-将染色体靶向新的菌丝管及其尖端固定

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摘要

The coordination of chromosome segregation with cell growth is fundamental to the proliferation of any organism. In most unicellular bacteria, chromosome segregation is strictly coordinated with cell division and involves ParA that moves the ParB nucleoprotein complexes bi- or unidirectionally toward the cell pole(s). However, the chromosome organization in multiploid, apically extending and branching Streptomyces hyphae challenges the known mechanisms of bacterial chromosome segregation. The complex Streptomyces life cycle involves two stages: vegetative growth and sporulation. In the latter stage, multiple cell divisions accompanied by chromosome compaction and ParAB assisted segregation turn multigenomic hyphal cell into a chain of unigenomic spores. However, the requirement for active chromosome segregation is unclear in the absence of canonical cell division during vegetative growth except in the process of branch formation. The mechanism by which chromosomes are targeted to new hyphae in streptomycete vegetative growth has remained unknown until now. Here, we address the question of whether active chromosome segregation occurs at this stage. Applied for the first time in Streptomyces, labelling of the chromosomal replication initiation region (oriC) and time-lapse microscopy, revealed that in vegetative hyphae every copy of the chromosome is complexed with ParB, whereas ParA, through interaction with the apical protein complex (polarisome), tightly anchors only one chromosome at the hyphal tip. The anchor is maintained during replication, when ParA captures one of the daughter oriCs. During spore germination and branching, ParA targets one of the multiple chromosomal copies to the new hyphal tip, enabling efficient elongation of hyphal tube. Thus, our studies reveal a novel role for ParAB proteins during hyphal tip establishment and extension.
机译:染色体分离与细胞生长的协调是任何生物体增殖的基础。在大多数单细胞细菌中,染色体的分离与细胞分裂严格协调,并涉及ParA,该ParA使ParB核蛋白复合物双向或单向移向细胞极。然而,多倍体的染色体组织,在根尖延伸和分支的菌丝菌丝挑战了细菌染色体分离的已知机制。链霉菌的复杂生命周期涉及两个阶段:营养生长和孢子形成。在后期阶段,伴随染色体紧缩和ParAB辅助分离的多个细胞分裂将多基因组菌丝细胞变成单基因组孢子链。但是,在营养生长过程中,除了在分支形成过程中,没有规范的细胞分裂外,对于主动染色体分离的要求尚不清楚。迄今为止,将染色体靶向链霉菌营养生长中新菌丝的机制尚不清楚。在这里,我们解决在这个阶段是否发生主动染色体分离的问题。首次在链霉菌中应用,对染色体复制起始区(oriC)和延时显微镜进行了标记,发现在营养菌丝中,染色体的每个副本都与ParB形成复合体,而ParA通过与顶端蛋白复合体的相互作用(极体),仅将一条染色体紧紧固定在菌丝尖端。当ParA捕获子oriC之一时,将在复制过程中保留锚。在孢子萌发和分支过程中,ParA将多个染色体拷贝之一靶向新的菌丝尖端,从而使菌丝管有效伸长。因此,我们的研究揭示了ParAB蛋白在菌丝尖端的建立和延伸过程中的新作用。

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