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Updated: Apr 16, 2026

Isolation of Primary Human Decidual Cells from the Fetal Membranes of Term Placentae
Published on: April 30, 2018
Transcriptional Factor PU.1 Regulates Decidual C1q Expression in Early Pregnancy in Human
Shanmuga Priyaa Madhukaran1, Uday Kishore2, Kaiser Jamil3
1Department of Microbiology, Yong Loo Lin School of Medicine, National University of Singapore , Singapore , Singapore ; Centre for Biotechnology and Bioinformatics, School of Life Sciences, Jawaharlal Nehru Institute for Advanced Studies , Secunderabad , India.
Insights
The transcription factor PU.1 is highly expressed in early human decidual cells, suggesting it regulates complement C1q expression crucial for successful pregnancy and implantation.
Area of Science:
- Reproductive Immunology
- Complement Biology
Background:
- C1q, a key complement component, is vital for successful pregnancy, with deficiency linked to preeclampsia-like symptoms.
- The transcription factor PU.1 regulates C1q in immune cells, but its role in decidual C1q expression during early pregnancy is unknown.
Purpose of the Study:
- To investigate whether the PU.1 transcription factor regulates C1q expression in the human decidua during early pregnancy.
Main Methods:
- Immune-histochemical analysis, Polymerase Chain Reaction (PCR), and immunostaining were used to study PU.1 expression in early human decidua.
Main Results:
- PU.1 demonstrated high gene and protein expression in early human decidual cells, including trophoblast and stromal cells.
- Both nuclear and cytoplasmic PU.1 were observed; cells with predominantly nuclear PU.1 showed higher C1q expression.
Conclusions:
- PU.1 is expressed in the early human decidua and its nuclear localization correlates with C1q expression.
- PU.1 likely plays a role in early pregnancy by regulating decidual C1q expression during implantation.
Abstract:
C1q is the first recognition subcomponent of the complement classical pathway, which in addition to being synthesized in the liver, is also expressed by macrophages and dendritic cells (DCs). Trophoblast invasion during early placentation results in accumulation of debris that triggers the complement system. Hence, both early and late components of the classical pathway are widely distributed in the placenta and decidua. In addition, C1q has recently been shown to significantly contribute to feto-maternal tolerance, trophoblast migration, and spiral artery remodeling, although the exact mechanism remains unknown. Pregnancy in mice, genetically deficient in C1q, mirrors symptoms similar to that of human preeclampsia. Thus, regulated complement activation has been proposed as an essential requirement for normal successful pregnancy. Little is known about the molecular pathways that regulate C1q expression in pregnancy. PU.1, an Ets-family transcription factor, is required for the development of hematopoietic myeloid lineage immune cells, and its expression is tissue-specific. Recently, PU.1 has been shown to regulate C1q gene expression in DCs and macrophages. Here, we have examined if PU.1 transcription factor regulates decidual C1q expression. We used immune-histochemical analysis, PCR, and immunostaining to localize and study the gene expression of PU.1 transcription factor in early human decidua. PU.1 was highly expressed at gene and protein level in early human decidual cells including trophoblast and stromal cells. Surprisingly, nuclear as well as cytoplasmic PU.1 expression was observed. Decidual cells with predominantly nuclear PU.1 expression had higher C1q expression. It is likely that nuclear and cytoplasmic PU.1 localization has a role to play in early pregnancy via regulating C1q expression in the decidua during implantation.
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