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热休克可延长一种小RNA的寿命并诱导其在细胞中积累。

Heat shock increases lifetime of a small RNA and induces its accumulation in cells.

作者信息

Tatosyan Karina A, Kramerov Dmitri A

机构信息

Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, 119991 Moscow, Russian Federation.

Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, 119991 Moscow, Russian Federation.

出版信息

Gene. 2016 Aug 1;587(1):33-41. doi: 10.1016/j.gene.2016.04.025. Epub 2016 Apr 13.

Abstract

4.5SH and 4.5SI RNA are two abundant small non-coding RNAs specific for several related rodent families including Muridae. These RNAs have a number of common characteristics such as the short length (about 100nt), transcription by RNA polymerase III, and origin from Short Interspersed Elements (SINEs). However, their stabilities in cells substantially differ: the half-life of 4.5SH RNA is about 20min, while that of 4.5SI RNA is 22h. Here we studied the influence of cell stress such as heat shock or viral infection on these two RNAs. We found that the level of 4.5SI RNA did not change in stressed cells; whereas heat shock increased the abundance of 4.5SH RNA 3.2-10.5 times in different cell lines; and viral infection, 5 times. Due to the significant difference in the turnover rates of these two RNAs, a similar activation of their transcription by heat shock increases the level of the short-lived 4.5SH RNA and has minor effect on the level of the long-lived 4.5SI RNA. In addition, the accumulation of 4.5SH RNA results not only from the induction of its transcription but also from a substantial retardation of its decay. To our knowledge, it is the first example of a short-lived non-coding RNA whose elongated lifetime contributes significantly to its accumulation in stressed cells.

摘要

4.5SH和4.5SI RNA是两种丰富的小非编码RNA,对包括鼠科在内的几个相关啮齿动物家族具有特异性。这些RNA具有许多共同特征,如长度较短(约100个核苷酸)、由RNA聚合酶III转录以及起源于短散在元件(SINEs)。然而,它们在细胞中的稳定性有很大差异:4.5SH RNA的半衰期约为20分钟,而4.5SI RNA的半衰期为22小时。在此,我们研究了热休克或病毒感染等细胞应激对这两种RNA的影响。我们发现,在应激细胞中4.5SI RNA的水平没有变化;而热休克使不同细胞系中4.5SH RNA的丰度增加了3.2至10.5倍;病毒感染使其增加了5倍。由于这两种RNA的周转率存在显著差异,热休克对它们转录的类似激活增加了短寿命的4.5SH RNA的水平,而对长寿命的4.5SI RNA的水平影响较小。此外,4.5SH RNA的积累不仅源于其转录的诱导,还源于其衰变的显著延迟。据我们所知,这是短寿命非编码RNA的首个例子,其延长的寿命对其在应激细胞中的积累有显著贡献。

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