» Articles » PMID: 22219351

Recruitment of 5' Hoxa Genes in the Allantois is Essential for Proper Extra-embryonic Function in Placental Mammals

Overview
Journal Development
Specialty Biology
Date 2012 Jan 6
PMID 22219351
Citations 23
Authors
Affiliations
Soon will be listed here.
Abstract

The Hox gene family is well known for its functions in establishing morphological diversity along the anterior-posterior axis of developing embryos. In mammals, one of these genes, Hoxa13, is crucial for embryonic survival, as its function is required for the proper expansion of the fetal vasculature in the placenta. Thus, it appears that the developmental strategy specific to placental mammals is linked, at least in part, to the recruitment of Hoxa13 function in developing extra-embryonic tissues. Yet, the mechanism underlying this extra-embryonic recruitment is unknown. Here, we provide evidence that this functional novelty is not exclusive to Hoxa13 but is shared with its neighboring Hoxa11 and Hoxa10 genes. We show that the extra-embryonic function of these three Hoxa genes stems from their specific expression in the allantois, an extra-embryonic hallmark of amniote vertebrates. Interestingly, Hoxa10-13 expression in the allantois is conserved in chick embryos, which are non-placental amniotes, suggesting that the extra-embryonic recruitment of Hoxa10, Hoxa11 and Hoxa13 most likely arose in amniotes, i.e. prior to the emergence of placental mammals. Finally, using a series of targeted recombination and transgenic assays, we provide evidence that the regulatory mechanism underlying Hoxa expression in the allantois is extremely complex and relies on several cis-regulatory sequences.

Citing Articles

Lineage tracing studies suggest that the placenta is not a de novo source of hematopoietic stem cells.

Chen X, Tober J, Dominguez M, Tang A, Bockman J, Yang J PLoS Biol. 2025; 23(1):e3003003.

PMID: 39874373 PMC: 11774391. DOI: 10.1371/journal.pbio.3003003.


Epigenetic modifiers: catalytic or noncatalytic, that is the question.

Liu Y, Li H Front Med. 2024; 18(5):941-943.

PMID: 39333446 DOI: 10.1007/s11684-024-1104-4.


Catalytic activity of Setd2 is essential for embryonic development in mice: establishment of a mouse model harboring patient-derived Setd2 mutation.

Chen S, Liu D, Chen B, Li Z, Chang B, Xu C Front Med. 2024; 18(5):831-849.

PMID: 39115793 DOI: 10.1007/s11684-024-1095-1.


Isl Identifies the Extraembryonic Mesodermal/Allantois Progenitors and is Required for Placenta Morphogenesis and Vasculature Formation.

Zhu Z, Zou Q, Wang C, Li D, Yang Y, Xiao Y Adv Sci (Weinh). 2024; 11(32):e2400238.

PMID: 38923264 PMC: 11348239. DOI: 10.1002/advs.202400238.


CDX2 dose-dependently influences the gene regulatory network underlying human extraembryonic mesoderm development.

Bulger E, McDevitt T, Bruneau B Biol Open. 2024; 13(3).

PMID: 38451093 PMC: 10979512. DOI: 10.1242/bio.060323.


References
1.
Drake C, Fleming P . Vasculogenesis in the day 6.5 to 9.5 mouse embryo. Blood. 2000; 95(5):1671-9. View

2.
Dupe V, Davenne M, Brocard J, Dolle P, Mark M, Dierich A . In vivo functional analysis of the Hoxa-1 3' retinoic acid response element (3'RARE). Development. 1997; 124(2):399-410. DOI: 10.1242/dev.124.2.399. View

3.
Lawson K . Fate mapping the mouse embryo. Int J Dev Biol. 2000; 43(7):773-5. View

4.
Satokata I, Benson G, Maas R . Sexually dimorphic sterility phenotypes in Hoxa10-deficient mice. Nature. 1995; 374(6521):460-3. DOI: 10.1038/374460a0. View

5.
Rossant J, CROSS J . Placental development: lessons from mouse mutants. Nat Rev Genet. 2001; 2(7):538-48. DOI: 10.1038/35080570. View