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Phase separation drives X-chromosome inactivation: a hypothesis
by
Avner, Philip
, Guttman, Mitchell
, Tartaglia, Gian Gaetano
, Armaos Alexandros
, Neumayer Christoph
, Cerase, Andrea
in
Chromatin
/ Chromosomes
/ Computer applications
/ Deactivation
/ Hypotheses
/ Inactivation
/ Non-coding RNA
/ Phase separation
/ X chromosomes
/ X-chromosome inactivation
2019
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Phase separation drives X-chromosome inactivation: a hypothesis
by
Avner, Philip
, Guttman, Mitchell
, Tartaglia, Gian Gaetano
, Armaos Alexandros
, Neumayer Christoph
, Cerase, Andrea
in
Chromatin
/ Chromosomes
/ Computer applications
/ Deactivation
/ Hypotheses
/ Inactivation
/ Non-coding RNA
/ Phase separation
/ X chromosomes
/ X-chromosome inactivation
2019
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Phase separation drives X-chromosome inactivation: a hypothesis
by
Avner, Philip
, Guttman, Mitchell
, Tartaglia, Gian Gaetano
, Armaos Alexandros
, Neumayer Christoph
, Cerase, Andrea
in
Chromatin
/ Chromosomes
/ Computer applications
/ Deactivation
/ Hypotheses
/ Inactivation
/ Non-coding RNA
/ Phase separation
/ X chromosomes
/ X-chromosome inactivation
2019
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Phase separation drives X-chromosome inactivation: a hypothesis
Journal Article
Phase separation drives X-chromosome inactivation: a hypothesis
2019
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Overview
The long non-coding RNA Xist induces heterochromatinization of the X chromosome by recruiting repressive protein complexes to chromatin. Here we gather evidence, from the literature and from computational analyses, showing that Xist assemblies are similar in size, shape and composition to phase-separated condensates, such as paraspeckles and stress granules. Given the progressive sequestration of Xist’s binding partners during X-chromosome inactivation, we formulate the hypothesis that Xist uses phase separation to perform its function.
Publisher
Nature Publishing Group
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