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A Tandem Array of Minimal U1 Small Nuclear RNA Genes Is Sufficient To Generate a New Adenovirus Type 12Inducible Chromosome Fragile Site

机译:最小的U1小核RNA基因的串联阵列足以生成新的12型腺病毒诱导型染色体易碎位点

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摘要

Infection of human cells with adenovirus serotype 12 (Ad12) induces metaphase fragility of four, and apparently only four, chromosomal loci. Surprisingly, each of these four loci corresponds to a cluster of genes encoding a small abundant structural RNA: the RNU1 and RNU2 loci contain tandemly repeated genes encoding U1 and U2 small nuclear RNAs (snRNAs), respectively; the PSU1 locus is a cluster of degenerate U1 genes; and the RN5S locus contains the tandemly repeated genes encoding 5S rRNA. These observations suggested that high local levels of transcription, in combination with Ad12 early functions, can interfere with metaphase chromatin packing. In support of this hypothesis, we and others found that an artificial tandem array of transcriptionally active, but not inactive, U2 snRNA genes would generate a novel Ad12-inducible fragile site. Although U1 and U2 snRNA are both transcribed by RNA polymerase II and share similar enhancer, promoter, and terminator signals, the human U1 promoter is clearly more complex than that of U2. In addition, the natural U1 tandem repeat unit exceeds 45 kb, whereas the U2 tandem repeat unit is only 6.1 kb. We therefore asked whether an artificial array of minimal U1 genes would also generate a novel Ad12-inducible fragile site. The exogenous U1 genes were marked by an innocuous U72C point mutation within the U1 coding region so that steady-state levels of U1 snRNA derived from the artificial array could be quantified by a simple primer extension assay. We found that the minimal U1 genes were efficiently expressed and were as effective as minimal U2 genes in generating a novel Ad12-inducible fragile site. Thus, despite significant differences in promoter architecture and overall gene organization, the active U1 transcription units suffice to generate a new virally inducible fragile site.
机译:用腺病毒血清型12(Ad12)感染人细胞会诱导四个染色体位点(显然只有四个)的中期脆弱性。出乎意料的是,这四个基因座中的每个基因座都对应于编码小的丰富结构RNA的基因簇:RNU1和RNU2基因座分别包含串联重复编码的U1和U2小核RNA(snRNA)的基因。 PSU1基因座是简并的U1基因的簇; RN5S位点包含串联重复编码5S rRNA的基因。这些观察结果表明,较高的局部转录水平与Ad12的早期功能结合可干扰中期染色质的堆积。为了支持该假设,我们和其他人发现,一个有转录活性但不是非活性的U2 snRNA基因的人工串联阵列将产生一个新的Ad12诱导型脆弱位点。尽管U1和U2 snRNA都被RNA聚合酶II转录并共享相似的增强子,启动子和终止子信号,但人类U1启动子显然比U2更复杂。此外,自然的U1串联重复单元超过45 kb,而U2串联重复单元仅为6.1 kb。因此,我们问最小的U1基因的人工阵列是否还会产生一个新的Ad12诱导的脆弱位点。外源的U1基因在U1编码区域内以无害的U72C点突变为特征,因此可以通过简单的引物延伸分析来量化源自人工阵列的U1 snRNA的稳态水平。我们发现最小的U1基因被有效地表达,并且在生成一个新的Ad12可诱导的脆弱位点方面与最小的U2基因一样有效。因此,尽管启动子结构和整体基因组织存在显着差异,但活跃的U1转录单位足以产生新的病毒诱导的脆弱位点。

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