scholarly journals Tdrd6a regulates the aggregation of Buc into functional subcellular compartments that drive germ cell specification

2018 ◽  
Author(s):  
Elke F. Roovers ◽  
Lucas J.T. Kaaij ◽  
Stefan Redl ◽  
Alfred W. Bronkhorst ◽  
Kay Wiebrands ◽  
...  

SummaryIn recent years, it has become clear that phase separation represents an important class 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 phase-separated structures essential for germ cell specification and home to many germ cell-specific mRNAs and proteins. Throughout development, these structures range from a single large aggregate (Bb), to a dispersed state and back to 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 directly 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 a new mechanism for how prion-like protein-aggregations can be regulated and highlights the biological relevance of such regulatory events.

2020 ◽  
Vol 4 (3) ◽  
pp. e202000912
Author(s):  
Nicholas Vrettos ◽  
Manolis Maragkakis ◽  
Panagiotis Alexiou ◽  
Paraskevi Sgourdou ◽  
Fadia Ibrahim ◽  
...  

Aub guided by piRNAs ensures genome integrity by cleaving retrotransposons, and genome propagation by trapping mRNAs to form the germplasm that instructs germ cell formation. Arginines at the N-terminus of Aub (Aub–NTRs) interact with Tudor and other Tudor domain–containing proteins (TDRDs). Aub–TDRD interactions suppress active retrotransposons via piRNA amplification and form germplasm via generation of Aub–Tudor ribonucleoproteins. Here, we show that Aub–NTRs are dispensable for primary piRNA biogenesis but essential for piRNA amplification and that their symmetric dimethylation is required for germplasm formation and germ cell specification but largely redundant for piRNA amplification.


2021 ◽  
Author(s):  
Nadia Rostam ◽  
Alexander Goloborodko ◽  
Stephan Riemer ◽  
Andres Hertel ◽  
Sabine Klein ◽  
...  

AbstractThe zebrafish germline is specified during early embryogenesis by inherited maternal RNAs and proteins collectively called germ plasm. Only the cells containing germ plasm will become part of the germline, whereas other cells will commit to somatic cell fates. Therefore, proper localization of germ plasm is key for germ cell specification and its removal is critical for the development of soma. The molecular mechanism underlying this process in vertebrates is largely unknown. Here we show that germ plasm localization in zebrafish is similar toXenopusand amniotes but distinct fromDrosophila. We identified non muscle myosin II (NMII) and tight junction (TJ) components as interaction candidates of Bucky ball (Buc), which is the germ plasm organizer in zebrafish. Remarkably, we also found that TJ protein ZO1 colocalizes with germ plasm and electron microscopy (EM) of zebrafish embryos uncovered TJ like structures at early cleavage furrows. In addition, injection of the TJ-receptor Claudin-d (Cldn-d) produced extra germ plasm aggregates. Our findings discover for the first time a role of TJs in germ plasm localization.


2013 ◽  
Vol 23 (10) ◽  
pp. 835-842 ◽  
Author(s):  
Ben Ewen-Campen ◽  
Seth Donoughe ◽  
Donald Nat Clarke ◽  
Cassandra G. Extavour

2017 ◽  
Vol 65 (3) ◽  
pp. 460-475.e6 ◽  
Author(s):  
Deqing Hu ◽  
Xin Gao ◽  
Kaixiang Cao ◽  
Marc A. Morgan ◽  
Gloria Mas ◽  
...  

Science ◽  
2007 ◽  
Vol 316 (5823) ◽  
pp. 394-396 ◽  
Author(s):  
K. Hayashi ◽  
S. M. C. de Sousa Lopes ◽  
M. A. Surani

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