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      Functional architecture in the cell nucleus

      1 , 1
      Biochemical Journal
      Portland Press Ltd.

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          Abstract

          The major functions of the cell nucleus, including transcription, pre-mRNA splicing and ribosome assembly, have been studied extensively by biochemical, genetic and molecular methods. An overwhelming amount of information about their molecular mechanisms is available. In stark contrast, very little is known about how these processes are integrated into the structural framework of the cell nucleus and how they are spatially and temporally co-ordinated within the three-dimensional confines of the nucleus. It is also largely unknown how nuclear architecture affects gene expression. In order to understand how genomes are organized, and how they function, the basic principles that govern nuclear architecture and function must be uncovered. Recent work combining molecular, biochemical and cell biological methods is beginning to shed light on how the nucleus functions and how genes are expressed in vivo. It has become clear that the nucleus contains distinct compartments and that many nuclear components are highly dynamic. Here we describe the major structural compartments of the cell nucleus and discuss their established and proposed functions. We summarize recent observations regarding the dynamic properties of chromatin, mRNA and nuclear proteins, and we consider the implications these findings have for the organization of nuclear processes and gene expression. Finally, we speculate that self-organization might play a substantial role in establishing and maintaining nuclear organization.

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          Author and article information

          Journal
          Biochemical Journal
          Portland Press Ltd.
          0264-6021
          1470-8728
          June 01 2001
          June 01 2001
          May 24 2001
          : 356
          : 2
          : 297-310
          Affiliations
          [1 ]National Cancer Institute, NIH, 41 Library Drive, Building 41, Bethesda, MD 20892, U.S.A.
          Article
          10.1042/bj3560297
          1221839
          11368755
          23e66108-d723-4259-91ab-1406fbe79990
          © 2001
          History

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