Predicting three-dimensional genome structure from transcriptional activity (original) (raw)
References
Jackson, D.A., Dickinson, P. & Cook, P.R. The size of chromatin loops in HeLa cells. EMBO J.9, 567–571 (1990). ArticleCAS Google Scholar
Pettijohn, D.E. in Escherichia coli and Salmonella typhimurium: Cellular and Molecular Biology (eds Neidhardt, F.C., Curtiss, R., Ingraham, J.L., Lin, E.C.C., Low, K.B., Magasanik, B., Reznifoff, W.S., Riley, M., Schaechter, M. & Umbarger, H.E.) 158–166 (ASM Press, Washington, 1996). Google Scholar
Cook, P.R. Principles of Nuclear Structure and Function (Wiley, New York, 2001). Google Scholar
Sachs, R.K., van den Engh, G., Trask, B., Yokota, H. & Hearst, J.E. A random walk/giant loop model for interphase chromosomes. Proc. Natl Acad. Sci. USA92, 2710–2714 (1995). ArticleCAS Google Scholar
Sedat, J. & Manuelidis, L. A direct approach to the structure of eukaryotic chromosomes. Cold Spring Harb. Symp. Quant. Biol.42, 331–350 (1978). ArticleCAS Google Scholar
Saitoh, Y. & Laemmli, U.K. From the chromosomal loops and the scaffold to the classic bands of metaphase chromosomes. Cold Spring Harb. Symp. Quant. Biol.58, 755–765 (1978). Article Google Scholar
Cook, P.R. A chromomeric model for nuclear and chromosome structure. J. Cell Sci.108, 2927–2935 (1995). CASPubMed Google Scholar
Manuelidis, L. A view of interphase chromosomes. Science250, 1533–1540 (1990). ArticleCAS Google Scholar
Li, G., Sudlow, G. & Belmont, A.S. Interphase cell cycle dynamics of a late replicating, heterochromatic homogeneously staining region: precise choreography of condensation/decondensation and nuclear positioning. J. Cell Biol.140, 975–989 (1998). ArticleCAS Google Scholar
Jackson, D.A., McCready, S.J. & Cook, P.R. Replication and transcription depend on attachment of DNA to the nuclear cage. J. Cell Sci. Suppl.1, 59–79 (1984). ArticleCAS Google Scholar
McManus, J. et al. Unusual chromosome structure of fission yeast DNA in mouse cells. J. Cell Sci.107, 469–486 (1994). CASPubMed Google Scholar
Misteli, T. The concept of self-organization in cellular architecture. J. Cell Biol.155, 181–185 (2001). ArticleCAS Google Scholar
Nedelec, F., Surrey, T., Maggs, A.C. & Leibler, S. Self-organization of microtubules and motors. Nature389, 305–308 (1997). ArticleCAS Google Scholar
Minton, A.P. The influence of macromolecular crowding and macromolecular confinement on biochemical reactions in physiological media. J. Biol. Chem.256, 10577–10580 (2001). Article Google Scholar
Ishihama, A. Subunit of assembly of Escherichia coli RNA polymerase. Adv. Biophys.14, 1–35 (1981). CASPubMed Google Scholar
Minsky, A., Shimoni, E. & Frenkiel Krispin, D. Stress, order and survival. Nature Rev. Mol. Cell Biol.3, 50–60 (2002). ArticleCAS Google Scholar
Mascarenhas, J., Weber, M.H. & Graumann, P.L. Specific polar localization of ribosomes in Bacillus subtilis depends on active transcription. EMBO Rep.2, 685–689 (2001). ArticleCAS Google Scholar
Haaf, T. & Ward, D.C. Inhibition of RNA polymerase II transcription causes chromatin decondensation, loss of nucleolar structure, and dispersion of chromosomal domains. Exp. Cell. Res.224, 163–173 (1996). ArticleCAS Google Scholar
Chubb, J.R., Boyle, S., Perry, P. & Bickmore, W.A. Chromatin motion is constrained by association with nuclear compartments in human cells. Curr. Biol.12, 439–445 (2002). ArticleCAS Google Scholar
Cook, P.R. The organization of replication and transcription. Science284, 1790–1795 (1999). ArticleCAS Google Scholar
Gelles, J. & Landick, R. RNA polymerase as a molecular motor. Cell93, 13–16 (1998). ArticleCAS Google Scholar
Maniatis, T. & Reed, R. An extensive network of coupling among gene expression machines. Nature416, 499–506 (2002). ArticleCAS Google Scholar
Lewis, P.J., Thaker, S.D. & Errington, J. Compartmentalization of transcription and translation in Bacillus subtilis. EMBO J.19, 710–718 (2000). ArticleCAS Google Scholar
Bremer, H. & Dennis, P.P. in Escherichia coli and Salmonella typhimurium: Cellular and Molecular Biology (eds Neidhardt, F.C., Curtiss, R., Ingraham, J.L., Lin, E.C.C., Low, K.B., Magasanik, B., Reznifoff, W.S., Riley, M., Schaechter, M. & Umbarger, H.E.) 1553–1569 (ASM Press, Washington, 1996). Google Scholar
Shaw, P.J. & Jordan, E.G. The nucleolus. Ann. Rev. Cell Dev. Biol.11, 93–121 (1995). ArticleCAS Google Scholar
Jackson, D.A., Iborra, F.J., Manders, E.M.M. & Cook, P.R. Numbers and organization of RNA polymerases, nascent transcripts and transcription units in HeLa nuclei. Mol. Biol. Cell9, 1523–1536 (1998). ArticleCAS Google Scholar
Lemon, K.P. & Grossman, A.D. The extrusion capture model for chromosome partitioning in bacteria. Genes Dev.15, 2031–2041 (2001). ArticleCAS Google Scholar
Pombo, A. et al. Regional and temporal specialization in the nucleus: a transcriptionally-active nuclear domain rich in PTF, Oct1 and PIKA antigens associates with specific chromosomes early in the cell cycle. EMBO J.17, 1768–1778 (1998). ArticleCAS Google Scholar
Frey, M.R., Bailey, A.D., Weiner, A.M. & Matera, A.G. Association of snRNA genes with coiled bodies is mediated by nascent snRNA transcripts. Curr. Biol.9, 126–135 (1999). ArticleCAS Google Scholar
Cook, P.R. The transcriptional basis of chromosome pairing. J. Cell Sci.110, 1033–1040 (1997). CASPubMed Google Scholar
McKee, B.D., Habera, L. & Vrana, J.A. Evidence that intergenic spacer repeats of Drosophila melanogaster rRNA genes function as X–Y pairing sites in male meiosis, and a general model for achiasmatic pairing. Genetics132, 529–544 (1992). CASPubMedPubMed Central Google Scholar
Hiraoka, Y. et al. The onset of homologous chromosome pairing during Drosophila melanogaster embryogenesis. J. Cell Biol.120, 591–600 (1993). ArticleCAS Google Scholar
Henikoff, S. Heterochromatin function in complex genomes. Biochim. Biophys. Acta.1470, 1–8 (2000). Google Scholar
Kurz, A. et al. Active and inactive genes localize preferentially in the periphery of chromosome territories. J. Cell Biol.135, 1195–1205 (1996). ArticleCAS Google Scholar
Abranches, R., Beven, A.F., Aragon-Alcaide, L. & Shaw, P.J. Transcription sites are not correlated with chromosome territories in wheat nuclei. J. Cell Biol.143, 5–12 (1998). ArticleCAS Google Scholar
Sudbrak, R. et al. X chromosome specific cDNA arrays: identification of genes that escape from X inactivation and other applications. Hum. Mol. Genet.10, 77–83 (2001). ArticleCAS Google Scholar
Jenuwein, T. & Allis, C.D. Translating the histone code. Science201, 1074–1080 (2001). Article Google Scholar
Pederson, T. Half a century of 'the nuclear matrix'. Mol. Biol. Cell11, 799–805 (2000). ArticleCAS Google Scholar
Jackson, D.A., Bartlett, J. & Cook, P.R. Sequences attaching loops of nuclear and mitochondrial DNA to underlying structures in human cells: the role of transcription units. Nucleic Acids Res.24, 1212–1219 (1996). ArticleCAS Google Scholar
Christensen, M.O. et al. Dynamics of human DNA topoisomerases IIα and IIβ in living cells. J. Cell Biol.157, 31–44 (2002). ArticleCAS Google Scholar
Gribnau, J., Diderich, K., Pruzina, S., Calzolari, R. & Fraser, P. Intergenic transcription and developmental remodeling of chromatin subdomains in the human β-globin locus. Mol. Cell5, 377–386 (2000). ArticleCAS Google Scholar
Glover, D.M., Leibowitz, M.H., McLean, D.A. & Parry, H. Mutations in aurora prevent centrosome separation leading to the formation of monopolar spindles. Cell81, 95–105 (1995). ArticleCAS Google Scholar
Nickerson, J.A. Experimental observations of a nuclear matrix. J. Cell Sci.114, 463–474 (2001). CASPubMed Google Scholar
Manders, E.M.M., Kimura, H. & Cook, P.R. Direct imaging of DNA in living cells reveals the dynamics of chromosome formation. J. Cell Biol.144, 813–822 (1999). ArticleCAS Google Scholar
Sugaya, K., Vigneron, M. & Cook, P.R. Mammalian cell lines expressing functional RNA polymerase II tagged with the green fluorescent protein. J. Cell Sci.113, 2679–2683 (2000). CASPubMed Google Scholar
Pombo, A. et al. Regional specialization in human nuclei: visualization of discrete sites of transcription by RNA polymerase III. EMBO J.18, 2241–2253 (1999). ArticleCAS Google Scholar
Lercher, M.J., Urrutia, A.O. & Hurst, L.D. Clustering of housekeeping genes provides a unified model of gene order in the human genome. Nat. Genet.31, 180–183 (2002). ArticleCAS Google Scholar
Marshall, W.F. et al. Interphase chromosomes undergo constrained diffusional motion in living cells. Curr. Biol.7, 930–939 (1997). ArticleCAS Google Scholar
Liu, L.F. & Wang, J.C. Supercoiling of the DNA template during transcription. Proc. Natl Acad. Sci. USA84, 7024–7027 (1987). ArticleCAS Google Scholar