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Tdrd6a Regulates the Aggregation of Buc into Functional Subcellular Compartments that Drive Germ Cell Specification

Phase separation represents an important form of subcellular compartmentalization. However, relatively little is known about how the formation or disassembly of such compartments is regulated. In zebrafish, the Balbiani body (Bb) and the germ plasm (Gp) are intimately linked phase-separated structur...

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Autores principales: Roovers, Elke F., Kaaij, Lucas J.T., Redl, Stefan, Bronkhorst, Alfred W., Wiebrands, Kay, de Jesus Domingues, António M., Huang, Hsin-Yi, Han, Chung-Ting, Riemer, Stephan, Dosch, Roland, Salvenmoser, Willi, Grün, Dominic, Butter, Falk, van Oudenaarden, Alexander, Ketting, René F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6084408/
https://www.ncbi.nlm.nih.gov/pubmed/30086300
http://dx.doi.org/10.1016/j.devcel.2018.07.009
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author Roovers, Elke F.
Kaaij, Lucas J.T.
Redl, Stefan
Bronkhorst, Alfred W.
Wiebrands, Kay
de Jesus Domingues, António M.
Huang, Hsin-Yi
Han, Chung-Ting
Riemer, Stephan
Dosch, Roland
Salvenmoser, Willi
Grün, Dominic
Butter, Falk
van Oudenaarden, Alexander
Ketting, René F.
author_facet Roovers, Elke F.
Kaaij, Lucas J.T.
Redl, Stefan
Bronkhorst, Alfred W.
Wiebrands, Kay
de Jesus Domingues, António M.
Huang, Hsin-Yi
Han, Chung-Ting
Riemer, Stephan
Dosch, Roland
Salvenmoser, Willi
Grün, Dominic
Butter, Falk
van Oudenaarden, Alexander
Ketting, René F.
author_sort Roovers, Elke F.
collection PubMed
description Phase separation represents an important form of subcellular compartmentalization. However, relatively little is known about how the formation or disassembly of such compartments is regulated. In zebrafish, the Balbiani body (Bb) and the germ plasm (Gp) are intimately linked phase-separated structures essential for germ cell specification and home to many germ cell-specific mRNAs and proteins. Throughout development, these structures occur as a single large aggregate (Bb), which disperses throughout oogenesis and upon fertilization accumulates again into relatively large assemblies (Gp). Formation of the Bb requires Bucky ball (Buc), a protein with prion-like properties. We found that the multi-tudor domain-containing protein Tdrd6a interacts with Buc, affecting its mobility and aggregation properties. Importantly, lack of this regulatory interaction leads to significant defects in germ cell development. Our work presents insights into how prion-like protein aggregations can be regulated and highlights the biological relevance of such regulatory events.
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spelling pubmed-60844082018-08-10 Tdrd6a Regulates the Aggregation of Buc into Functional Subcellular Compartments that Drive Germ Cell Specification Roovers, Elke F. Kaaij, Lucas J.T. Redl, Stefan Bronkhorst, Alfred W. Wiebrands, Kay de Jesus Domingues, António M. Huang, Hsin-Yi Han, Chung-Ting Riemer, Stephan Dosch, Roland Salvenmoser, Willi Grün, Dominic Butter, Falk van Oudenaarden, Alexander Ketting, René F. Dev Cell Article Phase separation represents an important form of subcellular compartmentalization. However, relatively little is known about how the formation or disassembly of such compartments is regulated. In zebrafish, the Balbiani body (Bb) and the germ plasm (Gp) are intimately linked phase-separated structures essential for germ cell specification and home to many germ cell-specific mRNAs and proteins. Throughout development, these structures occur as a single large aggregate (Bb), which disperses throughout oogenesis and upon fertilization accumulates again into relatively large assemblies (Gp). Formation of the Bb requires Bucky ball (Buc), a protein with prion-like properties. We found that the multi-tudor domain-containing protein Tdrd6a interacts with Buc, affecting its mobility and aggregation properties. Importantly, lack of this regulatory interaction leads to significant defects in germ cell development. Our work presents insights into how prion-like protein aggregations can be regulated and highlights the biological relevance of such regulatory events. Cell Press 2018-08-06 /pmc/articles/PMC6084408/ /pubmed/30086300 http://dx.doi.org/10.1016/j.devcel.2018.07.009 Text en © 2018 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Roovers, Elke F.
Kaaij, Lucas J.T.
Redl, Stefan
Bronkhorst, Alfred W.
Wiebrands, Kay
de Jesus Domingues, António M.
Huang, Hsin-Yi
Han, Chung-Ting
Riemer, Stephan
Dosch, Roland
Salvenmoser, Willi
Grün, Dominic
Butter, Falk
van Oudenaarden, Alexander
Ketting, René F.
Tdrd6a Regulates the Aggregation of Buc into Functional Subcellular Compartments that Drive Germ Cell Specification
title Tdrd6a Regulates the Aggregation of Buc into Functional Subcellular Compartments that Drive Germ Cell Specification
title_full Tdrd6a Regulates the Aggregation of Buc into Functional Subcellular Compartments that Drive Germ Cell Specification
title_fullStr Tdrd6a Regulates the Aggregation of Buc into Functional Subcellular Compartments that Drive Germ Cell Specification
title_full_unstemmed Tdrd6a Regulates the Aggregation of Buc into Functional Subcellular Compartments that Drive Germ Cell Specification
title_short Tdrd6a Regulates the Aggregation of Buc into Functional Subcellular Compartments that Drive Germ Cell Specification
title_sort tdrd6a regulates the aggregation of buc into functional subcellular compartments that drive germ cell specification
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6084408/
https://www.ncbi.nlm.nih.gov/pubmed/30086300
http://dx.doi.org/10.1016/j.devcel.2018.07.009
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