TY - JOUR
T1 - Maternal placenta modulates a deleterious fetal mutation
AU - Xu, Hongen
AU - Pausch, Hubert
AU - Venhoranta, Heli
AU - Rutkowska, Karolina
AU - Wurmser, Christine
AU - Rieblinger, Beate
AU - Flisikowska, Tatiana
AU - Frishman, Dmitrij
AU - Zwierzchowski, Lech
AU - Fries, Ruedi
AU - Andersson, Magnus
AU - Kind, Alexander
AU - Schnieke, Angelika
AU - Flisikowski, Krzysztof
N1 - Publisher Copyright:
© The Authors 2017. Published by Oxford University Press on behalf of Society for the Study of Reproduction. All rights reserved.
PY - 2017/8/1
Y1 - 2017/8/1
N2 - Intrauterine growth restriction (IUGR) is caused by dysregulation of placental metabolism. Paternally inherited IUGR mutations in the fetus influence maternal physiology via the placenta. However, it is not known whether the maternal placenta also affects the extent of IUGR in such fetuses. In cattle and other ruminants, maternal-fetal communication occurs primarily at the placentomes. We previously identified a 3' deletion in the noncoding MER1 repeat containing imprinted transcript 1 (MIMT1) gene that, when inherited from the sire, causes IUGR and late abortion in Ayshire cattle with variable levels of severity. Here, we compared the transcriptome and genomic imprinting in fetal and maternal placentome components of wild-type and MIMT1Del/WT fetuses before IUGR became apparent, to identify key early events. Transcriptome analysis revealed fewer differentially expressed genes in maternal than fetal MIMT1Del/WT placentome. AST1, within the PEG3 domain, was the only gene consistently reduced in IUGR in both fetal and maternal samples. Several genes showed an imprinting pattern associated with IUGR, of which only secernin 3 (SCRN3) and paternally expressed 3 (PEG3) were differentially imprinted in both placentome components. Loss of strictly monoallelic, allele-specific expression (~80:20) of PEG3 in the maternal MIMT1Del/WT placenta could be associated with incomplete penetrance of MIMT1Del. Our data show that dysregulation of the PEG3 domain is involved in IUGR, but also reveal that maternal placental tissues may affect the penetrance of the paternally inherited IUGR mutation.
AB - Intrauterine growth restriction (IUGR) is caused by dysregulation of placental metabolism. Paternally inherited IUGR mutations in the fetus influence maternal physiology via the placenta. However, it is not known whether the maternal placenta also affects the extent of IUGR in such fetuses. In cattle and other ruminants, maternal-fetal communication occurs primarily at the placentomes. We previously identified a 3' deletion in the noncoding MER1 repeat containing imprinted transcript 1 (MIMT1) gene that, when inherited from the sire, causes IUGR and late abortion in Ayshire cattle with variable levels of severity. Here, we compared the transcriptome and genomic imprinting in fetal and maternal placentome components of wild-type and MIMT1Del/WT fetuses before IUGR became apparent, to identify key early events. Transcriptome analysis revealed fewer differentially expressed genes in maternal than fetal MIMT1Del/WT placentome. AST1, within the PEG3 domain, was the only gene consistently reduced in IUGR in both fetal and maternal samples. Several genes showed an imprinting pattern associated with IUGR, of which only secernin 3 (SCRN3) and paternally expressed 3 (PEG3) were differentially imprinted in both placentome components. Loss of strictly monoallelic, allele-specific expression (~80:20) of PEG3 in the maternal MIMT1Del/WT placenta could be associated with incomplete penetrance of MIMT1Del. Our data show that dysregulation of the PEG3 domain is involved in IUGR, but also reveal that maternal placental tissues may affect the penetrance of the paternally inherited IUGR mutation.
KW - Cattle
KW - Developmental biology
KW - Epigenetics
KW - Fetal development
KW - Genomic imprinting
KW - Imprinted genes
KW - Intrauterine growth restriction
KW - PEG3
KW - Placenta
UR - http://www.scopus.com/inward/record.url?scp=85037550672&partnerID=8YFLogxK
U2 - 10.1093/biolre/iox064
DO - 10.1093/biolre/iox064
M3 - Article
C2 - 28679164
AN - SCOPUS:85037550672
SN - 0006-3363
VL - 97
SP - 249
EP - 257
JO - Biology of Reproduction
JF - Biology of Reproduction
IS - 2
ER -