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Sebastiano Andò

Publications and source records attributed to Sebastiano Andò.

29 records · Page 2Linked to original sources

Differential expression of steroidogenic factor-1/adrenal 4 binding protein and liver receptor homolog-1 (LRH-1)/fetoprotein transcription factor in the rat testis: LRH-1 as a potential regulator of testicular aromatase expression.

Aromatase converts testicular androgens to estrogens, which are essential for male fertility. Aromatase expression in testis occurs via transcription from promoter II, and requires the presence of a nuclear receptor half-site that binds the orphan receptor steroidogenic factor-1 [SF-1 (nuclear receptor 5A1)] to mediate basal and (in part) cAMP-induced transcription. We hypothesized that liver receptor homolog-1 (LRH-1) (nuclear receptor 5A2), a receptor closely related to SF-1, could also play a role in regulating aromatase expression in the testis. We demonstrate expression of LRH-1 in adult rat and immature mouse Leydig cells (LHR-1 > SF-1) as well as in pachytene spermatocytes and round spermatids but not in Sertoli cells, which in contrast, express high levels of SF-1. In transient transfection assays using TM3 Leydig cells and TM4 Sertoli cells, a rat promoter II luciferase reporter construct was stimulated by cotransfection of LRH-1 expression vector. Mutation analysis showed that induction by LRH-1 in TM3 and TM4 cells requires an AGGTCA motif at position -90, to which LRH-1 bound in gel shift analysis. We therefore provide evidence that LRH-1 plays an important role in the regulation of aromatase expression in Leydig cells. The colocalization of LRH-1 and aromatase to multiple testis cell types suggests that LRH-1 may have important effects on estrogen production, testis development, spermatogenesis, and testicular carcinogenesis.

Animals↗

Low calcium intake is associated with decreased adrenal androgens and reduced bone age in premenarcheal girls in the last pubertal stages.

In 50 premenarcheal girls selected from the lowest and highest end of the calcium-intake distribution of a large population sample, we evaluated bone mineral density (BMD), together with the following hormonal-metabolic parameters: androstenedione (ASD), dehydroepiandrosterone (DHEA), dehydroepiandrosterone sulfate (DHEAS), testosterone (T), estradiol (E2), the apparent free fractions of T (AFTC) and E2 (AFEC), osteocalcin (OC), parathyroid hormone (PTH), and 25-hydroxyvitamin D. Dietary calcium was assessed by 3-day food records, and BMD was measured at ultradistal (ud) and proximal (pr) radial sites, using dual-energy X-ray absorptiometry. Calcium intake, which was below the recommended levels set for the Italian population and below the recommended daily allowance (RDA) in both subgroups of girls, did not show any apparent relationship with ud- and pr- BMD. However, despite the similar chronological age of the two premenarcheal groups, in the low-calcium consumers, we found lower bone age, delayed pubertal development, and lower circulating adrenal androgens. Of interest, in girls who had a low calcium intake, PTH levels were significantly higher. In all premenarcheals, we observed that DHEA, T, and AFTC were positively correlated with bone age and with bone density at both radial sites. Even though bone density at the two radial sites did not show any apparent relationship to calcium consumption, the increased mean PTH in the girls with low calcium intake seems to underscore the hormonal attempt in maintaining calcium homeostasis. In conclusion, low calcium intake and reduced levels of adrenal androgens, leading to decreased bone age and delayed pubertal development, indicate a link between calcium intake, the hormonal milieu, and skeletal maturation.

Absorptiometry, Photon↗

Antimicrobial activity and cytotoxicity of Cirsium tenoreanum.

The methanol and ethyl acetate extracts of the aerial parts of Cirsium tenoreanum, have been evaluated for their phytochemical constituents and antibacterial and cytotoxic properties. Three flavonoids, apigenin, quercetin-3-O-galactoside and kaempferol-3-O-ramnoside, were isolated. The ethyl acetate extract showed a good antiproliferative activity.

Anti-Infective Agents↗

Estrogen receptor (ER)alpha and ER beta are both expressed in human ejaculated spermatozoa: evidence of their direct interaction with phosphatidylinositol-3-OH kinase/Akt pathway.

Human and animal models have evidenced how estrogen insufficiency is associated with abnormal spermatogenesis and male infertility. We previously demonstrated that estradiol is able to influence both capacitation and acrosome reaction in human ejaculated spermatozoa. It remains to be elucidated whether the biochemical changes induced by estradiol, in a rapid nongenomic way, are mediated by a single estrogen receptor (ER) or by the two ER subtypes, ER alpha and ER beta. In the present study, we have first demonstrated the concomitant expression of ER beta and ER alpha in human ejaculated spermatozoa. By RT-PCR and Southern blot, transcripts of both ERs were detected. Western blot analysis showed ER alpha and ER beta proteins at the same size as the "classical" ERs. The localization of ER alpha and ER beta with the immunocytochemistry shows a differential distribution of the two ER subtypes, the former being prevalently located in the midpiece, but the latter being in the tail. Estradiol has been associated with sperm longevity; however, the mechanism through which estradiol acts in sperm survival was never investigated. Upon estradiol exposure, we observed an enhanced phosphorylation of the proteins involved in the phosphatidylinositol-3-OH kinase (PI3K)/Akt pathway like PDK1, Akt, GSK-3, Bcl-2, together with ERK1/2, which was also involved in cell survival signals. Moreover, such phosphorylations were reduced in the presence of ICI 182, 780, addressing the role of estradiol and ERs in sperm survival. For instance we have provided, for the first time, a different interaction of the two ERs with the PI3K/Akt pathway, because ER alpha interacts with the p55 regulatory subunit of PI3K, whereas ER beta interacts with Akt1. However, it still remains to be elucidated whether the functional role of each of the ER subtypes in sperm survival signaling is redundant or distinct.

Blotting, Southern↗

Oestrogen receptor beta is required for androgen-stimulated proliferation of LNCaP prostate cancer cells.

The role of oestrogens in the development of prostate cancer is poorly understood. However, a large body of evidence has suggested that oestrogenic hormones may be involved in prostatic malignancy. The localization of oestrogen receptor beta (ERbeta) in the secretory epithelium of the human prostate has raised the intriguing possibility that the action of oestrogen could be mediated, at least in part, by this receptor during the process of carcinogenesis. Hence, specific interference with oestrogen-activated and ERbeta-mediated transcriptional activity could open new issues in the endocrine manipulation of prostate tumours. In the present study, we provide new insights into the role of ERbeta in the context of an androgen-responsive prostate cancer cell line such as LNCaP, which was used as a model system together with steroid receptor negative HeLa cells. ERbeta and the mutated androgen receptor (AR) T877A did not discriminate between oestrogen- or androgen-induced transactivation, whereas ERbeta and AR transcriptional activity were inhibited only by the respective hormone antagonists ICI 182,780 and casodex. Furthermore, the nuclear localization of ERbeta evaluated by immunocytochemistry confirmed the promiscuous response to hormones in addition to the specific inhibitory action of antagonists. Interestingly, ICI 182,780 and an ERbeta antisense expression vector repressed the growth effects of both 17beta-oestradiol and 5alpha-dihydrotestosterone, suggesting that ERbeta has a key role in the proliferation induced by these steroids in LNCaP prostate cancer cells. Thus our findings implicate ERbeta as a potential target for the treatment of prostate tumours.

Androgen Antagonists↗

Leptin enhances, via AP-1, expression of aromatase in the MCF-7 cell line.

Leptin, a product of adipocytes, is involved in the regulation of body weight and results strongly correlated to body fat content. An excess of fat mass represents a breast cancer risk factor particularly in postmenopausal women, where estrogen production by adipose tissue through its own aromatase activity stimulates tumor progression. Leptin stimulates estrogen production through the increase of aromatase expression and activity in human luteinized granulosa cells and adipose stromal cells. In the present study, we have examined the possible link that exists between leptin and breast cancer, focusing our attention on the direct effect of leptin on aromatase activity, which may enhance estrogen production and induce tumor cell growth stimulation. We have shown that leptin enhances aromatase mRNA expression, aromatase content, and its enzymatic activity in MCF-7. Aromatase expression appears to be regulated by tissue-specific promoter. It has been demonstrated that promoters II and 1.3 are the major promoters that drive aromatase expression in MCF-7. Transient transfection experiments using vector containing human aromatase promoters II and 1.3 sequence fused with luciferase reporter gene demonstrated that leptin is able to activate this promoter. In the presence of either mitogen-activated protein kinase inhibitor PD 98059 or ERK2 dominant negative as well as in the presence of STAT3 dominant negative, the stimulatory effects of leptin on aromatase promoter, enzymatic activity, and aromatase protein content were inhibited. Functional studies of mutagenesis and electrophoretic mobility shift assay revealed that the AP-1 motif is important in determining the up-regulatory effects induced by leptin on aromatase expression in MCF-7.

Androstenedione↗

Triiodothyronine decreases the activity of the proximal promoter (PII) of the aromatase gene in the mouse Sertoli cell line, TM4.

Estrogens and thyroid hormones play a significant role in regulating functions and development of the testis. The synthesis of estrogens from androgens is catalyzed by the enzyme complex termed aromatase, which in the testis displays an age-related cellular compartmentalization, primarily in Sertoli cells in immature animals, whereas in adults it is expressed in Leydig and germ cells. T3 induces a precocious terminal differentiation of prepubertal Sertoli cells together with a dramatic decrease of their aromatase activity. In the present work, we have examined the mechanism by which T3 exerts this inhibitory action on aromatase expression. As an experimental model, we used the mouse Sertoli cell line TM4, which conserves a large spectrum of functional features present in immature Sertoli cells. For instance, after revealing the presence of aromatase by immunocytochemistry and measuring its enzymatic activity, we confirmed in this cell line the functional events previously characterized in primary cultures of immature rat Sertoli cells: 1) a strong stimulation of aromatase activity by dibutyryl-cAMP [(Bu)2cAMP] (simulating FSH action); and 2) the inhibition of aromatase activity by incubation with T3 under basal condition and after (Bu)2cAMP stimulation. After identifying promoter II as the regulatory region located immediately upstream of the transcriptional initiation site in the TM4 cell line by rapid amplification of cDNA ends analysis, we conducted experiments to examine the molecular mechanism by which thyroid hormones modulate aromatase gene expression in this cell line. TM4 cells were transfected with plasmids containing different segments of the rat promoter II sequence ligated to a luciferase reporter gene. Analysis of the activities of these promoter fusions demonstrated that T3 inhibits basal and (Bu)2cAMP-stimulated activity of the aromatase promoter. This effect was not revealed in T3-treated cells transfected with construct in which the steroidogenic factor-1 (SF-1) response element was mutated. These results indicate that the inhibitory effect of T3 requires the integrity of the SF-1 response element and are further supported in the EMSA. The EMSA experiments demonstrated that thyroid hormone/thyroid receptor alpha1 complex (TH/TRalpha1) is able to compete with SF-1 in binding to oligonucleotides containing an SF-1 motif, an element essential for the activity of the PII aromatase promoter. The findings suggest that the binding of the thyroid hormone/thyroid receptor alpha1 complex to the SF-1 motif is the molecular mechanism by which T3 exerts an inhibitory effect on aromatase gene expression in the TM4 cell line.

Animals↗

Towards a physiological role for cytochrome P450 aromatase in ejaculated human sperm.

BACKGROUND: Advances in the definition of the function and the mechanism of estrogen action in different tissues have come from human and animal models of estrogen insufficiency. Recently we have demonstrated that aromatase is present and biologically active in human ejaculated sperm, suggesting that autonomous estradiol sperm production may influence sperm functions. In the present study we investigate a possible physiological role for enzymatically active P450 aromatase in human ejaculated sperm. METHODS AND RESULTS: To confirm the presence of mRNA coding for P450 aromatase, total RNA isolated from human sperm underwent RT-PCR and then Southern blot analysis. In non-capacitating medium, we observed that only estradiol and aromatizable steroids were able to increase sperm motility/migration; concomitantly they enhanced protein tyrosine phosphorylation and increased p-44/42 extracellular signal-regulated kinase activity. When we tested acrosin activity, it emerged that estradiol and aromatizable androgens were also able to induce the acrosome reaction evaluated by two different cytological staining techniques (triple-stain and fluorescein isothiocyanate-Pisum sativum agglutinin). All these events were enhanced by the 2'-O-dibutyryladenosine-3',5'-cyclic monophosphate and inhibited in the presence of the specific aromatase inhibitor, letrozole. CONCLUSIONS: From this study, it appears that a link exists between the locally produced estradiol (from ejaculated sperm), sperm capacitation and the acrosome reaction. The induction of both events by aromatizable androgens in the absence of exogenous mediators suggests that estrogen biosynthesis in ejaculated sperm is a process that may influence the intrinsic sperm fertilizing capability.

Acrosin↗

Evidence of aromatase localization in cytoplasmic droplet of human immature ejaculated spermatozoa.

Lytochrome P450 aromatase is a microsomal enzyme catalyzing the conversion of androgens to estrogens. P450arom expression has been demonstrated in testicular and epididymal sperm cells of several species but very limited data have been reported about maturating human germ cells. In this study, human spermatozoa with cytoplasmic droplet anomaly have been utilized to investigate aromatase immunolocalization in the immature germ cells of human ejaculate. Immunodetection has utilized a polyclonal antiserum as primary antibody, a biotinylated IgG as secondary antibody and then the avidin-biotin-peroxidase complex amplification followed by the diaminobenzidine staining. A strong immunoreaction was observed in the cytoplasmic droplets retained around the midpiece of immature spermatozoa and also in the descending droplets of late maturing sperm, while the other cellular components were unstained. Therefore, this investigation has demonstrated, for the first time, aromatase immunolocalization in residual cytoplasm of human ejaculated sperm, suggesting cytoplasmic droplets as possible estrogen biosynthesis sites during human sperm differentiation.

Aromatase↗

Aromatase overexpression enhances the stimulatory effects of adrenal androgens on MCF7 breast cancer cells.

The intratumoral conversion of adrenal androgens into estrogens by the aromatase enzyme complex may be an important mechanism of autocrine stimulation in hormone-dependent breast tumor. The effects of estrogens on tumor development are mediated by the activity of estrogen receptor alpha that induces gene expression and cell proliferation. Thus, estrogen biosynthesis 'in situ' and/or estrogen receptor action are the main targets of endocrine treatment in endocrine-dependent breast carcinoma. In the present study we demonstrate that three major adrenal androgens, dehydroepiandrosterone, 5-androstene-3beta, 17beta-diol and 4-androstene 3,17-dione, all acquire an estradiol-like biological efficacy in aromatase transfected MCF7 breast cancer cells. Our results suggest that in postmenopausal women aromatase inhibitors might be considered as an adjuvant approach to the treatment of hormone-dependent breast tumors that overexpress aromatase.

Adrenal Glands↗

Human ejaculated spermatozoa contain active P450 aromatase.

The generation of cytochrome P450 aromatase (P450arom) and estrogen receptor (ER) knockout mice has raised new interest in the physiological role of estrogens in male reproduction. Testicular expression of P450arom, the enzyme that converts androgens into estrogens, has been shown in both somatic and germ cell types in several species, whereas in humans, testicular expression is confined to the somatic cells. The aim of this study was to determine whether P450arom is present in human ejaculated spermatozoa. Using RT-PCR and specific primers, we amplified the highly conserved helical, aromatic, and heme-binding sequences of the conventional human P450arom from RNA isolated from human spermatozoa. Employing a rabbit polyclonal antiserum directed against human placental P450arom, immunoblotting analysis demonstrated aromatase protein expression, which was localized primarily to the tail and midpiece of spermatozoa. Measurement of enzymatic activity using a sensitive (3)H(2)O aromatase assay revealed that activity was enhanced by the 2'-O-dibutyryl cAMP and completely inhibited in the presence of the specific aromatase inhibitor, letrozole. These results represent the first demonstration that human spermatozoa are a potential site of estrogen biosynthesis. The physiological relevance of estrogen synthesis in spermatozoa remains to be elucidated and opens a new area of investigation in male fertility.

Aromatase↗