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  2. 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]

  3. 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 ...

  4. Chromosome - Wikipedia

    en.wikipedia.org/wiki/Chromosome

    This is an accepted version of this page This is the latest accepted revision, reviewed on 12 January 2025. DNA molecule containing genetic material of a cell This article is about the DNA molecule. For the genetic algorithm, see Chromosome (genetic algorithm). Chromosome (10 7 - 10 10 bp) DNA Gene (10 3 - 10 6 bp) Function A chromosome and its packaged long strand of DNA unraveled. The DNA's ...

  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. Eukaryotic chromosome structure - Wikipedia

    en.wikipedia.org/.../Eukaryotic_chromosome_structure

    Each chromosome consists enormously long linear DNA molecule associated with proteins that fold and pack the fine thread of DNA into a more compact structure. [2] Commonly, many people think the structure of a chromosome is in an "X" shape. But this is only present when the cell divides.

  7. Chromatin remodeling - Wikipedia

    en.wikipedia.org/wiki/Chromatin_remodeling

    The level of nucleosomal packaging can have profound consequences on all DNA-mediated processes including gene regulation. Euchromatin (loose or open chromatin) structure is permissible for transcription whereas heterochromatin (tight or closed chromatin) is more compact and refractory to factors that need to gain access to the DNA template.

  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. Heterochromatin - Wikipedia

    en.wikipedia.org/wiki/Heterochromatin

    General model for duplication of heterochromatin during cell division Microscopy of heterochromatic versus euchromatic nuclei ().. Heterochromatin has been associated with several functions, from gene regulation to the protection of chromosome integrity; [13] some of these roles can be attributed to the dense packing of DNA, which makes it less accessible to protein factors that usually bind ...