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SMC在新月柄杆菌中逐步排列染色体臂,但受到同向转录的拮抗。

SMC Progressively Aligns Chromosomal Arms in Caulobacter crescentus but Is Antagonized by Convergent Transcription.

作者信息

Tran Ngat T, Laub Michael T, Le Tung B K

机构信息

Department of Molecular Microbiology, John Innes Centre, Norwich NR4 7UH, UK, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139, USA; Howard Hughes Medical Institute, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Cell Rep. 2017 Aug 29;20(9):2057-2071. doi: 10.1016/j.celrep.2017.08.026.

Abstract

The structural maintenance of chromosomes (SMC) complex plays an important role in chromosome organization and segregation in most living organisms. In Caulobacter crescentus, SMC is required to align the left and the right arms of the chromosome that run in parallel down the long axis of the cell. However, the mechanism of SMC-mediated alignment of chromosomal arms remains elusive. Here, using genome-wide methods and microscopy of single cells, we show that Caulobacter SMC is recruited to the centromeric parS site and that SMC-mediated arm alignment depends on the chromosome-partitioning protein ParB. We provide evidence that SMC likely tethers the parS-proximal regions of the chromosomal arms together, promoting arm alignment. Furthermore, we show that highly transcribed genes near parS that are oriented against SMC translocation disrupt arm alignment, suggesting that head-on transcription interferes with SMC translocation. Our results demonstrate a tight interdependence of bacterial chromosome organization and global patterns of transcription.

摘要

染色体结构维持(SMC)复合体在大多数生物体的染色体组织和分离过程中发挥着重要作用。在新月柄杆菌中,SMC是使沿细胞长轴平行排列的染色体左臂和右臂对齐所必需的。然而,SMC介导的染色体臂对齐机制仍不清楚。在这里,我们使用全基因组方法和单细胞显微镜技术,表明新月柄杆菌SMC被招募到着丝粒parS位点,并且SMC介导的臂对齐依赖于染色体分区蛋白ParB。我们提供的证据表明,SMC可能将染色体臂的parS近端区域拴在一起,促进臂对齐。此外,我们表明,靠近parS且转录方向与SMC易位方向相反的高转录基因会破坏臂对齐,这表明正向转录会干扰SMC易位。我们的结果证明了细菌染色体组织与全局转录模式之间存在紧密的相互依赖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe00/5583512/f1768adac534/fx1.jpg

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