Daugherty B L, Hotta K, Kumar C, Ahn Y H, Zhu J D, Pestka S
Department of Molecular Genetics and Microbiology, University of Medicine and Dentistry, Robert Wood Johnson Medical School, Piscataway, NJ 08854-5635.
Gene Anal Tech. 1989 Jan-Feb;6(1):1-16. doi: 10.1016/0735-0651(89)90007-1.
A series of plasmids were constructed to generate RNA complementary to the beta-galactosidase messenger RNA under control of the phage lambda PL promoter. These plasmids generate anti-lacZ mRNA bearing or lacking a synthetic ribosome binding site adjacent to the lambda PL promoter and/or the lacZ ribosome binding site in reverse orientation. Fragments of lacZ DNA from the 5' and/or the 3' region were used in these constructions. When these anti-mRNA molecules were produced in Escherichia coli 294, maximal inhibition of beta-galactosidase synthesis occurred when a functional ribosome binding site was present near the 5' end of the anti-mRNA and the anti-mRNA synthesized was complementary to the 5' region of the mRNA corresponding to the lacZ ribosome binding site and/or the 5'-coding sequence. Anti-mRNAs producing maximal inhibition of beta-galactosidase synthesis exhibited an anti-lacZ mRNA:normal lacZ mRNA ratio of 100:1 or higher. Those showing lower levels of inhibition exhibited much lower anti-lacZ mRNA:normal lacZ mRNA ratios. A functional ribosome binding site at the 5'-end was found to decrease the decay rate of the anti-lacZ mRNAs. In addition, the incorporation of a transcription terminator just downstream of the antisense segment provided for more efficient inhibition of lacZ mRNA translation due to synthesis of smaller and more abundant anti-lacZ mRNAs. The optimal constructions produced undetectable levels of beta-galactosidase synthesis.
构建了一系列质粒,以在噬菌体λ PL启动子的控制下产生与β-半乳糖苷酶信使RNA互补的RNA。这些质粒产生的抗lacZ mRNA带有或缺少与λ PL启动子相邻的合成核糖体结合位点和/或以反向排列的lacZ核糖体结合位点。在这些构建中使用了来自5'和/或3'区域的lacZ DNA片段。当这些抗mRNA分子在大肠杆菌294中产生时,当在抗mRNA的5'端附近存在功能性核糖体结合位点且合成的抗mRNA与对应于lacZ核糖体结合位点和/或5'-编码序列的mRNA的5'区域互补时,β-半乳糖苷酶合成受到最大抑制。产生β-半乳糖苷酶合成最大抑制的抗mRNA表现出抗lacZ mRNA:正常lacZ mRNA比例为100:1或更高。那些显示较低抑制水平的抗mRNA与正常lacZ mRNA的比例要低得多。发现5'端的功能性核糖体结合位点可降低抗lacZ mRNA的降解速率。此外,由于合成了更小且更丰富的抗lacZ mRNA,在反义片段下游紧邻引入转录终止子可更有效地抑制lacZ mRNA的翻译。最佳构建产生的β-半乳糖苷酶合成水平无法检测到。