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Avian Primordial Germ Cells Contribute to and Interact With the Extracellular Matrix During Early Migration
David J Huss1,2, Sasha Saias1, Sevag Hamamah1
1Department of Radiology, Children's Hospital Los Angeles, Los Angeles, CA, United States.
Insights
Primordial germ cells (PGCs) migrate extensively during avian development. While integrin β1 is crucial for extracellular matrix assembly, it is not essential for PGC migration itself.
Area of Science:
- Developmental Biology
- Cell Biology
- Extracellular Matrix Research
Background:
- Primordial germ cells (PGCs) undergo extensive migration during early avian development.
- This migration is closely associated with a precisely patterned extracellular matrix (ECM).
- The role of ECM and its interactions with PGCs during migration is not fully understood.
Purpose of the Study:
- To investigate the expression of matrisome genes in avian PGCs.
- To determine the role of integrin β1 in PGC migration and ECM assembly during embryonic development.
Main Methods:
- Bioinformatic screening of human matrisome orthologs to identify quail matrisome genes.
- Single-cell RNA sequencing (scRNAseq) to analyze gene expression in PGCs.
- Fluorescent in situ hybridization (FISH) and immunofluorescence (IF) for transcript and protein validation.
- Live imaging of transgenic quail embryos with fluorescent antibodies and anti-integrin β1 antibodies.
Main Results:
- PGCs express numerous ECM and ECM-associated genes.
- Live imaging revealed PGCs interacting with a dynamic ECM fibril meshwork, exhibiting blebbing and filopodia.
- Anti-integrin β1 antibody injection reduced ECM fibril meshwork but did not impede PGC motility or colonization.
Conclusions:
- Integrin β1 receptors are vital for ECM fibrillogenesis and assembly in the germinal crescent.
- Integrin β1 is important, but not strictly required, for PGC migration during avian embryonic development.
- PGC migration involves complex interactions with a dynamic extracellular matrix.
Abstract:
During early avian development, primordial germ cells (PGC) are highly migratory, moving from the central area pellucida of the blastoderm to the anterior extra-embryonic germinal crescent. The PGCs soon move into the forming blood vessels by intravasation and travel in the circulatory system to the genital ridges where they participate in the organogenesis of the gonads. This complex cellular migration takes place in close association with a nascent extracellular matrix that matures in a precise spatio-temporal pattern. We first compiled a list of quail matrisome genes by bioinformatic screening of human matrisome orthologs. Next, we used single cell RNA-seq analysis (scRNAseq) to determine that PGCs express numerous ECM and ECM-associated genes in early embryos. The expression of select ECM transcripts and proteins in PGCs were verified by fluorescent in situ hybridization (FISH) and immunofluorescence (IF). Live imaging of transgenic quail embryos injected with fluorescent antibodies against fibronectin and laminin, showed that germinal crescent PGCs display rapid shape changes and morphological properties such as blebbing and filopodia while surrounded by, or in close contact with, an ECM fibril meshwork that is itself in constant motion. Injection of anti-β1 integrin CSAT antibodies resulted in a reduction of mature fibronectin and laminin fibril meshwork in the germinal crescent at HH4-5 but did not alter the active motility of the PGCs or their ability to populate the germinal crescent. These results suggest that integrin β1 receptors are important, but not required, for PGCs to successfully migrate during embryonic development, but instead play a vital role in ECM fibrillogenesis and assembly.
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