Department of Environmental Microbiology/Genetics, Technical University of Berlin, Berlin, Germany.
Mol Microbiol. 2010 Jan;75(2):261-3. doi: 10.1111/j.1365-2958.2009.06978.x. Epub 2009 Nov 25.
Integrative conjugative elements (ICEs) occur frequently in Gram-positive and Gram-negative bacteria. In contrast to plasmids, they are stably integrated in the bacterial genome, often inserted in a tRNA gene. They are excised from the host chromosome upon induction in order to be transferred to a recipient cell. When conjugative transfer is completed, they stably reintegrate in the chromosome. It is generally thought that ICEs are incapable of autonomous replication, instead relying on replication and segregation along with the host chromosome. In this issue of Molecular Microbiology Lee and co-workers demonstrate that ICEBs1 from Bacillus subtilis is capable of autonomous plasmid-like replication in its circular form after excision. The authors show that ICEBs1 replication is unidirectional; it initiates at oriT(ICEBs1) and requires the ICEBs1-encoded conjugative relaxase NicK. Replication also requires the catalytic subunit of the host DNA polymerase PolC, the host processivity clamp DnaN and the host-encoded alternative helicase PcrA. Autonomous replication of ICEBs1 appears to be important for its stable maintenance, but not for horizontal transfer of the element. Lee and co-workers argue that plasmid-like replication is likely a common property of ICEs, probably contributing to stability and maintenance of ICEs in bacterial populations. I discuss these findings in context with data on other ICEs from Gram-positive and Gram-negative bacteria and with respect to possible consequences of the findings for basic research on mobile genetic elements from Gram-positive bacteria and their applications in biotechnology.
整合性接合元件(ICEs)在革兰氏阳性和革兰氏阴性细菌中频繁出现。与质粒不同,它们稳定地整合在细菌基因组中,通常插入在 tRNA 基因中。它们在诱导时从宿主染色体上被切除,以便转移到受体细胞中。当接合转移完成后,它们稳定地重新整合到染色体中。一般认为,ICEs 不能自主复制,而是依赖于与宿主染色体一起复制和分离。在本期《分子微生物学》中,Lee 及其同事证明了枯草芽孢杆菌的 ICEBs1 在切除后能够以其环状形式进行自主质粒样复制。作者表明,ICEBs1 复制是单向的;它从 oriT(ICEBs1)起始,需要 ICEBs1 编码的接合松弛酶 NicK。复制还需要宿主 DNA 聚合酶 PolC 的催化亚基、宿主进程性夹 DnaN 和宿主编码的替代解旋酶 PcrA。ICEBs1 的自主复制对于其稳定维持似乎很重要,但对于元件的水平转移则不是必需的。Lee 及其同事认为,质粒样复制可能是 ICEs 的共同特性,可能有助于 ICEs 在细菌种群中的稳定性和维持。我将根据来自革兰氏阳性和革兰氏阴性细菌的其他 ICE 的数据以及这些发现对革兰氏阳性细菌的移动遗传元件的基础研究及其在生物技术中的应用的可能影响,来讨论这些发现。