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膜μ聚腺苷酸化信号和3'侧翼序列作为免疫球蛋白编码基因的转录终止子发挥作用。

Membrane mu poly(A) signal and 3' flanking sequences function as a transcription terminator for immunoglobulin-encoding genes.

作者信息

Fasel N J, Rousseaux M, Déglon N, Govan H L, Law R, Bron C, Wall R

机构信息

Institute of Biochemistry, University of Lausanne, Epalinges, Switzerland.

出版信息

Gene. 1992 Dec 15;122(2):297-304. doi: 10.1016/0378-1119(92)90218-e.

Abstract

Developmentally regulated mechanisms involving alternative RNA splicing and/or polyadenylation, as well as transcription termination, are implicated in controlling the levels of secreted mu (mu s), membrane mu (mu m) and delta immunoglobulin (Ig) heavy chain mRNAs during B cell differentiation (mu gene encodes the mu heavy chain). Using expression vectors constructed with genomic DNA segments composed of the mu m polyadenylation signal region, we analyzed poly(A) site utilization and termination of transcription in stably transfected myeloma cells and in murine fibroblast L cells. We found that the gene segment containing the mu m poly(A) signals, along with 536 bp of downstream flanking sequence, acted as a transcription terminator in both myeloma cells and L cell fibroblasts. Neither a 141-bp DNA fragment (which directed efficient polyadenylation at the mu m site), nor the 536-bp flanking nucleotide sequence alone, were sufficient to obtain a similar regulation. This shows that the mu m poly(A) region plays a central role in controlling developmentally regulated transcription termination by blocking downstream delta gene expression. Because this gene segment exhibited the same RNA processing and termination activities in fibroblasts, it appears that these processes are not tissue-specific.

摘要

涉及可变RNA剪接和/或聚腺苷酸化以及转录终止的发育调控机制,与B细胞分化过程中分泌型μ(μm)、膜型μ(μm)和δ免疫球蛋白(Ig)重链mRNA水平的控制有关(μ基因编码μ重链)。利用由μm聚腺苷酸化信号区域组成的基因组DNA片段构建的表达载体,我们分析了稳定转染的骨髓瘤细胞和小鼠成纤维细胞L细胞中聚(A)位点的利用情况和转录终止情况。我们发现,包含μm聚(A)信号的基因片段以及536 bp的下游侧翼序列,在骨髓瘤细胞和成纤维细胞L中均作为转录终止子发挥作用。单独的141 bp DNA片段(其指导μm位点的有效聚腺苷酸化)和536 bp侧翼核苷酸序列均不足以获得类似的调控。这表明μm聚(A)区域通过阻断下游δ基因表达,在控制发育调控的转录终止中起核心作用。由于该基因片段在成纤维细胞中表现出相同的RNA加工和终止活性,因此这些过程似乎不是组织特异性的。

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