Related Experiment Videos
Matrix metalloproteinase expression in Macaca mulatta endometrium: evidence for zone-specific regulatory tissue
L A Rudolph-Owen1, O D Slayden, L M Matrisian
1a Department of Cell Biology, Vanderbilt University, Nashville, Tennessee 37232, USA.
Abstract:
Matrix metalloproteinases (MMPs) are highly expressed in the human endometrium during menstruation, and these enzymes participate in the cyclic destruction and regeneration characteristic of the primate endometrium. To examine hormonal regulation of MMPs in vivo, we evaluated MMP expression and localization in the endometrium of ovariectomized rhesus macaques under various hormonal conditions. Although all MMPs were up-regulated by progesterone (P4) withdrawal, their expression declined spontaneously after menstruation in the absence of P4. Of 7 MMPs examined, only matrilysin and stromelysin-3 were suppressed any further when P4 levels were experimentally re-elevated. MMP expression was confined to the upper functionalis zone during menstruation, but after menstrual breakdown was complete, matrilysin and the tissue inhibitor of MMPs, TIMP-1, shifted expression from the functionalis to the basalis zone in the absence of both estradiol and P4. The spiral arteries in the functionalis, but not the basalis, were intense foci of MMP and TIMP-1 expression. Menstruation and MMP expression after P4 withdrawal were similar in both the presence and absence of estradiol. In sum, endometrial MMPs in vivo are strongly up-regulated by P4 withdrawal, but zone-specific tissue gradients greatly influence the pattern and degree of MMP expression.
Insights
Progesterone withdrawal up-regulates endometrial matrix metalloproteinases (MMPs) during menstruation. Hormonal shifts and tissue zones significantly influence MMP expression patterns in the primate endometrium.
Area of Science:
- Reproductive Biology
- Endocrinology
- Cell Biology
Background:
- Matrix metalloproteinases (MMPs) are crucial for endometrial cyclic remodeling.
- High MMP expression is observed in the human endometrium during menstruation.
Purpose of the Study:
- To investigate the hormonal regulation of MMPs in vivo.
- To determine MMP expression and localization in the primate endometrium under varying hormonal conditions.
Main Methods:
- Ovariectomized rhesus macaques were used to study endometrial MMPs.
- Hormonal conditions were manipulated to assess MMP regulation.
- MMP expression and localization were evaluated using immunohistochemistry.
Main Results:
- Progesterone (P4) withdrawal strongly up-regulated all examined MMPs.
- Matrilysin and stromelysin-3 were further suppressed by re-elevated P4.
- MMP expression localized to specific endometrial zones (functionalis and basalis) and spiral arteries.
- Estradiol presence did not significantly alter menstruation-associated MMP expression.
Conclusions:
- Endometrial MMPs are primarily up-regulated by progesterone withdrawal.
- Tissue-specific gradients and hormonal status dictate MMP expression patterns.
- Understanding MMP regulation is key to comprehending endometrial cyclic events.