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PMID: 19371732 Published · ppublish English

Evidence for crucial role of hindgut expansion in directing proper migration of primordial germ cells in mouse early embryogenesis.

Developmental biology ·Vol. 330 ·No. 2 ·2009-06-12

Hara Kenshiro, Kanai-Azuma Masami, Uemura Mami, Shitara Hiroshi, Taya Choji, Yonekawa Hiromichi, Kawakami Hayato, Tsunekawa Naoki, Kurohmaru Masamichi, Kanai Yoshiakira

Abstract

During mouse gastrulation, primordial germ cells (PGCs) become clustered at the base of the allantois and move caudally into the hindgut endoderm before entering the genital ridges. The precise roles of endoderm tissues in PGC migration, however, remain unclear. By using Sox17 mutants with a specific endoderm deficiency, we provide direct evidence for the crucial role of hindgut expansion in directing proper PGC migration. In Sox17-null embryos, PGCs normally colonize in the allantois and then a small front-row population of PGCs moves properly into the most posterior gut endoderm. Defective hindgut expansion, however, causes the failure of further lateral PGC movement, resulting in the immobilization of PGCs in the hindgut entrance at the later stages. In contrast, the majority of the remaining PGCs moves into the visceral endoderm layer, but relocate outside of the embryonic gut domain. This leads to a scattering of PGCs in the extraembryonic yolk sac endoderm. This aberrant migration of Sox17-null PGCs can be rescued by the supply of wildtype hindgut cells in chimeric embryos. Therefore, these data indicate that hindgut morphogenic movement is crucial for directing PGC movement toward the embryonic gut side, but not for their relocation from the mesoderm into the endoderm.

Article Info
Journal
Developmental biology
Abbr.
Dev Biol
Published
2009-06-12
Indexed
2009-05-25
Updated
2009-05-25
Language
English
Country/Region
United States
NLM ID
0372762
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