[a]苯并芘转化人乳腺上皮细胞在微细胞介导的11号和17号染色体转移后有丝分裂中核仁样小体的RNA重新定位和持久性

M. Mello, M. Lareef, B. Vidal, J. Russo
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引用次数: 3

摘要

在微细胞介导的正常染色体11和17的转移后,研究了苯并[a]芘(BP)转化的人乳腺上皮MCF - 10F细胞在有丝分裂过程中积累的RNA重定位和核核样小体的发生率。研究人员检测了这两条染色体在致瘤性MCF - 10F细胞(BP1 - E细胞系)中的转移所导致的变化,因为这些染色体的改变与MCF - 10F细胞系列中转化和致瘤表型的表达有关。此外,随着MCF - 10F细胞的转化和致瘤性,核仁样小体的频率急剧减少,因此可以想象,在正常染色体11或17存在的情况下,核仁样小体的频率会受到影响。与有丝分裂纺锤体相关的RNA重新定位模式在分析的细胞系中没有变化。在BP1 - E细胞中引入17号染色体或减少或不影响持久核仁样体的频率。相反,在接受正常11号染色体的细胞中,核仁样体的频率更接近于未转化的MCF - 10F细胞。这些结果表明,至少在体外,在人类乳腺上皮细胞的细胞分裂过程中,正常的11号染色体而非17号染色体有助于维持核仁样体中积累的RNA过剩。在接受正常11号染色体的BP1‐E细胞中保留的一些位点可能与RNA转录产物的控制有关。
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RNA Relocation and Persistence of Nucleolus-Like Bodies at Mitosis in Benzo[a]Pyrene-Transformed Human Breast Epithelial Cells after Microcell-Mediated Transfer of Chromosomes 11 and 17
RNA relocation and the incidence of nucleolus‐like bodies accumulated during mitosis were studied cytochemically in benzo[a]pyrene (BP)‐transformed human breast epithelial MCF‐10F cells after microcell‐mediated transfer of normal chromosomes 11 and 17. The changes resulting from the transfer of these two chromosomes in tumorigenic MCF‐10F cells (BP1‐E cell line) were examined, since alterations in these chromosomes are involved in the expression of the transformed and tumorigenic phenotypes in the MCF‐10F cell series. In addition, the frequency of nucleolus‐like bodies decreases drastically with transformation and tumorigenicity in MCF‐10F cells, thus being conceivable that it would be affected in presence of normal chromosomes 11 or 17. The pattern of RNA relocation associated with the mitotic spindle did not vary in the cell lines analyzed. The introduction of chromosome 17 in BP1‐E cells either decreased or did not affect the frequency of persistent nucleolus‐like bodies. In contrast, in cells which received a normal chromosome 11, the frequency of nucleolus‐like bodies was closer to that of non‐transformed MCF‐10F cells. These results suggest that a normal chromosome 11 but not chromosome 17 contributes to the maintenance of an RNA surplus which accumulates in nucleolus‐like bodies during cell division of the human breast epithelial cells, at least in vitro. Some loci which were retained in the BP1‐E cells which received a normal chromosome 11 are probably involved with the control of RNA transcript production.
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