Please use this identifier to cite or link to this item: https://repository.monashhealth.org/monashhealthjspui/handle/1/29802
Title: Mitotic arrest in teratoma susceptible fetal male germ cells.
Authors: Sinclair A.H.;Ralli R.A.;Wakeling S.I.;Lo C.;van den Bergen J.A.;Miles D.C.;Western P.S.
Institution: (Western, Wakeling, Miles) Centre for Reproduction and Development, Monash Institute of Medical Research, Monash University, Clayton, VIC, Australia (Ralli) Cancer Therapeutics Program, Peter MacCallum Cancer Centre, East Melbourne, VIC, Australia (Lo) Monash Micro Imaging, Monash Health Research Precinct, Monash Institute of Medical Research, Monash University, Clayton, VIC, Australia (van den Bergen, Sinclair) Early Development and Disease, Murdoch Childrens Research Institute, University of Melbourne Department of Paediatrics, Royal Children's Hospital, Parkville, VIC, Australia
Issue Date: 1-Jul-2011
Copyright year: 2011
Publisher: Public Library of Science (185 Berry Street, Suite 1300, San Francisco CA 94107, United States)
Place of publication: United States
Publication information: PLoS ONE. 6 (6) (no pagination), 2011. Article Number: e20736. Date of Publication: 2011.
Abstract: Formation of germ cell derived teratomas occurs in mice of the 129/SvJ strain, but not in C57Bl/6 inbred or CD1 outbred mice. Despite this, there have been few comparative studies aimed at determining the similarities and differences between teratoma susceptible and non-susceptible mouse strains. This study examines the entry of fetal germ cells into the male pathway and mitotic arrest in 129T2/SvJ mice. We find that although the entry of fetal germ cells into mitotic arrest is similar between 129T2/SvJ, C57Bl/6 and CD1 mice, there were significant differences in the size and germ cell content of the testis cords in these strains. In 129T2/SvJ mice germ cell mitotic arrest involves upregulation of p27KIP1, p15INK4B, activation of RB, the expression of male germ cell differentiation markers NANOS2, DNMT3L and MILI and repression of the pluripotency network. The germ-line markers DPPA2 and DPPA4 show reciprocal repression and upregulation, respectively, while FGFR3 is substantially enriched in the nucleus of differentiating male germ cells. Further understanding of fetal male germ cell differentiation promises to provide insight into disorders of the testis and germ cell lineage, such as testis tumour formation and infertility. © 2011 Western et al.
DOI: http://monash.idm.oclc.org/login?url=http://dx.doi.org/10.1371/journal.pone.0020736
PubMed URL: 21674058 [http://www.ncbi.nlm.nih.gov/pubmed/?term=21674058]
ISSN: 1932-6203 (electronic)
URI: https://repository.monashhealth.org/monashhealthjspui/handle/1/29802
Type: Article
Subjects: cell differentiation
controlled study
embryo
fetus
*germ cell
male
*mitosis inhibition
mouse
nonhuman
pluripotent stem cell
protein determination
protein expression
protein localization
strain difference
*teratoma
animal cell
upregulation
cell protein/ec [Endogenous Compound]
fibroblast growth factor receptor 3/ec [Endogenous Compound]
protein p15/ec [Endogenous Compound]
protein p27/ec [Endogenous Compound]
unclassified drug
developmental pluripotency associated 2 protein/ec [Endogenous Compound]
developmental pluripotency associated 4 protein/ec [Endogenous Compound]
DNA cytosine 5 methyltransferase 3 like protein/ec [Endogenous Compound]
Nanos homolog 2 protien/ec [Endogenous Compound]
protein mili/ec [Endogenous Compound]
animal tissue
testis development
article
cancer susceptibility
pluripotent stem cell
protein determination
protein expression
protein localization
strain difference
*teratoma
testis development
upregulation
fetus
embryo
*germ cell
cell differentiation
cancer susceptibility
article
controlled study
male
*mitosis inhibition
mouse
nonhuman
animal tissue
animal cell
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