首页> 美国卫生研究院文献>Genetics >pitkin(D), a novel gain-of-function enhancer of position-effect variegation, affects chromatin regulation during oogenesis and early embryogenesis in Drosophila.
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pitkin(D), a novel gain-of-function enhancer of position-effect variegation, affects chromatin regulation during oogenesis and early embryogenesis in Drosophila.

机译:pitkin(D)是一种新型的位置效应杂色功能增强剂,在果蝇的卵子发生和早期胚胎发生过程中影响染色质的调节。

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摘要

The vast majority of the >100 modifier genes of position-effect variegation (PEV) in Drosophila have been identified genetically as haplo-insufficient loci. Here, we describe pitkin(Dominant) (ptn(D)), a gain-of-function enhancer mutation of PEV. Its exceptionally strong enhancer effect is evident as elevated spreading of heterochromatin-induced gene silencing along euchromatic regions in variegating rearrangements. The ptn(D) mutation causes ectopic binding of the SU(VAR)3-9 heterochromatin protein at many euchromatic sites and, unlike other modifiers of PEV, it also affects stable position effects. Specifically, it induces silencing of white+ transgenes inserted at a wide variety of euchromatic sites. ptn(D) is associated with dominant female sterility. +/+ embryos produced by ptn(D)/+ females mated with wild-type males die at the end of embryogenesis, whereas the ptn(D)/+ sibling embryos arrest development at cleavage cycle 1-3, due to a combined effect of maternally provided mutant product and an early zygotic lethal effect of ptn(D). This is the earliest zygotic effect of a mutation so far reported in Drosophila. Germ-line mosaics show that ptn+ function is required for normal development in the female germ line. These results, together with effects on PEV and white+ transgenes, are consistent with the hypothesis that the ptn gene plays an important role in chromatin regulation during development of the female germ line and in early embryogenesis.
机译:果蝇中位置效应变异(PEV)的> 100个修饰基因中,绝大多数已被基因鉴定为单倍体位点不足。在这里,我们描述了pitkin(Dominant)(ptn(D)),一种PEV功能增强子突变。在杂色重排中,异染色质诱导的基因沉默沿常染色体区域的扩展扩散明显证明了其异常强大的增强作用。 ptn(D)突变导致SU(VAR)3-9异染色质蛋白在许多常色位点异位结合,并且与PEV的其他修饰剂不同,它还影响稳定的位置效应。具体而言,它诱导插入在许多常染色体位点的white +转基因沉默。 ptn(D)与女性不育占主导地位。由ptn(D)/ +雌性与野生型雄性交配产生的+ / +胚胎在胚胎发生结束时死亡,而ptn(D)/ +同胞胚胎由于复合作用而在卵裂周期1-3停止发育。由母体提供的突变产物和ptn(D)的早期合子致死作用。这是迄今为止在果蝇中报道的突变的最早合子作用。胚系镶嵌显示,ptn +功能是雌性胚系正常发育所必需的。这些结果,以及对PEV和white +转基因的影响,与ptn基因在雌性种系发育和早期胚胎发生过程中在染色质调节中起重要作用的假设相一致。

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