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  2. Eukaryotic chromosome structure - Wikipedia

    en.wikipedia.org/.../Eukaryotic_chromosome_structure

    Commonly, many people think the structure of a chromosome is in an "X" shape. But this is only present when the cell divides. Researchers have now been able to model the structure of chromosomes when they are active. This is extremely important because the way that DNA folds up in chromosome structures is linked to the way DNA is used.

  3. Solenoid (DNA) - Wikipedia

    en.wikipedia.org/wiki/Solenoid_(DNA)

    The solenoid structure's most obvious function is to help package the DNA so that it is small enough to fit into the nucleus. This is a big task as the nucleus of a mammalian cell has a diameter of approximately 6 μm, whilst the DNA in one human cell would stretch to just over 2 metres long if it were unwound. [6]

  4. Chromosome - Wikipedia

    en.wikipedia.org/wiki/Chromosome

    The packaging of DNA into nucleosomes causes a 10 nanometer fibre which may further condense up to 30 nm fibres [33] Most of the euchromatin in interphase nuclei appears to be in the form of 30-nm fibers. [33] Chromatin structure is the more decondensed state, i.e. the 10-nm conformation allows transcription. [33] Heterochromatin vs. euchromatin

  5. Chromatin - Wikipedia

    en.wikipedia.org/wiki/Chromatin

    Basic units of chromatin structure the structure of chromatin within a chromosome. Chromatin undergoes various structural changes during a cell cycle. Histone proteins are the basic packers and arrangers of chromatin and can be modified by various post-translational modifications to alter chromatin packing (histone modification).

  6. DNA condensation - Wikipedia

    en.wikipedia.org/wiki/DNA_condensation

    Chromosome scaffold has important role to hold the chromatin into compact chromosome. Chromosome scaffold is made of proteins including condensin, topoisomerase IIα and kinesin family member 4 (KIF4) [7] Dinoflagellates are very divergent eukaryotes in terms of how they package their DNA. Their chromosomes are packed in a liquid-crystalline ...

  7. Chromosome scaffold - Wikipedia

    en.wikipedia.org/wiki/Chromosome_scaffold

    In biology, the chromosome scaffold is the backbone that supports the structure of the chromosomes. It is composed of a group of non-histone proteins that are essential in the structure and maintenance of eukaryotic chromosomes throughout the cell cycle. These scaffold proteins are responsible for the condensation of chromatin during mitosis. [1]

  8. Histone H1 - Wikipedia

    en.wikipedia.org/wiki/Histone_H1

    A diagram showing where H1 can be found in the nucleosome. Metazoan H1 proteins feature a central globular "winged helix" domain and long C-and short N-terminal tails. H1 is involved with the packing of the "beads on a string" sub-structures into a high order structure, whose details have not yet been solved. [1]

  9. Euchromatin - Wikipedia

    en.wikipedia.org/wiki/Euchromatin

    The unfolded structure allows gene regulatory proteins and RNA polymerase complexes to bind to the DNA sequence, which can then initiate the transcription process. [2] While not all euchromatin is necessarily transcribed, as the euchromatin is divided into transcriptionally active and inactive domains, [ 13 ] euchromatin is still generally ...