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Biomedical subjects

J Tesarik

Publications and source records attributed to J Tesarik.

At least 109 records · Page 6Linked to original sources

Progesterone action on the human sperm surface is potentiated by an egg-associated acrosin activator.

The progesterone-induced Ca2+ influx and acrosomal exocytosis in human sperm are recently described examples of non-genomic steroid action on the cell surface. These progesterone effects are known to be inhibited by synthetic protease inhibitors. In this study we tested a hypothesis that a physiological activator of the sperm protease acrosin modulates the sperm response to progesterone. It was found that the activator augments the amplitude of the progesterone-induced Ca2+ transient and accelerates the progesterone-induced acrosomal exocytosis. These observations suggest a physiological significance of the modulation of nongenomic steroid effects by protease regulators.

Acrosin↗

Relationship between molecular conversions of acrosin and the progression of exocytosis in the calcium ionophore-induced acrosome reaction.

In this study we used a previously characterized monoclonal antibody to analyze the molecular conversions of acrosin during the acrosomal exocytosis induced by ionophore A23187. Before sperm exposure to the ionophore, most of the sperm acrosin was in the form of proacrosin (55-kDa and 53-kDa forms). Upon exposure to the ionophore, the concentration of proacrosin in sperm samples decreased rapidly and was negatively correlated with the progression of exocytosis. After 1 h of ionophore treatment, proacrosin was quantitatively converted into the two active acrosin forms, alpha-acrosin (49 kDa) and beta-acrosin (36 kDa). However, products of further acrosin conversions were not found after this treatment. As compared with the speed of acrosin activation during sperm contact with the ionophore, the ionophore-induced release of acrosin from the sperm cells into the soluble fraction was apparently delayed, and only the active acrosin forms (49 kDa and 36 kDa) were found in sperm incubation media. External Ca2+ influenced the speed of proacrosin conversion in a concentration-dependent manner. The ionophore-induced activation of proacrosin and acrosome reaction were partially inhibited by trypsin inhibitors. The results suggest that proacrosin activation is an essential step in the mechanism of the acrosomal exocytosis.

Acrosin↗

Evidence of new antigens in the mouse cumulus oophorus during preovulatory cumulus expansion.

The effects of an antiserum (anti-COC) against ovulated mouse cumulus-oocyte complexes (COC) on in vitro fertilization of mouse oocytes were studied. Preincubation of ovulated COC with various concentrations of anti-COC led to dose-dependent impairment of fertilization rates as well as to a decrease in the number of spermatozoa attached to the zona pellucida. Anti-COC was used to probe Western blots of cumulus proteins. These cumuli were obtained from 2 experimental groups of mice corresponding to 2 different maturational stages (preovulatory immature COC or preovulatory mature COC). Two antigens (70 and 80 kDa) present in cumulus intercellular matrix from mature COC were only found as traces in matrix from immature COC. In addition, the protein pattern of the cumulus intercellular matrix was different from that of cumulus cells, whatever the COC maturational stage. These results indicate the appearance of new proteins in the cumulus oophorus during preovulatory expansion and are consistent with the contraceptive action of anti-COC.

Animals↗

Differential sensitivity of progesterone- and zona pellucida-induced acrosome reactions to pertussis toxin.

Pertussis toxin-sensitive guanine nucleotide-binding regulatory proteins (G proteins) have previously been shown to mediate the zone pellucida-induced acrosome reaction in mammalian sperm. In this study we compared the inhibitory effect of pertussis toxin on the zona-induced acrosome reaction in human spermatozoa with that on the reaction induced by progesterone, another physiological acrosome reaction-promoting stimulus associated with the ovulated oocyte. Up to the concentration of 1 microgram/ml, pertussis toxin did not produce any direct effects on the acrosome reaction frequency nor did it influence sperm movement and viability. However, preincubation of spermatozoa with the toxin at a concentration of 100 ng/ml completely abolished the increase in the acrosome reaction frequency upon subsequent exposure to solubilized zona pellucida material. In contrast, the same treatment did not impair the ability of spermatozoa to initiate the acrosome reaction in response to progesterone. Moreover, the preincubation with pertussis toxin did not modify the changes in the intracellular concentration of calcium ions occurring after progesterone addition. These data suggest that different physiological stimuli may utilize different signal transduction pathways to induce the human sperm acrosome reaction.

Acrosome↗

Insights into the function of a sperm-surface progesterone receptor: evidence of ligand-induced receptor aggregation and the implication of proteolysis.

Human spermatozoa have recently been introduced as a model for the study of rapid, nongenomic effects of steroids on the cell. Indirect evidence suggests the presence of a novel type of progesterone receptor on the cell surface; some cellular responses mediated by the receptor have been shown to be sensitive to protease inhibitors, but the molecular identity and the mode of function of this receptor are not known. Recent biochemical evidence showed that Ca2+ influx and a Ca(2+)-dependent exocytotic event (the acrosome reaction) can be induced in human sperm by antibody-mediated aggregation of the cell-surface progesterone receptor. These data suggested that progesterone receptor aggregation, occurring after ligand binding, may represent an early reaction in the signal transduction pathway. In this study we used cytological methods to examine ligand-induced changes in the distribution of the progesterone receptor in the sperm plasma membrane. We also examined the effects of trypsin and of trypsin inhibitors on the function of the receptor. Under the conditions of this study, neither trypsin nor trypsin inhibitors affected sperm viability, motility, or the acrosome reaction. However, the trypsin treatment completely abolished the ligand-binding activity of the sperm progesterone receptor. On the other hand, trypsin inhibitors did not influence the ligand binding despite their inhibitory effect on the ligand-induced exocytosis. The treatment with trypsin inhibitors was thus used to prevent the exocytotic reaction and so to preserve the plasma membrane for the study of ligand-induced receptor migration. The distribution of ligand-receptor complexes in the sperm acrosomal region remained homogeneous during incubation at 4 degrees C, but warming to 37 degrees C entailed a rapid formation of patches, followed by migration of the complexes towards the sperm equatorial region and ending by a virtually complete disappearance of the complexes from the anterior acrosomal region. It is concluded that aggregation is an early response of the sperm-surface progesterone receptor to ligand binding, that trypsin inhibitors block the function of the receptor downstream of the aggregation, and that some mechanism must exist in the plasma membrane to protect the ligand-binding site from digestion while permitting the protease action in the signal transduction mechanism.

Acrosome↗

Fast acrosome reaction measure: a highly sensitive method for evaluating stimulus-induced acrosome reaction.

OBJECTIVE: To test a new method for evaluation of stimulus-induced acrosome reaction (AR). To determine whether this method, based on the definition of a specific staining pattern of recently reacted spermatozoa, brings an advantage of increased sensitivity as compared with a standard procedure. DESIGN: The hypothesis that a specific staining pattern with fluorescein-labeled Pisum sativum agglutinin corresponds to recently acrosome-reacted spermatozoa was tested by analyzing the frequency of this pattern at different time points after addition of ionophore A23187, an artificial AR inducer. The AR results obtained with a new method based on this relationship were compared with those obtained with a standard method of AR evaluation. SETTING: Private hospital, public research center, and a university-based research laboratory. PARTICIPANTS: Healthy sperm donors. MAIN OUTCOME MEASURE: Changes in the frequency of specific sperm-staining patterns. RESULTS: A specific sperm-staining pattern with P. sativum agglutinin was shown to be associated with a recently occurred AR, whereas the absence of staining was typical of reactions having occurred a longer time ago. This phenomenon was used to define a formula for fast AR measure after stimulus addition. An increased sensitivity provided by this formula as compared with a standard evaluation was demonstrated. CONCLUSIONS: Fast AR measure is a simple, easy-to-perform method for AR evaluation. It is particularly suitable for testing the effects of rapidly acting stimuli.

Acrosome↗

Sperm treatment with pentoxifylline improves the fertilizing ability in patients with acrosome reaction insufficiency.

OBJECTIVE: To test whether pentoxifylline, a drug previously shown to sensitize spermatozoa from normal samples to the action of acrosome reaction stimuli, can be used to improve the fertilizing ability of spermatozoa from patients with acrosome reaction insufficiency. DESIGN: Prospective analysis of pentoxifylline effects on the acrosome reaction and zona-free egg penetration; retrospective comparison of IVF results with and without the use of pentoxifylline. SETTING: Private hospital, public research center, and university-based laboratory. PATIENTS: In vitro fertilization patients selected on the basis of a previous acrosome reaction test. INTERVENTIONS: None in the experimental part; IVF-ET in the clinical part of this study. MAIN OUTCOME MEASURES: Frequency of the acrosome reaction, rate of penetration of zona-free eggs, normal fertilization in IVF attempts. RESULTS: Pentoxifylline improves the acrosome reaction scores and zona-free egg penetration rates in patients with acrosome reaction insufficiency. Preliminary clinical experience shows an improvement of IVF results in these patients. CONCLUSIONS: In vitro pentoxifylline treatment of spermatozoa to be used in IVF improves the sperm fertilizing ability in patients with acrosome reaction insufficiency. However, the effect of pentoxifylline on the acrosome reaction should be tested individually in each patient before the application of the drug in this new indication.

Acrosome↗

Solubilized human zona pellucida competes with a fucosylated neoglycoprotein for binding sites on the human sperm surface.

OBJECTIVE: To evaluate the implication of fucose binding sites on the sperm surface in the sperm-zona pellucida (ZP) binding by examining the ability of a fucosylated neoglycoprotein to compete with solubilized zona proteins for sperm binding. DESIGN: The binding of a fucosylated neoglycoprotein to spermatozoa was analyzed in relation to sperm capacitation and the actual acrosomal status. The effect of solubilized ZP material on the binding was examined. SETTING: Private hospital, public research center, and university department. PATIENTS, PARTICIPANTS: Healthy volunteers with normal sperm parameters. INTERVENTIONS: None. MAIN OUTCOME MEASURES: Fluorescence signal detected by fluorescence-activated cell sorting or fluorescence microscopy on spermatozoa incubated with fluorescein isothiocyanate-labeled fucosylated neoglycoprotein. RESULTS: There was a small subpopulation of spermatozoa that showed a strong binding activity for the fucosylated neoglycoprotein, and the size of this subpopulation increased with the time of exposure to capacitating conditions. The binding sites were located on the head (mainly on the acrosomal region) of acrosome-intact spermatozoa. The neoglycoprotein binding was competitively inhibited by solubilized ZP. CONCLUSIONS: The data show that a commercially available fucosylated neoglycoprotein competes with solubilized ZP proteins for binding sites on the sperm surface. Further research into the relationship between the neoglycoprotein binding and zona binding is warranted to evaluate the potential diagnostic usefulness of this neoglycoprotein.

Binding Sites↗

Fertilization failure after subzonal sperm insertion associated with defective fusional capacity of acrosome-reacted spermatozoa.

A case of an isolated impairment of the ability of acrosome-reacted spermatozoa to fuse with the oocyte is reported. This impairment was associated with fertilization failure after subzonal sperm insertion even though elevated numbers of spermatozoa were inserted per oocyte. This observation shows the need for further studies into the relationship between the acrosome reaction and the sperm-oocyte fusion to better understand the advantages and the limitations of subzonal sperm insertion in different types of sperm pathology.

Acrosome↗

Subzonal sperm insertion with aged human oocytes from failed in-vitro fertilization attempts: fertilization results and some applications.

This study was undertaken to assess the potential of aged human oocytes from failed in-vitro fertilization attempts as a model for the study of fertilization events after subzonal sperm insertion (SUZI). Criteria of aged oocyte suitability for this purpose were (i) the absence of nuclei, (ii) the presence of a polar body, (iii) the absence of cell division or fragmentation, (iv) marked ooplasmic contraction in hyperosmotic medium, and (v) rapid ooplasmic relaxation after returning into normo-osmotic medium following the micromanipulation. Micro-injection techniques were essentially the same as for SUZI with fresh oocytes. Oocytes that fused with the micro-injected spermatozoa developed pronuclei of typical internal structure. However, the number of pronuclei was often higher than that theoretically expected if each sperm nucleus incorporated into the oocyte gave rise to a single pronucleus. Thus, the use of aged oocytes implies the need for a specific method to assess the frequency of fusion in sperm samples examined. The results suggest that the method described here can be applied in a preliminary diagnostic test before a therapeutic SUZI attempt and in studies aimed at the optimization of sperm treatment protocols to increase the fusion capacity of subzonally inserted spermatozoa.

Acrosome↗

Protein-protein interactions controlling acrosin release and solubilization during the boar sperm acrosome reaction.

In this study we used previously characterized monoclonal antibodies to acrosin (ACR.2) and to an acrosomal matrix antigen (ACR.4) to analyze the acrosin-binding activity of a 28-kDa putative acrosin-binding protein from the acrosomal matrix. The 28-kDa protein bound proacrosin and the 49-kDa form of acrosin (alpha-acrosin) but it did not bind the 36-kDa acrosin form (beta-acrosin). The acrosin-binding activity of the 28-kDa protein was stimulated by Ca2+, inhibited by Mg2+, and removed by disulphide bond reduction. Induction of the acrosome reaction by a calcium ionophore resulted in proteolytic cleavage of the 28-kDa protein, giving rise to a 12-kDa degradation product that was the only form of ACR.4 antigen released to incubation media; the release of the ACR.4 antigen was closely correlated with that of acrosin. The release of alpha-acrosin to incubation media was accelerated in the presence of ACR.4 antibody. In a cell-free system, a limited cleavage of the purified 28-kDa protein into immunoreactive degradation products was catalyzed by acrosin but not by trypsin or chymotrypsin. The data suggest that the 28-kDa acrosomal protein helps to maintain acrosomal matrix integrity and controls the acrosin release from acrosome-reacted cells.

Acrosin↗

Stimulation of protein tyrosine phosphorylation by a progesterone receptor on the cell surface of human sperm.

Mature human sperm initiate a rapid Ca2+ influx and the acrosomal exocytosis in response to progesterone. Recent evidence indicates that both events can be induced by antibody-mediated cross-linking of a sperm surface progesterone receptor. In many other systems in which signal is generated by receptor cross-linking, protein phosphorylation on tyrosine residues is involved in the signal transduction across the plasma membrane. In this study we examined whether tyrosine phosphorylation is implicated in the function of the sperm surface progesterone receptor, too. The effect of progesterone on the phosphorylation of proteins from a sperm membrane lysate was evaluated by in vitro kinase assay and by phosphoamino acid analysis using [gamma-32P]ATP as precursor. These experiments revealed a selective increase in the tyrosine phosphorylation of a 94-kilodalton phosphoprotein in the presence of progesterone. To decide whether the progesterone-induced increase in protein tyrosine phosphorylation is actually due to the hormone action on the cell surface, living sperm were treated with a cell-impermeant progesterone receptor agonist, and the resulting changes in the cellular level of phosphotyrosine proteins were examined. These experiments showed a clear relationship between the agonist binding and an increase in the phosphotyrosine concentration in the respective cells. This relationship was lost in the presence of genistein, which also efficiently inhibited the phosphorylation of the 94-kilodalton protein and the progesterone-induced acrosomal exocytosis. These results lead to the hypothesis that protein tyrosine phosphorylation is involved in signal transduction through the sperm surface progesterone receptor and may be implicated in nongenomic steroid effects in other cell types.

Adenosine Triphosphate↗

Progesterone action through aggregation of a receptor on the sperm plasma membrane.

Rapid steroid effects, reported in several cell types, have pointed out the possibility of non-genomic mechanisms of action, presumably on cell surface receptors. Here we analyzed the effects of antibody-mediated aggregation of a novel type of progesterone receptor on the plasma membrane of human sperm cells. We report that aggregation of hormone-receptor complexes induces Ca2+ influx and a Ca(2+)-dependent exocytotic event in this system. These data suggest a possible mechanism for rapid steroid-induced events. Further research is warranted to examined if a similar mechanism is involved in rapid steroid effects in other cell types.

Biological Transport↗

Selective expression of a progesterone receptor on the human sperm surface.

OBJECTIVE: To visualize progesterone (P) binding sites on the sperm surface, examine the relationship between hormone binding and hormone action (acrosome reaction), and determine the size of the hormone-responsive sperm subpopulation. DESIGN: Kinetic analysis of P binding was combined with the assessment of the hormone effect using a fluorescent acrosomal marker. SETTING: Private hospital, medical research center, and a university-based andrological laboratory. PATIENTS, PARTICIPANTS: Sperm samples were from healthy volunteers with normal spermiogram values. INTERVENTIONS: None. MAIN OUTCOME MEASURES: Progesterone binding was analyzed by fluorescence microscopy and flow cytometry using P coupled to fluorescein isothiocyanate-labeled bovine serum albumin. Tetramethylrhodamine isothiocyanate-labeled Pisum sativum agglutinin was used as acrosomal marker in double-labeling experiments. RESULTS: After in vitro capacitation, only few spermatozoa (approximately 10%) were able to bind P to the cell surface, but most of these cells subsequently generated the acrosome reaction in response to hormone binding. CONCLUSIONS: The expression of P receptor sites on the human sperm surface is a major factor controlling the P-induced acrosome reaction. Further studies are warranted to explore if defective expression of the receptor can compromise fertility.

Binding Sites↗

Defective function of a nongenomic progesterone receptor as a sole sperm anomaly in infertile patients.

OBJECTIVE: To compare the function of a novel nongenomic progesterone (P) receptor on the human sperm surface (mediating the P-induced acrosome reaction) in spermatozoa from fertile donors and from infertile patients. To examine the possible implication of defective P receptor function as an etiologic factor in unexplained male infertility. DESIGN: Progesterone binding and P effects were assessed in sperm from infertile patients and compared with corresponding parameters for sperm from healthy donors. SETTING: Private hospital, medical research center, and a university-based andrological laboratory. PATIENTS, PARTICIPANTS: Sperm samples were from infertile patients (no pathology detected in their wives) attending our infertility clinic and from healthy sperm donors. INTERVENTIONS: None. MAIN OUTCOME MEASURES: Progesterone binding sites were visualized with a fluorescein-labeled protein-P conjugate. Indo 1-AM (a fluorescent indicator of intracellular free Ca2+) was used to measure P-induced Ca2+ influx. Progesterone-induced acrosome reaction was monitored after acrosomal staining with Pisum sativum agglutinin. RESULTS: Among 8 patient sperm samples with normal spermiogram values (of 53 examined), 5 showed a reduced percentage of P-binding spermatozoa and an abnormal response to the hormone in terms of Ca2+ influx and the acrosome reaction. CONCLUSIONS: Defective function of a sperm surface P receptor is described in some cases of male infertility. The observed fluorescence microscopic patterns of hormone binding may be used to further investigate receptor activity in unexplained male infertility.

Acrosome↗

Effects of phosphodiesterase inhibitors caffeine and pentoxifylline on spontaneous and stimulus-induced acrosome reactions in human sperm.

OBJECTIVE: To determine whether the phosphodiesterase inhibitors caffeine and pentoxifylline influence the acrosome reaction in the conditions in which they are currently used as sperm movement enhancers. DESIGN: The frequency of acrosome reaction occurring spontaneously in capacitating media or induced by physiological (follicular fluid [FF]) and artificial (ionophore A23187) stimuli was compared in the presence and absence of the phosphodiesterase inhibitors. SETTING: Private hospital and research laboratory. PATIENTS, PARTICIPANTS: Patients undergoing routine semen examination before in vitro fertilization (no pathology detected) and healthy sperm donors. INTERVENTIONS: None. MAIN OUTCOME MEASURE: Percentage of acrosome-reacted sperm determined with the use of fluorescein-labeled Pisum sativum agglutinin as acrosomal stain. RESULTS: Caffeine alone augmented the frequency of acrosome reaction, but this effect was not observed with pentoxifylline alone. However, pentoxifylline increased sperm responsiveness to the acrosome reaction-inducing stimuli, FF and ionophore A23187. CONCLUSIONS: The promotion of spontaneous acrosome reaction may counteract the benefits from application of caffeine as motility stimulant. On the other hand, the sensitization to physiological acrosome reaction stimuli is expected to contribute to the improvement of sperm fertilizing ability by pentoxifylline and make this drug a potential candidate for the treatment of acrosome reaction anomalies.

3',5'-Cyclic-AMP Phosphodiesterases↗