首页> 外文OA文献 >Generation of Dominant Selectable Markers for Resistance to Pseudomonic Acid by Cloning and Mutagenesis of the ileS Gene from the Archaeon Methanosarcina barkeri Fusaro
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Generation of Dominant Selectable Markers for Resistance to Pseudomonic Acid by Cloning and Mutagenesis of the ileS Gene from the Archaeon Methanosarcina barkeri Fusaro

机译:通过克隆和诱变的古细菌Methanosarcina barkeri Fusaro ileS基因生成对假单孢酸抗性的主要选择标记。

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摘要

Currently, only one selectable marker is available for genetic studies in the archaeal genus Methanosarcina. Here we report the generation of selectable markers that encode resistance to pseudomonic acid (PAr) in Methanosarcina species by mutagenesis of the isoleucyl-tRNA synthetase gene (ileS) from Methanosarcina barkeri Fusaro. The M. barkeri ileS gene was obtained by screening of a genomic library for hybridization to a PCR fragment. The complete 3,787-bp DNA sequence surrounding and including the ileS gene was determined. As expected, M. barkeri IleS is phylogenetically related to other archaeal IleS proteins. The ileS gene was cloned into a Methanosarcina-Escherichia coli shuttle vector and mutagenized with hydroxylamine. Nine independent PAr clones were isolated after transformation of Methanosarcina acetivorans C2A with the mutagenized plasmids. Seven of these clones carry multiple changes from the wild-type sequence. Most mutations that confer PAr were shown to alter amino acid residues near the KMSKS consensus sequence of class I aminoacyl-tRNA synthetases. One particular mutation (G594E) was present in all but one of the PAr clones. The MIC of pseudomonic acid for M. acetivorans transformed with a plasmid carrying this single mutation is 70 μg/ml of medium (for the wild type, the MIC is 12 μg/ml). The highest MICs (560 μg/ml) were observed with two triple mutants, A440V/A482T/G594E and A440V/G593D/G594E. Plasmid shuttle vectors and insertion cassettes that encode PAr based on the mutant ileS alleles are described. Finally, the implications of the specific mutations we isolated with respect to binding of pseudomonic acid by IleS are discussed.
机译:目前,在古细菌甲烷八叠球菌属中只有一种选择标记可用于遗传研究。在这里,我们报道了通过诱变来自异位甲烷八叠球菌的异亮氨酰-tRNA合成酶基因(ileS)来编码甲烷八叠球菌中对假单酸(PAr)的抗性的选择性标记的产生。通过筛选用于与PCR片段杂交的基因组文库,获得巴克氏杆菌ileS基因。确定并包围了ileS基因的完整3,787-bp DNA序列。如预期的那样,巴克氏杆菌IleS与其他古细菌IleS系统发育相关。将ileS基因克隆到甲烷八叠球菌-大肠杆菌穿梭载体中,并用羟胺诱变。用诱变的质粒转化乙型甲烷单胞菌C2A后,分离出九个独立的PAr克隆。这些克隆中有七个带有野生型序列的多个变化。已显示,大多数赋予PAr的突变都会改变I类氨酰基-tRNA合成酶的KMSKS共有序列附近的氨基酸残基。除一个PAr克隆外,其他所有突变中都存在一个特定的突变(G594E)。用携带该单突变的质粒转化的乙酰丙酸莫来酸假单酸的MIC为70μg/ ml培养基(对于野生型,MIC为12μg/ ml)。使用两个三重突变体A440V / A482T / G594E和A440V / G593D / G594E观察到最高的MIC(560μg/ ml)。描述了基于突变的ileS等位基因编码PAr的质粒穿梭载体和插入盒。最后,讨论了我们分离出的特定突变对IleS与假单酸结合的影响。

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