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Published on: June 18, 2013
Gestational age-dependent gene expression profiling of ATP-binding cassette transporters in the healthy human
Guinever E Imperio1,2,3, Mohsen Javam1, Phetcharawan Lye1,3
1Department of Physiology, University of Toronto, Toronto, Ontario, Canada.
Insights
Placental ATP-binding cassette (ABC) transporters exhibit changing expression patterns throughout pregnancy. These dynamic changes in ABC transporter expression are crucial for maintaining a healthy maternal-fetal interface and ensuring proper placental function.
Area of Science:
- Reproductive biology
- Molecular biology
- Biochemistry
Background:
- ATP-binding cassette (ABC) transporters regulate transport at the maternal-fetal interface.
- Previous studies identified gestational age-dependent expression for specific ABC transporters like P-glycoprotein.
- A comprehensive analysis of all 50 ABC transporters across gestation was lacking.
Purpose of the Study:
- To comprehensively elucidate the mRNA and protein expression patterns of all 50 ABC transporters in human placentae.
- To compare the expression profiles between the first and third trimesters of pregnancy.
- To investigate the gestational-age dependent regulation of placental ABC transporters.
Main Methods:
- Utilized the TaqMan® Human ABC Transporter Array to assess mRNA expression in first (n=8) and third trimester (n=12) placentae.
- Validated selected ABC transporter mRNA expression using quantitative PCR (qPCR).
- Confirmed protein expression and localization via Western blot and immunohistochemistry.
Main Results:
- A distinct gene expression profile was observed for 30 ABC transporters between the first and third trimesters.
- Validated increased expression of ABCA1, ABCA6, ABCA9, and ABCC3 with advancing gestation.
- Validated decreased expression of ABCB11 and ABCG4, with ABCA6 protein increasing and localizing to syncytiotrophoblast cells.
Conclusions:
- Placental ABC transporter expression significantly changes with gestational age.
- These dynamic expression patterns are vital for regulating steroidogenesis, immune responses, and placental barrier integrity.
- The findings highlight the critical role of ABC transporters in supporting a healthy pregnancy.
Abstract:
The ATP-binding cassette (ABC) transporters control placental transfer of several nutrients, steroids, immunological factors, chemicals, and drugs at the maternal-fetal interface. We and others have demonstrated a gestational age-dependent expression pattern of two ABC transporters, P-glycoprotein and breast cancer resistance protein throughout pregnancy. However, no reports have comprehensively elucidated the expression pattern of all 50 ABC proteins, comparing first trimester and term human placentae. We hypothesized that placental ABC transporters are expressed in a gestational-age dependent manner in normal human pregnancy. Using the TaqMan® Human ABC Transporter Array, we assessed the mRNA expression of all 50 ABC transporters in first (first trimester, n = 8) and third trimester (term, n = 12) human placentae and validated the resulting expression of selected ABC transporters using qPCR, Western blot and immunohistochemistry. A distinct gene expression profile of 30 ABC transporters was observed comparing first trimester vs. term placentae. Using individual qPCR in selected genes, we validated the increased expression of ABCA1 (P < 0.01), ABCA6 (P < 0.001), ABCA9 (P < 0.001) and ABCC3 (P < 0.001), as well as the decreased expression of ABCB11 (P < 0.001) and ABCG4 (P < 0.01) with advancing gestation. One important lipid transporter, ABCA6, was selected to correlate protein abundance and characterize tissue localization. ABCA6 exhibited increased protein expression towards term and was predominantly localized to syncytiotrophoblast cells. In conclusion, expression patterns of placental ABC transporters change as a function of gestational age. These changes are likely fundamental to a healthy pregnancy given the critical role that these transporters play in the regulation of steroidogenesis, immunological responses, and placental barrier function and integrity.
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