PIWI-mediated control of tissue-specific transposons is essential for somatic cell differentiation
In: Cell Reports, Jg. 37 (2021-10-01), S. 109776-109776
Online
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Zugriff:
SUMMARY PIWI proteins are known as mediators of transposon silencing in animal germlines but are also found in adult pluripotent stem cells of highly regenerative animals, where they are essential for regeneration. Study of the nuclear PIWI protein SMEDWI-2 in the planarian somatic stem cell system reveals an intricate interplay between transposons and cell differentiation in which a subset of transposons is inevitably activated during cell differentiation, and the PIWI protein is required to regain control. Absence of SMEDWI-2 leads to tissue-specific transposon derepression related to cell-type-specific chromatin remodeling events and in addition causes reduced accessibility of lineage-specific genes and defective cell differentiation, resulting in fatal tissue dysfunction. Finally, we show that additional PIWI proteins provide a stem-cell-specific second layer of protection in planarian neoblasts. These findings reveal a far-reaching role of PIWI proteins and PIWI-interacting RNAs (piRNAs) in stem cell biology and cell differentiation.
Graphical Abstract
In brief Chromatin reorganization is an essential part of cell differentiation but risks reactivation of silenced repetitive elements. Li et al. show that planarians use continuous surveillance by a nuclear PIWI protein to chaperone the chromatin transition from pluripotent to differentiated cell, which is crucial for the planarian’s impressive regeneration and homeostasis.
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PIWI-mediated control of tissue-specific transposons is essential for somatic cell differentiation
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Autor/in / Beteiligte Person: | Taylor, David H. ; Josien C. van Wolfswinkel ; Li, Danyan |
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Zeitschrift: | Cell Reports, Jg. 37 (2021-10-01), S. 109776-109776 |
Veröffentlichung: | Elsevier BV, 2021 |
Medientyp: | unknown |
ISSN: | 2211-1247 (print) |
DOI: | 10.1016/j.celrep.2021.109776 |
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