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Published on: July 6, 2013
APOBEC3A Is Upregulated by Human Cytomegalovirus (HCMV) in the Maternal-Fetal Interface, Acting as an Innate
Yiska Weisblum1,2,3, Esther Oiknine-Djian1,2,3, Zichria Zakay-Rones2
1Clinical Virology Unit, Hadassah Hebrew University Medical Center, Jerusalem, Israel.
Abstract:
Human cytomegalovirus (HCMV) is the leading cause of congenital infection and is associated with a wide range of neurodevelopmental disabilities and intrauterine growth restriction. Yet our current understanding of the mechanisms modulating transplacental HCMV transmission is poor. The placenta, given its critical function in protecting the fetus, has evolved effective yet largely uncharacterized innate immune barriers against invading pathogens. Here we show that the intrinsic cellular restriction factor apolipoprotein B editing catalytic subunit-like 3A (APOBEC3A [A3A]) is profoundly upregulated following ex vivo HCMV infection in human decidual tissues-constituting the maternal aspect of the placenta. We directly demonstrated that A3A severely restricted HCMV replication upon controlled overexpression in epithelial cells, acting by a cytidine deamination mechanism to introduce hypermutations into the viral genome. Importantly, we further found that A3 editing of HCMV DNA occurs both ex vivo in HCMV-infected decidual organ cultures and in vivo in amniotic fluid samples obtained during natural congenital infection. Our results reveal a previously unexplored role for A3A as an innate anti-HCMV effector, activated by HCMV infection in the maternal-fetal interface. These findings pave the way to new insights into the potential impact of APOBEC proteins on HCMV pathogenesis.IMPORTANCE In view of the grave outcomes associated with congenital HCMV infection, there is an urgent need to better understand the innate mechanisms acting to limit transplacental viral transmission. Toward this goal, our findings reveal the role of the intrinsic cellular restriction factor A3A (which has never before been studied in the context of HCMV infection and vertical viral transmission) as a potent anti-HCMV innate barrier, activated by HCMV infection in the authentic tissues of the maternal-fetal interface. The detection of naturally occurring hypermutations in clinical amniotic fluid samples of congenitally infected fetuses further supports the idea of the occurrence of A3 editing of the viral genome in the setting of congenital HCMV infection. Given the widely differential tissue distribution characteristics and biological functions of the members of the A3 protein family, our findings should pave the way to future studies examining the potential impact of A3A as well as of other A3s on HCMV pathogenesis.
Insights
Apolipoprotein B editing catalytic subunit-like 3A (APOBEC3A) acts as a potent innate immune barrier against human cytomegalovirus (HCMV) transmission across the placenta. This cellular factor restricts viral replication by hypermutating the HCMV genome, offering new insights into congenital infection defense.
Area of Science:
- Virology
- Immunology
- Genetics
Background:
- Human cytomegalovirus (HCMV) is a major cause of congenital infections, leading to neurodevelopmental issues and growth restriction.
- The placenta has innate immune mechanisms to prevent fetal pathogen transmission, but these are not fully understood.
Purpose of the Study:
- To investigate the role of APOBEC3A (A3A) as an innate immune factor against HCMV in placental tissues.
- To determine if A3A restricts HCMV replication and if its editing activity occurs during congenital infection.
Main Methods:
- Studied A3A upregulation in human decidual tissues after ex vivo HCMV infection.
- Assessed A3A's restriction of HCMV replication in epithelial cells via overexpression.
- Analyzed A3 editing of HCMV DNA in ex vivo decidual organ cultures and in vivo amniotic fluid samples.
Main Results:
- APOBEC3A (A3A) is significantly upregulated in decidual tissues upon HCMV infection.
- A3A overexpression restricts HCMV replication by introducing hypermutations into the viral genome.
- Evidence of A3 editing of HCMV DNA was found in both experimental placental models and clinical samples from congenitally infected fetuses.
Conclusions:
- A3A functions as a critical innate immune effector against HCMV at the maternal-fetal interface.
- A3 editing of HCMV DNA is a relevant mechanism during congenital HCMV infection.
- These findings highlight APOBEC proteins as potential targets for understanding and combating HCMV pathogenesis.
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