Mingorance Jesús, Tamames Javier, Vicente Miguel
Centro Nacional de Biotecnología, Consejo Superior de Investigaciones Científicas, Campus de Cantoblanco, C/Darwin 3, 28049 Madrid, Spain.
J Mol Recognit. 2004 Sep-Oct;17(5):481-7. doi: 10.1002/jmr.718.
The bacterial dcw cluster is a group of genes involved in cell division and peptidoglycan synthesis. Comparison of the cluster across several bacterial genomes shows that its gene content and its gene order are conserved in distant bacterial lineages and, moreover, that, being most conserved in rod-shaped bacteria, the degree of conservation relates to bacterial morphology. We propose a model in which the selective pressure to maintain the cluster arises from the need to efficiently coordinate the processes of elongation and septation in rod-shaped bacteria. Gene order in the dcw cluster would be conserved as a result of mechanisms comprising: (i) a limited amount of peptidoglycan precursors required both for septation and elongation of the wall; (ii) co-translational assembly of the protein complexes involved in cell division and in the synthesis of the peptidoglycan precursors; and (iii) alternation in the cellular localization of the assembled complexes to participate either in the synthesis of the septal peptidoglycan and division, or in the synthesis of the lateral wall. The name genomic channeling is proposed for this model as it involves a genomic arrangement that could facilitate the assembly of specific protein complexes and their subsequent conveyance to specific locations in the crowded cytoplasm and the envelope.
细菌的dcw基因簇是一组参与细胞分裂和肽聚糖合成的基因。对多个细菌基因组中的该基因簇进行比较表明,其基因组成和基因顺序在亲缘关系较远的细菌谱系中是保守的,而且,由于在杆状细菌中最为保守,其保守程度与细菌形态有关。我们提出了一个模型,其中维持该基因簇的选择压力源于在杆状细菌中有效协调伸长和隔膜形成过程的需要。dcw基因簇中的基因顺序得以保守是由于以下机制:(i)隔膜形成和细胞壁伸长所需的肽聚糖前体数量有限;(ii)参与细胞分裂和肽聚糖前体合成的蛋白质复合物的共翻译组装;(iii)组装好的复合物在细胞内定位的交替变化,以参与隔膜肽聚糖的合成和分裂,或参与侧壁的合成。由于该模型涉及一种基因组排列,能够促进特定蛋白质复合物的组装及其随后在拥挤的细胞质和包膜中输送到特定位置,因此将其命名为基因组通道化。