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整合到噬菌体附着位点attB中会损害橙色粘球菌的多细胞分化。

Integration into the phage attachment site, attB, impairs multicellular differentiation in Stigmatella aurantiaca.

作者信息

Müller Susanne, Shen Hui, Hofmann Diana, Schairer Hans Ulrich, Kirby John R

机构信息

Georgia Institute of Technology, School of Biology, 310 Ferst Drive, Atlanta, Georgia 30332-0230, USA.

出版信息

J Bacteriol. 2006 Mar;188(5):1701-9. doi: 10.1128/JB.188.5.1701-1709.2006.

Abstract

Stigmatella aurantiaca displays a complex developmental life cycle in response to starvation conditions that results in the formation of tree-like fruiting bodies capable of producing spores. The phage Mx8, first isolated from the close relative Myxococcus xanthus, is unable to infect S. aurantiaca cells and integrate into the genome. However, plasmids containing Mx8 fragments encoding the integrase and attP are able to integrate at the attB locus in the S. aurantiaca genome by site-specific recombination. After recombination between attP and attB, the S. aurantiaca cells were incapable of building normal fruiting bodies but formed clumps and fungus-like structures characteristic of intermediate stages of development displayed by the wild type. We identified two tRNA genes, trnD and trnV, encoding tRNA(Asp) and tRNA(Val), respectively, composing an operon at the attB locus of S. aurantiaca. Integration of attP-containing plasmids resulted in the incorporation of the t(Mx8) terminator sequence, in addition to a short sequence of Mx8 DNA downstream of trnD. The integrant was unable to process the trnD transcript at the normal 3' processing site and displayed a lower level of expression of the trnVD operon. In addition, several developmentally regulated proteins were no longer produced in mutants following insertion at the attB locus. We hypothesize that the integration of the t(Mx8) terminator sequence results in reduced levels of mature tRNA(Asp) and tRNA(Val) and that altered protein production during development is thereby responsible for the observed phenotype. The trnVD locus thus defines a new developmental checkpoint for Stigmatella aurantiaca.

摘要

橙色粘球菌在饥饿条件下会展现出复杂的发育生命周期,最终形成能够产生孢子的树状子实体。噬菌体Mx8最初是从其近亲黄色粘球菌中分离出来的,无法感染橙色粘球菌细胞并整合到基因组中。然而,含有编码整合酶和attP的Mx8片段的质粒能够通过位点特异性重组整合到橙色粘球菌基因组的attB位点。在attP和attB之间发生重组后,橙色粘球菌细胞无法形成正常的子实体,而是形成了团块和类似真菌的结构,这些是野生型所展示的发育中间阶段的特征。我们鉴定出两个tRNA基因,trnD和trnV,分别编码tRNA(Asp)和tRNA(Val),它们在橙色粘球菌的attB位点组成一个操纵子。含有attP的质粒的整合除了导致trnD下游的一段短的Mx8 DNA序列插入外,还导致了t(Mx8)终止子序列的插入。整合体无法在正常的3'加工位点加工trnD转录本,并且trnVD操纵子的表达水平较低。此外,在attB位点插入后,几个受发育调控的蛋白质在突变体中不再产生。我们推测t(Mx8)终止子序列的整合导致成熟tRNA(Asp)和tRNA(Val)水平降低,并且发育过程中蛋白质产生的改变是导致观察到的表型的原因。因此,trnVD位点定义了橙色粘球菌一个新的发育检查点。

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