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Intramolecular triplex potential sequence within a gene down regulates its expression in vivo.

机译:基因内的分子内三联体潜在序列下调了其在体内的表达。

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摘要

Polypurine/polypyrimidine sequences have been shown to adopt intramolecular triple helix structures under torsional stress and/or at low pH. Such sequences have been observed within the the regulatory as well as the coding regions of several genes and the involvement of triple helical structure adopted by these sequences in transcriptional control has been speculated. Taking advantage of codon degeneracy we have engineered a 38 bp long intramolecular triple helix potential polypurine/polypyrimidine sequence motif between the 37th and 50th codons of beta-galactosidase gene in the plasmid pBluescriptIISK+ to investigate whether in vivo E.coli RNA polymerase would transcribe sequence motifs adopting triple helix structure, when present within the coding region of the gene. E.coli JM109 cells transformed with this construct pSBT1, exhibited 80% inhibition of beta-galactosidase expression compared to another construct pSBmT12 made using less preferred codons for identical amino acid sequence, but lacking the polypurine/polypyrimidine sequence motif. Truncated beta-galactosidase transcripts were observed for pSBT1 but not for pSBmT12. Here we report that a putative triple helix potential sequence within a gene can down regulate its expression by partially blocking the transcription elongation in vivo.
机译:聚嘌呤/聚嘧啶序列已经显示出在扭转应力下和/或在低pH下采用分子内三螺旋结构。已经在几个基因的调节区和编码区内观察到了这样的序列,并且推测了这些序列所采用的三螺旋结构在转录控制中的参与。利用密码子简并性,我们在质粒pBluescriptIISK +的β-半乳糖苷酶基因的第37和第50个密码子之间设计了一个38 bp长的分子内三螺旋潜在多嘌呤/聚嘧啶序列基序,以研究体内大肠杆菌RNA聚合酶是否会转录序列基序当存在于基因的编码区内时,采用三重螺旋结构。与使用相同氨基酸序列的较不优选密码子但缺少聚嘌呤/聚嘧啶序列基序的另一个构建体pSBmT12相比,用该构建体pSBT1转化的大肠杆菌JM109细胞表现出80%的β-半乳糖苷酶表达抑制作用。 pSBT1观察到截短的β-半乳糖苷酶转录物,而pSBmT12观察不到。在这里我们报告一个基因中的推定的三螺旋潜在序列可以通过部分阻断体内转录延伸来下调其表达。

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