Department of Physics of Complex Systems, Weizmann Institute of Science, Rehovot 76100, Israel.
Department of Biology Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Nucleic Acids Res. 2023 Apr 24;51(7):3116-3129. doi: 10.1093/nar/gkad068.
Integrative and conjugative elements (ICEs) are mobile genetic elements that can transfer by conjugation to recipient cells. Some ICEs integrate into a unique site in the genome of their hosts. We studied quantitatively the process by which an ICE searches for its unique integration site in the Bacillus subtilis chromosome. We followed the motion of both ICEBs1 and the chromosomal integration site in real time within individual cells. ICEBs1 exhibited a wide spectrum of dynamical behaviors, ranging from rapid sub-diffusive displacements crisscrossing the cell, to kinetically trapped states. The chromosomal integration site moved sub-diffusively and exhibited pronounced dynamical asymmetry between longitudinal and transversal motions, highlighting the role of chromosomal structure and the heterogeneity of the bacterial interior in the search. The successful search for and subsequent recombination into the integration site is a key step in the acquisition of integrating mobile genetic elements. Our findings provide new insights into intracellular transport processes involving large DNA molecules.
整合子-接合元件(ICEs)是一种可通过接合转移至受体细胞的移动遗传元件。有些 ICEs 整合到其宿主基因组中的独特位点。我们定量研究了 ICE 搜索其在枯草芽孢杆菌染色体上独特整合位点的过程。我们在单个细胞内实时跟踪 ICEBs1 和染色体整合位点的运动。ICEBs1 表现出广泛的动力学行为,从快速亚扩散位移跨越细胞,到动力学捕获状态。染色体整合位点以亚扩散方式移动,并表现出纵向和横向运动之间明显的动力学不对称,突出了染色体结构和细菌内部异质性在搜索中的作用。成功搜索并随后重组到整合位点是获得整合移动遗传元件的关键步骤。我们的发现为涉及大 DNA 分子的细胞内运输过程提供了新的见解。