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通过iFRAP研究揭示的活细胞中斑点处前体mRNA和多聚腺苷酸化RNA的动态变化。

The dynamics of pre-mRNAs and poly(A)+ RNA at speckles in living cells revealed by iFRAP studies.

作者信息

Ishihama Yo, Tadakuma Hisashi, Tani Tokio, Funatsu Takashi

机构信息

Major in Integrative Bioscience and Biomedical Engineering, Graduate School of Science and Engineering, Waseda University, Shinjuku-ku, Tokyo 169-8555, Japan.

出版信息

Exp Cell Res. 2008 Feb 15;314(4):748-62. doi: 10.1016/j.yexcr.2007.10.023. Epub 2007 Nov 9.

Abstract

Speckles are subnuclear domains where pre-mRNA splicing factors accumulate in the interchromatin space. To investigate the dynamics of mRNAs at speckles, fluorescently labeled Drosophila Fushitarazu (ftz) pre-mRNAs were microinjected into the nuclei of Cos7 cells and the dissociation kinetics of pre-mRNAs from speckles was analyzed using photobleaching techniques. The microinjected ftz pre-mRNAs accumulated in speckles in an intron-dependent manner and were spliced and exported to the cytoplasm with a half-time of about 10 min. Dissociation of the accumulated pre-mRNAs in speckles exhibited rapid diffusion and slow-dissociation of about 100 s. The slow-dissociation required metabolic energy of ATP. Two types of splice-defective mutated mRNAs dissociated from the speckle with a time constant similar to that of wild-type mRNA, indicating that slow-dissociation was not coupled to the splicing reaction. Furthermore, some pre-mRNAs shuttled between speckles and nucleoplasm, suggesting that pre-mRNAs repeatedly associated with and dissociated from speckles until introns were removed. Next, endogenous poly(A)+ RNA was visualized by injecting Cy3-labeled 2'O-methyl oligo(U)22 probes. Some poly(A)+ RNA distributed diffusely within the nucleus, but some of them accumulated in speckles and dissociated at time constant of about 100 s.

摘要

斑点是核内亚结构域,前体mRNA剪接因子在染色质间空间聚集于此。为了研究斑点处mRNA的动态变化,将荧光标记的果蝇腹节基因(ftz)前体mRNA显微注射到Cos7细胞的细胞核中,并使用光漂白技术分析前体mRNA从斑点处的解离动力学。显微注射的ftz前体mRNA以内含子依赖的方式在斑点处聚集,并以约10分钟的半衰期进行剪接并转运到细胞质中。斑点处积累的前体mRNA的解离表现出快速扩散和大约100秒的缓慢解离。这种缓慢解离需要ATP的代谢能量。两种剪接缺陷型突变mRNA从斑点处解离的时间常数与野生型mRNA相似,表明缓慢解离与剪接反应无关。此外,一些前体mRNA在斑点和核质之间穿梭,这表明前体mRNA在去除内含子之前会反复与斑点结合和解离。接下来,通过注射Cy3标记的2'O-甲基寡聚(U)22探针来观察内源性多聚腺苷酸(poly(A)+)RNA。一些poly(A)+ RNA在细胞核内呈弥散分布,但其中一些聚集在斑点处,并以约100秒的时间常数解离。

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