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Alanine Racemase Mutants of Burkholderia pseudomallei and Burkholderia mallei and Use of Alanine Racemase as a Non-Antibiotic-Based Selectable Marker

机译:假伯克霍尔德氏菌和马氏伯克霍尔德氏菌的丙氨酸消旋酶突变体以及丙氨酸消旋酶作为基于非抗生素的选择性标记的用途

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摘要

Burkholderia pseudomallei and Burkholderia mallei are category B select agents and must be studied under BSL3 containment in the United States. They are typically resistant to multiple antibiotics, and the antibiotics used to treat B. pseudomallei or B. mallei infections may not be used as selective agents with the corresponding Burkholderia species. Here, we investigated alanine racemase deficient mutants of B. pseudomallei and B. mallei for development of non-antibiotic-based genetic selection methods and for attenuation of virulence. The genome of B. pseudomallei K96243 has two annotated alanine racemase genes (bpsl2179 and bpss0711), and B. mallei ATCC 23344 has one (bma1575). Each of these genes encodes a functional enzyme that can complement the alanine racemase deficiency of Escherichia coli strain ALA1. Herein, we show that B. pseudomallei with in-frame deletions in both bpsl2179 and bpss0711, or B. mallei with an in-frame deletion in bma1575, requires exogenous d-alanine for growth. Introduction of bpsl2179 on a multicopy plasmid into alanine racemase deficient variants of either Burkholderia species eliminated the requirement for d-alanine. During log phase growth without d-alanine, the viable counts of alanine racemase deficient mutants of B. pseudomallei and B. mallei decreased within 2 hours by about 1000-fold and 10-fold, respectively, and no viable bacteria were present at 24 hours. We constructed several genetic tools with bpsl2179 as a selectable genetic marker, and we used them without any antibiotic selection to construct an in-frame ΔflgK mutant in the alanine racemase deficient variant of B. pseudomallei K96243. In murine peritoneal macrophages, wild type B. mallei ATCC 23344 was killed much more rapidly than wild type B. pseudomallei K96243. In addition, the alanine racemase deficient mutant of B. pseudomallei K96243 exhibited attenuation versus its isogenic parental strain with respect to growth and survival in murine peritoneal macrophages.
机译:假伯克霍尔德氏菌和马氏伯克霍尔德氏菌是B类选择剂,必须在美国的BSL3控制下进行研究。它们通常对多种抗生素具有抗性,并且用于治疗假性马来芽孢杆菌或马来芽孢杆菌感染的抗生素不得与相应的伯克霍尔德菌种一起用作选择剂。在这里,我们调查了假单胞菌和马来芽孢杆菌的丙氨酸消旋酶缺陷型突变体,以开发基于非抗生素的遗传选择方法并降低毒力。假双歧芽孢杆菌K96243的基因组具有两个带注释的丙氨酸消旋酶基因(bpsl2179和bpss0711),而商城芽孢杆菌ATCC 23344具有一个(bma1575)。这些基因中的每一个都编码一种功能性酶,可以补充大肠杆菌ALA1株的丙氨酸消旋酶缺乏症。在这里,我们显示在bpsl2179和bpss0711中均具有框内缺失的假芽孢杆菌或在bma1575中具有框内缺失的马来酸芽孢杆菌均需要外源d-丙氨酸来生长。将多拷贝质粒上的bpsl2179引入任一伯克霍尔德菌物种的丙氨酸消旋酶缺陷型后,便不再需要d-丙氨酸。在没有d-丙氨酸的对数生长期中,假双歧芽孢杆菌和马来芽孢杆菌的丙氨酸消旋酶缺陷型突变体的存活数在2小时内分别下降了约1000倍和10倍,并且在24小时内没有存活细菌。我们用bpsl2179作为可选择的遗传标记构建了数种遗传工具,我们在没有任何抗生素选择的情况下使用它们构建了假苹果芽孢杆菌K96243丙氨酸消旋酶缺陷型的框内ΔflgK突变体。在鼠腹膜巨噬细胞中,野生型B. Mallei ATCC 23344被杀死的速度比野生型B. pseudomallei K96243快得多。此外,假性芽孢杆菌K96243的丙氨酸消旋酶缺陷型突变体在鼠腹膜巨噬细胞的生长和存活方面与其等基因亲本菌株相比显示出减毒作用。

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