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K M Wasson

Publications and source records attributed to K M Wasson.

5 recordsLinked to original sources

Levels of progesterone, testosterone, and estradiol, and androstenedione metabolism in the gonads of Lytechinus variegatus (Echinodermata:echinoidea).

Levels of progesterone (P4), testosterone (T) and estradiol (E2) indicated significant variation among individual echinoids during the annual cycle, reflecting generally the variation in gamete development that can be observed among individuals. Testosterone and E2 levels in both the ovaries and testes were higher during the period of gonadal growth. Levels of all steroids were greatly reduced compared to those levels reported for asteroids. Differences in the levels of P4, T, and estrogens between asteroids and Lytechinus variegatus may be related to differences in gonad morphology and nutrient storage capacity between asteroids and echinoids. It was hypothesized that the low levels of steroids detected in L. variegatus reflect paracrine-like mechanisms in cell signaling as compared to endocrine-like mechanisms proposed to be involved in regulating gonad function in asteroids. Both the ovaries and testes of L. variegatus had the capacity to synthesize T and a variety of 5alpha-reduced androgens including 5alpha-androstane-3beta,17beta-diol and 5alpha-androstane-3alpha,17beta-diol (5alpha-adiols) from androstenedione (AD) in 8 h. Estrogen synthesis was not detected. The sex-specific pattern of accumulation of 5alpha-adiols in the ovaries and testes suggests that the 5alpha-adiols may affect processes related to reproduction in L. variegatus.

Androstenedione↗

Progesterone metabolism in the ovaries and testes of the echinoid Lytechinus variegatus Lamarck (Echinodermata).

In the present study we examined the metabolic fate of progesterone (P4) in homogenate and tissue minces of the ovaries and testes of Lytechinus variegatus. P4 was metabolized primarily into 5alpha-reduced metabolites including, 5alpha-pregnane-3,20-dione (DHP), 3beta-hydroxy-5alpha-pregnan-20-one (3beta,20-one), 5alpha-pregnane-3beta,20alpha-diol (3beta,20alpha-diol), 5alpha-pregnane-3beta,20beta-diol (3beta,20beta-diol), and 5alpha-pregnane-3alpha,20alpha-diol (3alpha,20alpha-diol) by both the ovaries and testes. The capacity to metabolize P4 did not differ between the ovaries and testes. However, the relative quantity of Salpha-pregnane-3beta,20zeta-diol synthesized from ovary and testis tissue minces was about 3.3-fold higher than from homogenate preparations. Differences in the synthesis of 3beta,20-one and 3alpha,20alpha-diol in both ovary and testis minces were dependent on reproductive state. This study demonstrates the pathway of P4 conversion in the ovaries and testes of L. variegatus and indicates the rapid conversion of P4 into 5alpha-reduced metabolites in these tissues. Although P4 metabolism is not sex specific, sex-specific responses to P4 metabolites have been demonstrated previously. We hypothesize that the sex-specific responses of the ovaries and the testes to P4 may be associated with receptor-level regulatory processes.

Animals↗

Synthesis of testosterone and 5alpha-androstanediols during nutritionally stimulated gonadal growth in Lytechinus variegatus lamarck (Echinodermata:Echinoidea).

Although sex steroids and steroid converting enzymes have been found in echinoids, the relationship between steroids and reproduction has not been demonstrated. On days 0, 4, 8, 16, 32, and 48 of feeding, the gonads of previously starved Lytechinus variegatus were excised and incubated with [3H]androstenedione for 0.5 h to determine if changes in steroidogenic capacity are correlated with gonadal growth. Total rates of androstenedione conversion in the testes and ovaries increased significantly during feeding. In addition, the types and relative quantities of metabolites synthesized varied, suggesting that androstenedione metabolism is influenced by nutritional status. Both testes and ovaries synthesized testosterone, 5alpha-androstane-3alpha,17beta-diol, and 5alpha-androstane-3beta, 17beta-diol (5alpha-adiols), 5alpha-androstanedione, epiandrosterone, and androsterone on all days of feeding. In the testes, the relative quantities of testosterone and 5alpha-adiols increased greatly on day 4 of feeding. In contrast, in the ovaries testosterone synthesis was not detectable on day 4, although the relative quantities of 5alpha-adiols increased threefold. The sex-specific changes in the synthesis of these metabolites reflect a shift in the metabolic pathway indicated by changes in the relative enzyme activity indices for 5alpha-reductase (5alpha-R) (necessary for the synthesis of 5alpha-reduced androgens) and 3alpha/beta-hydroxysteroid dehydrogenase (3alpha/beta-HSDs, necessary for the synthesis of 3alpha- or 3beta-hydroxylated androgens). In both testes and ovaries the relative activities of 5alpha-R and 3alpha/beta-HSD increased on day 4 of feeding. The physiological significance of changes in androstenedione metabolism may be associated with the initiation of biosynthetic processes associated with gametogenesis.

Androstanes↗

Proscar (Finasteride) inhibits 5 alpha-reductase activity in the ovaries and testes of Lytechinus variegatus Lamarck (Echinodermata: Echinoidea).

Recent investigations into the steroid metabolic pathway in the echinoid Lytechinus variegatus demonstrated the capacity of the gonads to convert androstenedione, the classical mammalian precursor to bioactive androgens, into testosterone and a variety of 5 alpha-reduced androgens including 5 alpha-androstane-3 beta, 17 beta-diol and 5 alpha-androstane-3 alpha, 17 beta-diol. The synthesis of these steroids, which requires 5 alpha-reductase activity, varies with sex and reproductive state in L. variegatus, suggesting that these steroids may be involved in reproductive processes. The classical method of castration followed by steroid replacement therapy to determine the biological role of steroids in the gonads of higher vertebrates is not possible in echinoids. Therefore, this study was designed to determine the efficacy of finasteride, a selective 5 alpha-reductase inhibitor in the mammalian prostate gland, on 5 alpha-reductase activity in the gonads of L. variegatus. Finasteride inhibits echinoid 5 alpha-reductase in a dose-dependent manner with IC50 approximately 2.7 microM for both ovaries and testes. These echinoid IC50s are significantly higher than those reported for humans and rats. In addition, oral administration of finasteride to the echinoids appeared to inhibit 5 alpha-reductase with no apparent stress (no spine loss) to the animals. These data suggest that finasteride may be used to selectively and chemically ablate 5 alpha-reduced androgen synthesis in the gonads of L. variegatus.

Animals↗

Ovarian gene database.

OBJECTIVE: The entire human genome will be sequenced in September 2000. Facing the exponential increase of data in the GenBank at the National Center for Biotechnology Information, reproductive biologists are being bombarded with massive amounts of information on diverse genes. It is becoming increasingly difficult for individual investigators to sort out the diverse genetic and physiologic information on the localization and function of different genes in the ovary. To alleviate the present situation, we have taken advantage of the accessibility of the Internet and initiated a project that serves the entire ovarian research community. RESULTS AND DISCUSSION: The Ovarian Kaleidoscope database provides information regarding biologic function, expression pattern, and regulation of genes that are expressed in the ovary. In addition, it serves as a gateway to other online information resources relevant to ovarian research by offering results from original papers and data about nucleotide and amino acid sequences, and human and murine mutation phenotypes. All references are linked by hypertext to PubMed and additional links to sequence databases are also included. This information is accessible online and searchable not only by gene name but also by criteria such as the cellular and ovarian function of the gene product, the expression of genes in different ovarian cell types, or their association with specific ovarian phenotypes.

Base Sequence↗