Dynamics of Single mRNPs in Nuclei of Living Cells

Author:

Shav-Tal Yaron12,Darzacq Xavier12,Shenoy Shailesh M.12,Fusco Dahlene12,Janicki Susan M.12,Spector David L.12,Singer Robert H.12

Affiliation:

1. Departments of Anatomy and Structural Biology and Cell Biology, Albert Einstein College of Medicine, Bronx, NY 10461, USA.

2. Cold Spring Harbor Laboratory, 1 Bungtown Road, Cold Spring Harbor, NY 11724, USA.

Abstract

Understanding gene expression requires the ability to follow the fate of individual molecules. Here we use a cellular system for monitoring messenger RNA (mRNA)expression to characterize the movement in real time of single mRNA-protein complexes (mRNPs) in the nucleus of living mammalian cells. This mobility was not directed but was governed by simple diffusion. Some mRNPs were partially corralled throughout the nonhomogenous nuclear environment, but no accumulation at subnuclear domains was observed. Following energy deprivation, energy-independent motion of mRNPs was observed in a highly ATP-dependent nuclear environment; movements were constrained to chromatin-poor domains and excluded by newly formed chromatin barriers. This observation resolves a controversy, showing that the energetic requirements of nuclear mRNP trafficking are consistent with a diffusional model.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference21 articles.

1. D. Fuscoet al., Curr. Biol.13, 161 (2003).

2. From Silencing to Gene Expression

3. Materials methods and additional data are available as supporting material on Science Online.

4. T. Tsukamotoet al., Nature Cell Biol.2, 871 (2000).

5. Movies S1 to S23 are available at http://singerlab.org/supplements/science_v304p1797.

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