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黑腹果蝇中位置效应斑驳的抑制因子在没有染色体重排的情况下会影响异染色质基因light的表达。

Suppressors of position-effect variegation in Drosophila melanogaster affect expression of the heterochromatic gene light in the absence of a chromosome rearrangement.

作者信息

Clegg N J, Honda B M, Whitehead I P, Grigliatti T A, Wakimoto B, Brock H W, Lloyd V K, Sinclair D A

机构信息

Institute of Molecular Biology and Biochemistry, Simon Fraser University, Burnaby, BC, Canada.

出版信息

Genome. 1998 Aug;41(4):495-503.

PMID:9796098
Abstract

Suppressors of position-effect variegation (Su(var)s) in Drosophila melanogaster are usually studied in the presence of chromosomal rearrangements, which exhibit variegated expression of euchromatic genes moved near to, or heterochromatic genes moved away from, centromeric heterochromatin. However, the effects of Su(var) mutations on heterochromatic gene expression in the absence of a variegating re-arrangement have not yet been defined. Here we present a number of results which suggest that Su(var) gene products can interact to affect the expression of the light gene in its normal heterochromatic location. We initially observed that eye pigment was reduced in several Su(var) double mutants; the phenotype resembled that of light mutations and was more severe when only one copy of the light gene was present. This reduced pigmentation could be alleviated by a duplication for the light gene or by a reduction in the amount of cellular heterochromatin. In addition, the viability of most Su(var) double mutant combinations tested was greatly reduced in a genetic background of reduced light gene dosage, when extra heterochromatin is present. We conclude that Su(var) gene products can affect expression of the heterochromatic light gene in the absence of any chromosomal rearrangements. However, it is noteworthy that mutations in any single Su(var) gene have little effect on light expression; we observe instead that different pairings of Su(var) mutations are required to show an effect on light expression. Interestingly, we have obtained evidence that at least two of the second chromosome Su(var) mutations are gain-of-function lesions, which also suggests that there may be different modes of interaction among these genes. It may therefore be possible to use this more sensitive assay of Su(var) effects on heterochromatic genes to infer functional relationships among the products of the 50 or more known Su(var) loci.

摘要

黑腹果蝇中位置效应斑驳的抑制因子(Su(var)s)通常是在存在染色体重排的情况下进行研究的,这些重排表现为常染色质基因靠近着丝粒异染色质移动时或异染色质基因远离着丝粒异染色质移动时的斑驳表达。然而,在不存在斑驳重排的情况下,Su(var)突变对异染色质基因表达的影响尚未明确。在此,我们展示了一些结果,这些结果表明Su(var)基因产物可以相互作用,影响光基因在其正常异染色质位置的表达。我们最初观察到,在几个Su(var)双突变体中眼色素减少;该表型类似于光突变的表型,并且当仅存在一个光基因拷贝时更为严重。这种色素沉着减少可以通过光基因的重复或细胞异染色质数量的减少来缓解。此外,在存在额外异染色质且光基因剂量降低的遗传背景下,测试的大多数Su(var)双突变体组合的活力大大降低。我们得出结论,在不存在任何染色体重排的情况下,Su(var)基因产物可以影响异染色质光基因的表达。然而,值得注意的是,任何单个Su(var)基因的突变对光表达几乎没有影响;相反,我们观察到需要不同的Su(var)突变组合才能对光表达产生影响。有趣的是,我们已经获得证据表明,至少两个第二条染色体上的Su(var)突变是功能获得性损伤,这也表明这些基因之间可能存在不同的相互作用模式。因此,有可能利用这种对Su(var)对异染色质基因影响更敏感的检测方法来推断50多个已知Su(var)位点的产物之间的功能关系。

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