首页> 外文期刊>Nucleic Acids Research >Buffering and proteolysis are induced by segmental monosomy in Drosophila melanogaster.
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Buffering and proteolysis are induced by segmental monosomy in Drosophila melanogaster.

机译:果蝇的节段单胞体诱导缓冲和蛋白水解。

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Variation in the number of individual chromosomes (chromosomal aneuploidy) or chromosome segments (segmental aneuploidy) is associated with developmental abnormalities and reduced fitness in all species examined; it is the leading cause of miscarriages and mental retardation and a hallmark of cancer. However, despite their documented importance in disease, the effects of aneuploidies on the transcriptome remain largely unknown. We have examined the expression effects of seven heterozygous chromosomal deficiencies, both singly and in all pairwise combinations, in Drosophila melanogaster. The results show that genes in one copy are buffered, i.e. expressed more strongly than the expected 50% of wild-type level, the buffering is general and not influenced by other monosomic regions. Furthermore, long genes are significantly more highly buffered than short genes and gene length appears to be the primary determinant of the buffering degree. For short genes the degree of buffering depends on expression level and expression pattern. Furthermore, the results show that in deficiency heterozygotes the expression of genes involved in proteolysis is enhanced and negatively correlates with the degree of buffering. Thus, enhanced proteolysis appears to be a general response to aneuploidy.
机译:个体染色体(染色体非整倍性)或染色体区段(区段非整倍性)数目的变化与发育异常和所有受检物种的适应性降低有关;它是流产和智力低下的主要原因,也是癌症的标志。然而,尽管它们在疾病中具有重要的文献记载,但非整倍性对转录组的影响仍然未知。我们已经检查了七个果蝇染色体缺陷,在果蝇中单独和成对组合的表达效果。结果表明,一个拷贝中的基因被缓冲,即比预期的野生型水平的50%更强地表达,该缓冲是一般性的,不受其他单体区的影响。此外,长基因比短基因具有更高的缓冲能力,而基因长度似乎是缓冲程度的主要决定因素。对于短基因,缓冲程度取决于表达水平和表达模式。此外,结果表明,在缺乏杂合子的情况下,参与蛋白水解的基因的表达增强并且与缓冲程度负相关。因此,增强的蛋白水解似乎是对非整倍性的一般反应。

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