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核聚腺苷酸RNA在活细胞染色质间空间中的移动。

Movement of nuclear poly(A) RNA throughout the interchromatin space in living cells.

作者信息

Politz J C, Tuft R A, Pederson T, Singer R H

机构信息

Department of Biochemistry and Molecular Biology, Biomedical Imaging Center, University of Massachusetts Medical School, Worcester, Massachusetts 01605, USA.

出版信息

Curr Biol. 1999 Mar 25;9(6):285-91. doi: 10.1016/s0960-9822(99)80136-5.

Abstract

BACKGROUND

Messenger RNA (mRNA) is transcribed and processed in the nucleus of eucaryotic cells and then exported to the cytoplasm through nuclear pores. It is not known whether the movement of mRNA from its site of synthesis to the nuclear pore is directed or random. Directed movement would suggest that there is an energy-requiring step in addition to the step required for active transport through the pore, whereas random movement would indicate that mRNAs can make their way to the nuclear envelope by diffusion.

RESULTS

We devised a method to visualize movement of endogenous polymerase II transcripts in the nuclei of living cells. Oligo(dT) labeled with chemically masked (caged) fluorescein was allowed to penetrate cells and hybridize to nuclear poly(A) RNA. Laser spot photolysis then uncaged the oligo(dT) at a given intranuclear site and the resultant fluorescent, hybridized oligo(dT) was tracked using high-speed imaging microscopy. Poly(A) RNA moved away from the uncaging spot in all directions with a mean square displacement that varied linearly with time, and the same apparent diffusion coefficient was measured for the movement at both 37 degrees C and 23 degrees C. These properties are characteristic of a random diffusive process. High resolution three-dimensional imaging of live cells containing both Hoechst-labeled chromosomes and uncaged oligo(dT) showed that, excluding nucleoli, the poly(A) RNA could access most, if not all, of the non-chromosomal space in the nucleus.

CONCLUSIONS

Poly(A) RNA can move freely throughout the interchromatin space of the nucleus with properties characteristic of diffusion.

摘要

背景

信使核糖核酸(mRNA)在真核细胞的细胞核中进行转录和加工,然后通过核孔输出到细胞质中。目前尚不清楚mRNA从其合成位点到核孔的移动是定向的还是随机的。定向移动意味着除了通过核孔进行主动运输所需的步骤外,还存在一个需要能量的步骤,而随机移动则表明mRNA可以通过扩散到达核膜。

结果

我们设计了一种方法来可视化活细胞细胞核中内源性聚合酶II转录本的移动。将用化学掩蔽(笼化)荧光素标记的寡聚(dT)允许穿透细胞并与核聚(A)RNA杂交。然后通过激光光斑光解在给定的核内位点解开寡聚(dT)的笼化,使用高速成像显微镜跟踪产生的荧光杂交寡聚(dT)。聚(A)RNA从光解位点向各个方向移动,其均方位移随时间呈线性变化,并且在37℃和23℃下测量到的移动表观扩散系数相同。这些特性是随机扩散过程的特征。对同时含有Hoechst标记染色体和未笼化寡聚(dT)的活细胞进行高分辨率三维成像显示,排除核仁后,聚(A)RNA可以进入细胞核中大部分(如果不是全部)非染色体空间。

结论

聚(A)RNA可以在细胞核的染色质间空间中自由移动,具有扩散的特性。

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