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Germ Cell-less Promotes Centrosome Segregation to Induce Germ Cell Formation.


ABSTRACT: The primordial germ cells (PGCs) specified during embryogenesis serve as progenitors to the adult germline stem cells. In Drosophila, the proper specification and formation of PGCs require both centrosomes and germ plasm, which contains the germline determinants. Centrosomes are microtubule (MT)-organizing centers that ensure the faithful segregation of germ plasm into PGCs. To date, mechanisms that modulate centrosome behavior to engineer PGC development have remained elusive. Only one germ plasm component, Germ cell-less (Gcl), is known to play a role in PGC formation. Here, we show that Gcl engineers PGC formation by regulating centrosome dynamics. Loss of gcl leads to aberrant centrosome separation and elaboration of the astral MT network, resulting in inefficient germ plasm segregation and aborted PGC cellularization. Importantly, compromising centrosome separation alone is sufficient to mimic the gcl loss-of-function phenotypes. We conclude Gcl functions as a key regulator of centrosome separation required for proper PGC development.

SUBMITTER: Lerit DA 

PROVIDER: S-EPMC5327791 | biostudies-literature | 2017 Jan

REPOSITORIES: biostudies-literature

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Germ Cell-less Promotes Centrosome Segregation to Induce Germ Cell Formation.

Lerit Dorothy A DA   Shebelut Conrad W CW   Lawlor Kristen J KJ   Rusan Nasser M NM   Gavis Elizabeth R ER   Schedl Paul P   Deshpande Girish G  

Cell reports 20170101 4


The primordial germ cells (PGCs) specified during embryogenesis serve as progenitors to the adult germline stem cells. In Drosophila, the proper specification and formation of PGCs require both centrosomes and germ plasm, which contains the germline determinants. Centrosomes are microtubule (MT)-organizing centers that ensure the faithful segregation of germ plasm into PGCs. To date, mechanisms that modulate centrosome behavior to engineer PGC development have remained elusive. Only one germ pla  ...[more]

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