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Inhibition of Expression of a Mousea α-Globin Gene by Plasmids that Include Antisense Oligonucleotides

机译:包含反义寡核苷酸的质粒对Mouseaα-Globin基因表达的抑制作用

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References(36) Plasmid-borne DNAs, corresponding to 68-base oligodeoxynucleotides, synthesized in the anti-sense or sense configuration and based on the nucleotide sequences of various regions of the mouse α-globin mRNA, were introduced with the gene for xanthine-guanine phosphoribosyl transferase from E.coli(Ecogpt)into mouse erythroleukemia(MEL)cells by protoplast fusion.Specific inhibition of the synthesis of α-globin was observed only in the cells transformed with the plasmids with antisense 68-mers that corresponded to the cap site as well as the site of initiation of translation of α-globin mRNA(Oligo-A);Other plasmids with anti-sense 68-mers that corresponded to the regions of the exon/intron junctions, the individual exons, or the 3'un-translated region were ineffective.This antisense RNA efficiently reduced the production of α-globin to 9-18%of the endogenous level after induction with hexylmethylene-bis-acetoamide(HMBA).Moreover, most of the antisense transformants did not show any decrease in the expression of the c-myc gene at the early phases of differentiation of MEL cells.Thus, we propose a hypothesis that the early declineinlevels of c-myc mRNA may be independent of and uncoupled from the program of globin synthesis during the differentiation of MEL cells.
机译:参考文献(36)将基于质粒的DNA(对应于68个碱基的寡脱氧核苷酸)以反义或有义构型合成并基于小鼠α-珠蛋白mRNA各个区域的核苷酸序列,并引入了黄嘌呤-基因。通过原生质体融合将大肠杆菌(Ecogpt)的鸟嘌呤磷酸核糖基转移酶转化为小鼠红白血病(MEL)细胞。只有在反义的68-mers对应于帽的质粒转化的细胞中,才能观察到对α-珠蛋白合成的特异性抑制。位点以及α-珠蛋白mRNA(Oligo-A)翻译的起始位点;具有反义68-聚体的其他质粒,对应于外显子/内含子连接区域,单个外显子或3'该反义RNA在己基亚甲基-双-乙酰胺(HMBA)诱导后有效地将α-球蛋白的产生减少至内源性水平的9-18%。此外,大多数反义转化子没有降解由于MEL细胞分化的早期c-myc基因的表达下降。因此,我们提出了一个假设,即c-myc mRNA的早期下降可能独立于珠蛋白合成程序,并且与珠蛋白合成程序无关。 MEL细胞的分化。

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