Kramer Cas, Loros Jennifer J, Dunlap Jay C, Crosthwaite Susan K
School of Biological Sciences, University of Manchester, Manchester M13 9PT, UK.
Nature. 2003 Feb 27;421(6926):948-52. doi: 10.1038/nature01427.
The prevalence of antisense RNA in eukaryotes is not known and only a few naturally occurring antisense transcripts have been assigned a function. However, the recent identification of a large number of putative antisense transcripts strengthens the view that antisense RNAs might affect a wider variety of processes than previously thought. Here we show that in the model organism Neurospora crassa entrainment of the circadian clock, which is critical for the correct temporal expression of genes and their products, is controlled partly by an antisense RNA arising from a clock component locus. In a wild-type strain, levels of antisense frequency (frq) transcripts cycle in antiphase to sense frq transcripts in the dark, and are inducible by light. In mutant strains in which the induction of antisense frq RNA by light is abolished, the time of the internal clock is delayed relative to the wild-type strain, and resetting of the clock by light is altered. These data provide an unexpected link between antisense RNA and circadian timing and provide a new example of a eukaryotic cellular process regulated by naturally occurring antisense RNA.
真核生物中反义RNA的普遍程度尚不清楚,只有少数天然存在的反义转录本被赋予了功能。然而,最近大量推定的反义转录本的鉴定强化了这样一种观点,即反义RNA可能影响比以前认为的更广泛的各种过程。在这里,我们表明,在模式生物粗糙脉孢菌中,昼夜节律时钟的同步对基因及其产物的正确时间表达至关重要,它部分受一个来自时钟组件位点的反义RNA控制。在野生型菌株中,反义频率(frq)转录本的水平在黑暗中与有义frq转录本呈反相循环,并且可被光诱导。在光诱导反义frq RNA的过程被消除的突变菌株中,内部时钟的时间相对于野生型菌株延迟,并且光对时钟的重置也发生了改变。这些数据提供了反义RNA与昼夜节律定时之间意想不到的联系,并提供了一个由天然存在的反义RNA调节的真核细胞过程的新例子。