;PROJECT III Implantation, a process involving the interaction between the embryonic trophectoderm and maternal endometrium, remains a fundamental barrier to successful pregnancy for many couples. However, little is known about the molecular mechanisms that regulate either tissue. MicroRNAs provide a means to understand those mechanisms. An individual microRNA can suppress hundreds of messenger RNAs, and the mlRNA-mRNA target pairs have been evolutionarily selected to have specific cellular outcomes. Therefore, uncovering miRNAs that regulate specific cell fates followed by comprehensive analysis of their downstream targets provides a window into the molecular networks that regulate those cell fates. Furthermore, understanding how miRNAs are misregulated in disease can provide insight into how dysfunction of those networks results in aberrant development. This grant proposes to use miRNAs to dissect the mechanisms regulating trophoblast stem cell proliferation and differentiation and determine whether and how these mechanisms are disrupted in pre-eclampsia, a disease associated in defects of trophoblast differentiation. The central hypothesis is that miRNA functional analyses combined with systematic target identification and functional analyses will uncover novel pathways regulating placenta growth and development. This hypothesis is supported by preliminary results showing defects in mouse trophoblast stem cells (TSC) self-renewal and differentiation associated with global miRNA loss that can be rescued by re-introduction of individual miRNAs.
Three aims will be pursued. First, miRNAs that influence TSC self renewal and differentiation will be determined through rescue screens of the global knockout phenotypes, profiling, and knockdown experiments. Second, mRNA targets of miRNAs that are sufficient and/or necessary for TSC differentiation will be uncovered by genomic and high throughput functional analyses. Third, early findings will be extended to human trophoblast progenitor cells focusing on those miRNAs misregulated in patients with pre-eclampsia. The approach is innovative in its combination of miRNA functional screens, target identification, and pathway discovery in a poorly understood tissue type. It is significant as it will provide the molecular framework to understand defects in extra embryonic tissues associated with diseases of implantation and pregnancy. The proposal is part of a larger U54 center grant The proposed work will benefit greatly from this center by recruiting the other Pis'expertise in trophoblast endometrium interactions, post-transcriptional regulation, and genomic/bioinformatic approaches.

Public Health Relevance

The proposed research is relevant to public health, as it will lead to fundamental insights into the molecules that regulate the growth and specialization of cells central to the development and function of the human placenta. Such insights will provide new and important knowledge into the cause, diagnosis, prognosis, and treatment of abnormal pregnancies. Therefore, it fits within the NIH mission to foster fundamental knowledge that can enhance health, lengthen life, and reduce burdens of illness.

Agency
National Institute of Health (NIH)
Institute
Eunice Kennedy Shriver National Institute of Child Health & Human Development (NICHD)
Type
Specialized Center--Cooperative Agreements (U54)
Project #
5U54HD055764-07
Application #
8435288
Study Section
Special Emphasis Panel (ZHD1-DSR-L)
Project Start
Project End
Budget Start
2013-04-01
Budget End
2014-03-31
Support Year
7
Fiscal Year
2013
Total Cost
$300,041
Indirect Cost
$101,632
Name
University of California San Francisco
Department
Type
DUNS #
094878337
City
San Francisco
State
CA
Country
United States
Zip Code
94143
Barnhart, Kurt; Giudice, Linda; Young, Steve et al. (2018) Evaluation, validation and refinement of noninvasive diagnostic biomarkers for endometriosis (ENDOmarker): A protocol to phenotype bio-specimens for discovery and validation. Contemp Clin Trials 68:1-6
Conti, Marco; Franciosi, Federica (2018) Acquisition of oocyte competence to develop as an embryo: integrated nuclear and cytoplasmic events. Hum Reprod Update 24:245-266
Logan, Philip C; Yango, Pamela; Tran, Nam D (2018) Endometrial Stromal and Epithelial Cells Exhibit Unique Aberrant Molecular Defects in Patients With Endometriosis. Reprod Sci 25:140-159
Aghajanova, Lusine; Houshdaran, Sahar; Balayan, Shaina et al. (2018) In vitro evidence that platelet-rich plasma stimulates cellular processes involved in endometrial regeneration. J Assist Reprod Genet 35:757-770
Martins, Joao P Sousa; Conti, Marco (2018) Profiling Maternal mRNA Translation During Oocyte Development. Methods Mol Biol 1818:43-50
Paikari, Alireza; D Belair, Cassandra; Saw, Daniel et al. (2017) The eutheria-specific miR-290 cluster modulates placental growth and maternal-fetal transport. Development 144:3731-3743
Erlebacher, Adrian; Fisher, Susan J (2017) Baby's First Organ. Sci Am 317:46-53
Aghajanova, Lusine; Houshdaran, Sahar; Irwin, Juan C et al. (2017) Effects of noncavity-distorting fibroids on endometrial gene expression and function. Biol Reprod 97:564-576
Garrido-Gomez, Tamara; Dominguez, Francisco; Quiñonero, Alicia et al. (2017) Defective decidualization during and after severe preeclampsia reveals a possible maternal contribution to the etiology. Proc Natl Acad Sci U S A 114:E8468-E8477
Altmäe, Signe; Koel, Mariann; Võsa, Urmo et al. (2017) Meta-signature of human endometrial receptivity: a meta-analysis and validation study of transcriptomic biomarkers. Sci Rep 7:10077

Showing the most recent 10 out of 94 publications