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一种新型单链DNA表达载体产生的DNA酶抑制细菌必需的细胞分裂基因ftsZ的表达。

DNA enzyme generated by a novel single-stranded DNA expression vector inhibits expression of the essential bacterial cell division gene ftsZ.

作者信息

Tan Xin-Xing, Rose Knesha, Margolin William, Chen Yin

机构信息

CytoGenix, Incorporated, Suite 140, 3100 Wilcrest, Houston, Texas 77042, USA.

出版信息

Biochemistry. 2004 Feb 3;43(4):1111-7. doi: 10.1021/bi035164h.

Abstract

Rapid emergence of antibiotic-resistant bacterial pathogens has created urgent demand for the discovery and development of new antibacterial agents directed toward novel targets. Antisense oligodeoxynucleotides (AS-ODN) and their modified forms have been utilized to block gene expression in bacterial cells, showing potential for developing highly specific and efficacious antibacterial agents. In this study, a tetracycline-regulated expression vector was developed for generating single-stranded DNA (ssDNA) of a desired target sequence in bacterial cells. This inducible ssDNA expression vector was tested for producing a DNA enzyme designed to specifically cleave ftsZ mRNA. Our results indicate that the expressed DNA enzyme molecules not only repress ftsZ gene expression and but also inhibit bacterial cell proliferation. Although we believe that the cleavage of ftsZ mRNA by the expressed DNA enzyme molecules is responsible for the inhibitory effects on ftsZ gene expression and bacterial cell proliferation, the antisense mechanism could also be responsible for the biological effects. The ability of this ssDNA expression system to selectively modulate gene expression may provide a powerful strategy in determining the contribution of a given gene product to bacterial growth or pathogenesis and opens a new venue for developing antibacterial agents.

摘要

抗生素耐药性细菌病原体的迅速出现,使得迫切需要发现和开发针对新靶点的新型抗菌剂。反义寡脱氧核苷酸(AS-ODN)及其修饰形式已被用于阻断细菌细胞中的基因表达,显示出开发高度特异性和有效抗菌剂的潜力。在本研究中,开发了一种四环素调控表达载体,用于在细菌细胞中产生所需靶序列的单链DNA(ssDNA)。测试了这种诱导型ssDNA表达载体产生旨在特异性切割ftsZ mRNA的DNA酶的能力。我们的结果表明,表达的DNA酶分子不仅抑制ftsZ基因表达,还抑制细菌细胞增殖。尽管我们认为表达的DNA酶分子对ftsZ mRNA的切割是对ftsZ基因表达和细菌细胞增殖产生抑制作用的原因,但反义机制也可能是产生生物学效应的原因。这种ssDNA表达系统选择性调节基因表达的能力,可能为确定特定基因产物对细菌生长或发病机制的作用提供一种有力策略,并为开发抗菌剂开辟新途径。

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