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果蝇属中第四条染色体的绘图表明常染色体特异性基因调控。

Painting of fourth in genus Drosophila suggests autosome-specific gene regulation.

作者信息

Larsson Jan, Svensson Malin J, Stenberg Per, Mäkitalo Maria

机构信息

Umeå Centrum för Molekylär Patogenes, Umeå University, SE-901 87 Umea, Sweden.

出版信息

Proc Natl Acad Sci U S A. 2004 Jun 29;101(26):9728-33. doi: 10.1073/pnas.0400978101. Epub 2004 Jun 21.

Abstract

Painting of fourth (POF) is a chromosome-specific protein in Drosophila and represents the first example of an autosome-specific protein. POF binds to chromosome 4 in Drosophila melanogaster, initiating at the proximal region, followed by a spreading dependent on chromosome 4-specific sequences or structures. Chromosome-specific gene regulation is known thus far only as a mechanism to equalize the transcriptional activity of the single male X chromosome with that of the two female X chromosomes. In Drosophila, a complex including the male-specific lethal proteins, "paints" the male X chromosome, mediating its hypertranscription, explained to some extent by the acetylation of lysine 16 on histone H4. Here, we show that Pof is essential for viability in both sexes and for female fertility. POF binding to an autosome, the F element, is conserved in genus Drosophila, indicating functional conservation of the autosome specificity. In three of nine studied species, POF binds to the male X chromosome. When bound to the male X, it also colocalizes with the dosage compensation protein male-specific lethal 3, suggesting a relationship to dosage compensation. The chromosome specificity is determined at the species level and not by the amino acid sequence. We argue that POF is involved in a chromosome-specific regulatory function.

摘要

四号染色体结合蛋白(POF)是果蝇中一种染色体特异性蛋白,是常染色体特异性蛋白的首个实例。POF与黑腹果蝇的四号染色体结合,起始于近端区域,随后依赖四号染色体特异性序列或结构进行扩展。迄今为止,染色体特异性基因调控仅作为一种使雄性单条X染色体的转录活性与雌性两条X染色体的转录活性相等的机制为人所知。在果蝇中,一个包含雄性特异性致死蛋白的复合体“描绘”雄性X染色体,介导其过度转录,这在一定程度上可通过组蛋白H4上赖氨酸16的乙酰化来解释。在此,我们表明POF对两性的生存能力以及雌性的生育能力至关重要。POF与常染色体F元件的结合在果蝇属中是保守的,表明常染色体特异性具有功能保守性。在九个研究物种中的三个物种中,POF与雄性X染色体结合。当与雄性X染色体结合时,它还与剂量补偿蛋白雄性特异性致死蛋白3共定位,表明与剂量补偿存在关联。染色体特异性是在物种水平上确定的,而非由氨基酸序列决定。我们认为POF参与了一种染色体特异性调控功能。

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Painting of fourth, a chromosome-specific protein in Drosophila.果蝇中第四条染色体特异性蛋白的绘图。
Proc Natl Acad Sci U S A. 2001 May 22;98(11):6273-8. doi: 10.1073/pnas.111581298. Epub 2001 May 15.

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