Intrafollicular Distribution of Plasminogen Activators and Their Hormonal Regulationin Vitro*
- 1 October 1986
- journal article
- research article
- Published by The Endocrine Society in Endocrinology
- Vol. 119 (4) , 1588-1593
- https://doi.org/10.1210/endo-119-4-1588
Abstract
Recent studies from our laboratory corroborated the suggested role of plasminogen activation in follicular rupture at ovulation, and its involvement in the activation process of collagenolysis in the follicle. In the present study, the molecular types and cellular source of plasminogen activator (PA) were examined. Explanted preovulatory follicles produced in vitro both urokinase type and tissue type (t-PA) activators. Upon gonadotropin stimulation a highly significant increase in t-PA, but not in urokinase type, was observed. Separation of the follicle into granulosa cells and residual tissue, mainly theca, revealed that both compartments produce both types of PA. The granulosa compartment was found to produce 80-90% of the total follicular PA activity. Gonadotropins stimulated predominantly t-PA. Most of the gonadotropin-enhanced PA activity produced by granulosa cells was secreted into the culture medium, whereas that from thecal origin remained in the tissue. Likewise, in whole follicles only about 10% of PA was secreted into the medium. Gonadotropin-induced PA activity in vitro was reduced by inhibitors of steroidogenesis. This inhibition was overcome by the addition of estradiol-17.beta.. The inhibition of steroidogenesis affected predominantly the t-PA type of PA. In conclusion, the granulosa cells contribute most of the follicular PA activity, and t-PA is predominantly enhanced by gonatotropin and estrogen. It seems, therefore, that t-PA is the activator involved in the processes leading to follicular rupture.This publication has 24 references indexed in Scilit:
- Uterine Plasminogen Activator Activity: Modulation by Steroid Hormones*Endocrinology, 1982
- Sensitive autoradiographic quantification of electrophoretically separated proteasesAnalytical Biochemistry, 1981
- Localization of Testicular Plasminogen Activator in Discrete Portions (Stages VII and VIII) of the Seminiferous TubuleBiology of Reproduction, 1981
- Plasminogen activator in the rodent brainBrain Research, 1981
- Studies on the control of plasminogen activator production by cultured human embryonic lung cells: Requirements for inhibition by corticosteroidsJournal of Cellular Physiology, 1980
- Mechanism of dexamethasone inhibition of plasminogen activator in rat hepatoma cells.Proceedings of the National Academy of Sciences, 1978
- The Effect of an Aromatase Inhibitor, 4-Hydroxy-4-Androstene- 3,17-Dione, On Estrogen-Dependent Processes in Reproduction and Breast Cancer11Endocrinology, 1977
- Studies on the role of plasminogen activator in ovulation. In vitro response of granulosa cells to gonadotropins, cyclic nucleotides, and prostaglandins.Journal of Biological Chemistry, 1976
- Macrophage plasminogen activator: Modulation of enzyme production by anti-inflammatory steroids, mitotic inhibitors, and cyclic nucleotidesCell, 1976
- A Rapid and Sensitive Method for the Quantitation of Microgram Quantities of Protein Utilizing the Principle of Protein-Dye BindingAnalytical Biochemistry, 1976