File:Model for XIST RNA spread from X inactivation center.jpg

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Model for XIST RNA spread from X inactivation center

Model showing how heterochromatin of the Xi could transition between metaphase and interphase to be organized into the two nonoverlapping heterochromatin territories and to explain how XIST RNA could rapidly spread in cis outward from the X inactivation center (XIC) along only part of the Xi.


Links: X Inactivation | Molecular Development | Female Development

Reference

Chadwick BP & Willard HF. (2004). Multiple spatially distinct types of facultative heterochromatin on the human inactive X chromosome. Proc. Natl. Acad. Sci. U.S.A. , 101, 17450-5. PMID: 15574503 DOI.

Copyright

Proceedings National Academy of Sciences (PNAS) Liberalization of PNAS copyright policy: Noncommercial use freely allowed Note original Author should be contacted for permission to reuse for Educational purposes. See also PNAS Author Rights and Permission FAQs

Cozzarelli NR, Fulton KR, Sullenberger DM. Liberalization of PNAS copyright policy: noncommercial use freely allowed. Proc Natl Acad Sci U S A. 2004 Aug 24;101(34):12399. PMID15314225 "Our guiding principle is that, while PNAS retains copyright, anyone can make noncommercial use of work in PNAS without asking our permission, provided that the original source is cited."

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Copyright

© 2004, The National Academy of Sciences

Original image name: Fig. 4. http://www.pnas.org/content/101/50/17450/F4.large.jpg


Cite this page: Hill, M.A. (2021, November 28) Embryology Model for XIST RNA spread from X inactivation center.jpg. Retrieved from https://embryology.med.unsw.edu.au/embryology/index.php/File:Model_for_XIST_RNA_spread_from_X_inactivation_center.jpg

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current11:26, 29 May 2011Thumbnail for version as of 11:26, 29 May 20111,000 × 642 (104 KB)S8600021 (talk | contribs)==Model for XIST RNA spread from X inactivation center== Model showing how heterochromatin of the Xi could transition between metaphase and interphase to be organized into the two nonoverlapping heterochromatin territories and to explain how XIST RNA cou