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per基因产物丰度或结构的变化会改变果蝇生物钟的周期。

Changes in abundance or structure of the per gene product can alter periodicity of the Drosophila clock.

作者信息

Baylies M K, Bargiello T A, Jackson F R, Young M W

出版信息

Nature. 1987;326(6111):390-2. doi: 10.1038/326390a0.

Abstract

The period (per) locus, which controls biological rhythms in Drosophila, was originally defined by three chemically induced mutations. Flies carrying the pero mutation were arrhythmic, whereas pers and perl mutants had circadian behavioural rhythms with 19-hour and 29-hour periodicities, respectively. Wild-type flies have 24-hour rhythms. Here we compare the per locus DNA sequences of the three mutants with the parental wild-type. The pers and perl mutations lead to amino-acid substitutions, whereas pero introduces an early translation stop (amber). The results indicate that the protein product of per controls biological rhythms. We also report that the abundance of this protein may set the pace of the Drosophila clock. Although circadian rhythms are restored when arrhythmic (per-) Drosophila are transformed with per locus DNA, flies receiving identical transforming DNA segments can produce rhythms with periods that differ by more than 12 hours. Transcription studies reveal a tenfold variation in the level of per RNA among transformed lines. Levels of per RNA are inversely correlated with period length, so that flies with lowest levels of the per product have slow-running biological clocks. On the basis of the combined studies we suggest that perl and pers mutants produce hypoactive and hyperactive per proteins, respectively.

摘要

周期(per)基因座控制果蝇的生物节律,最初是由三种化学诱导突变定义的。携带pero突变的果蝇没有节律,而pers和perl突变体分别具有19小时和29小时周期的昼夜行为节律。野生型果蝇有24小时的节律。在此,我们将这三个突变体的per基因座DNA序列与亲本野生型进行比较。pers和perl突变导致氨基酸替换,而pero引入了一个早期翻译终止(琥珀突变)。结果表明,per的蛋白质产物控制生物节律。我们还报告说,这种蛋白质的丰度可能设定了果蝇生物钟的节奏。虽然当无节律的(per-)果蝇用per基因座DNA转化时,昼夜节律得以恢复,但接受相同转化DNA片段的果蝇可以产生周期相差超过12小时的节律。转录研究揭示了转化品系中per RNA水平有10倍的差异。per RNA水平与周期长度呈负相关,因此per产物水平最低的果蝇生物钟运行缓慢。基于综合研究,我们认为perl和pers突变体分别产生活性不足和活性过高的per蛋白。

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