Related Experiment Video
Updated: Jan 3, 2026

Author Spotlight: PGC Cryopreservation – An Alternative Approach Towards Long-Term Preservation of Drosophila Strains
Published on: December 1, 2023
Drosophila pericentrin-like protein promotes the formation of primordial germ cells
Junnan Fang1, Dorothy A Lerit1
1Department of Cell Biology, Emory University School of Medicine, Atlanta, Georgia.
Insights
Pericentrin-like protein (PLP) is crucial for primordial germ cell (PGC) development in Drosophila. It regulates microtubule organization and centrosome separation, ensuring germ plasm segregation and PGC formation.
Area of Science:
- Developmental Biology
- Cell Biology
- Genetics
Background:
- Primordial germ cells (PGCs) are essential for reproduction, originating early in embryogenesis.
- Their specification relies on germ plasm inheritance and cytoskeletal organization.
- Centrosomes play a key role in coordinating microtubule and actin dynamics for PGC development.
Purpose of the Study:
- To investigate the role of Pericentrin-like protein (PLP) in primordial germ cell (PGC) development.
- To understand how PLP contributes to germ plasm segregation and pole bud formation in Drosophila melanogaster.
Main Methods:
- Utilized Drosophila melanogaster as a model organism.
- Investigated the function of the centrosome protein PLP in PGC formation.
- Examined PLP's role in regulating microtubule organization and centrosome separation.
Main Results:
- PLP is required for segregating germ plasm from somatic cells.
- PLP regulates microtubule organization and centrosome separation during PGC development.
- PLP activity promotes pole bud protrusion and germ plasm distribution in proliferating PGCs.
Conclusions:
- PLP is a critical factor in multiple stages of PGC development.
- PLP's functions in cytoskeletal regulation are vital for establishing the germline.
Abstract:
Primordial germ cells (PGCs) are the precursors to the adult germline stem cells that are set aside early during embryogenesis and specified through the inheritance of the germ plasm, which contains the mRNAs and proteins that function as the germline fate determinants. In Drosophila melanogaster, formation of the PGCs requires the microtubule and actin cytoskeletal networks to actively segregate the germ plasm from the soma and physically construct the pole buds (PBs) that protrude from the posterior cortex. Of emerging importance is the central role of centrosomes in the coordination of microtubule dynamics and actin organization to promote PGC development. We previously identified a requirement for the centrosome protein Centrosomin (Cnn) in PGC formation. Cnn interacts directly with Pericentrin-like protein (PLP) to form a centrosome scaffold structure required for pericentriolar material recruitment and organization. In this study, we identify a role for PLP at several discrete steps during PGC development. We find PLP functions in segregating the germ plasm from the soma by regulating microtubule organization and centrosome separation. These activities further contribute to promoting PB protrusion and facilitating the distribution of germ plasm in proliferating PGCs.

