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The use of nano-sized acicular material sliding friction and antisense DNA oligonucleotides to silence bacterial genes

机译:使用纳米针状材料滑动摩擦和反义DNA寡核苷酸来沉默细菌基因

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摘要

Viable bacterial cells impaled with a single particle of a nano-sized acicular material formed when a mixture containing the cells and the material was exposed to a sliding friction field between polystyrene and agar gel; hereafter, we refer to these impaled cells as penetrons. We have used nano-sized acicular material to establish a novel method for bacterial transformation. Here, we generated penetrons that carried antisense DNA adsorbed on nano-sized acicular material (α-sepiolite) by providing sliding friction onto the surface of agar gel; we then investigated whether penetron formation was applicable to gene silencing techniques. Antisense DNA was artificially synthesized as 15 or 90mer DNA oligonucleotides based on the sequences around the translation start codon of target mRNAs. Mixtures of bacterial cells with antisense DNA adsorbed on α-sepiolite were stimulated by sliding friction on the surface of agar gel for 60 s. Upon formation of Escherichia coli penetrons, β-lactamase and β-galactosidase expression was evaluated by counting the numbers of colonies formed on LB agar containing ampicillin and by measuring β-galactosidase activity respectively. The numbers of ampicillin resistant colonies and the β-galactosidase activity derived from penetrons bearing antisense DNA (90mer) was repressed to 15% and 25%, respectively, of that of control penetrons which lacked antisense DNA. Biphenyl metabolite, ring cleavage yellow compound produced by Pseudomonas pseudoalcaligenes penetron treated with antisense oligonucleotide DNA targeted to bphD increased higher than that lacking antisense DNA. This result indicated that expression of bphD in P. pseudoalcaligenes penetrons was repressed by antisense DNA that targeted bphD mRNA. Sporulation rates of Bacillus subtilis penetrons treated with antisense DNA (15mer) targeted to spo0A decreased to 24.4% relative to penetrons lacking antisense DNA. This novel method of gene silencing has substantial promise for elucidation of gene function in bacterial species that have been refractory to experimental introduction of exogenous DNA.
机译:当含有细胞和材料的混合物暴露于聚苯乙烯和琼脂凝胶之间的滑动摩擦场时,形成的活菌细胞被纳米级针状材料的单个颗粒刺穿。下文中,我们将这些穿刺细胞称为穿透子。我们已经使用纳米级的针状材料来建立一种新型的细菌转化方法。在这里,我们通过在琼脂凝胶表面上提供滑动摩擦,产生了带有反义DNA的Penetrons,该反义DNA吸附在纳米级针状材料(α-海泡石)上。然后,我们研究了Penetron的形成是否适用于基因沉默技术。根据靶mRNA的翻译起始密码子周围的序列,人工合成15或90mer DNA寡核苷酸的反义DNA。通过在琼脂凝胶表面上滑动摩擦60 s,刺激具有吸附在α-海泡石上的反义DNA的细菌细胞混合物。形成大肠杆菌的前体后,通过计数在含有氨苄青霉素的LB琼脂上形成的菌落数并分别测量β-半乳糖苷酶活性来评估β-内酰胺酶和β-半乳糖苷酶的表达。来自带有反义DNA(90mer)的penetron的氨苄青霉素抗性菌落的数目和β-半乳糖苷酶活性分别被抑制到缺少反义DNA的对照penetrons的15%和25%。用针对bphD的反义寡核苷酸DNA处理的假拟假单胞菌Penetron产生的联苯代谢物,环状裂解黄色化合物比缺乏反义DNA的化合物高。该结果表明,针对bphD mRNA的反义DNA抑制了假拟假丝酵母拟生假单胞菌中bphD的表达。相对于缺乏反义DNA的penetrons,以spo0A为靶标的反义DNA(15mer)处理的枯草芽孢杆菌的penetrons的孢子形成率降低至24.4%。这种新的基因沉默方法对于阐明细菌物种的基因功能具有很大的希望,这些细菌对于外源DNA的实验引入是难以忍受的。

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