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Showing 1 to 3 of 3 for “"30 nm fibers"”.

  1. Reexamining the role of linker histones beyond 30 nm fibers in a complex chromatin environment

    … DNA to form the nucleosome and the basis for 10 nm fibers. Linker histones also play an important role in chromatin compaction. Previous work showed that linker histones are important for the formation of 30 nm structures. 30 nm structures were long held to be folding intermediates for repressive …

    colostate Repository record for Reexamining the role of linker histones beyond 30 nm fibers in a complex chromatin environment (opens in a new tab)

  2. Biophysical studies of chromatin folding and unfolding

    … folding forms the higher order structure, 30-nm fibers in which form most DNA in interphase nuclei is maintained. Nucleosomes arrange helically at this level, but the connectivity of the nucleosomes is unclear, and depends on the structure of linker DNA.

    uiuc Repository record for Biophysical studies of chromatin folding and unfolding (opens in a new tab)

  3. Understanding Chromatin Organization and Dynamics with Coarse-Grained Modeling

    … nucleosomes are organized as ordered chromatin fibers or disordered chromatin arrays. Furthermore, chromatin and related proteins can function within condensate environments. Computational modeling provides valuable insights into such complex biological processes. Considering the complexity of …

    mit Repository record for Understanding Chromatin Organization and Dynamics with Coarse-Grained Modeling (opens in a new tab)