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An ultrastructural study of epididymal mouse spermatozoa binding to zonae pellucidae in vitro: sequential relationship to the acrosome reaction.

Mouse sperm bind to the zona pellucida of the egg prior to penetration of the zona and entry into the perivitelline space. The question then arises: when does the acrosome reaction occur relative to these processes? An ultrastructural study of mouse epididymal sperm bound to the surface of the zona and in the privitelline space was undertaken to clarify this point. Cumulus-free mouse eggs were inseminated in either a complete defined culture medium capable of supporting in vitro fertilization or in Tris/NaCl buffer containing Ca+2. Both media support sperm binding to the zona to the same extent; binding is complete in 15 minutes. Unbound sperm were removed by a step gradient density centrifugation to yield a preparation of eggs with sperm firmly bound. All sperm in the perivitelline space had undergone the acrosome reaction. Sperm bound at the surface of the zonae pellucidae of eggs recovered at ten minutes after insemination all had intact acrosomes. At 40 minutes after insemination, half of the sperm were intact; the other half were in the initial stages of the acrosome reaction. At 90 minutes after insemination, 12% of the sperm had undergone the full acrosome reaction and were starting to penetrate the zona; of the balance, half were in various stages of the acrosome reaction, while half were still intact. These findings support the hypothesis that the sequence of the early reactions leading to fertilization in the mouse is: intact sperm binding to zona; acrosome reaction at the zona surface; penetration of the zona.

Acrosome

SLC35G3 is a UDP-N-acetylglucosamine transporter for sperm glycoprotein formation and underpins male fertility in mice.

Despite the recognized importance of glycans in biological phenomena, their complex roles in spermatogenesis and sperm function remain unclear. SLC35G3, a 10-transmembrane protein specifically found in early round spermatids, belongs to the sugar-nucleotide transporter family, indicating its involvement in glycan formation. In this study, we found that Slc35g3 knockout male mice were sterile due to impaired sperm functions in uterotubal junction passage, zona pellucida binding, and oocyte fusion. Mouse SLC35G3 has UDP-GlcNAc transporter activity, and its ablation caused abnormal processing of the sperm plasma membrane and acrosome membrane proteins. Reported human SLC35G3 mutations (F267L and T179HfsTer27) diminished the UDP-GlcNAc transporter activity of SLC35G3, implying infertility risks in males carrying these mutations. Our findings unveil the vital roles of SLC35G3 in the glycan formation of sperm membrane proteins critical for sperm fertilizing ability.

Biological Sciences

A method for specific detection of autoantibodies to the zona pellucida in infertile women.

Human antibodies to porcine erythrocytes were found to bind to porcine but not to human zonae pellucidae, whereas human isohemagglutinins bound to human but not to porcine zonae. On the basis of the binding behavior of agglutinins, it was found that the immunofluorescence of porcine zonae produced by selected sera from infertile women was due to an antibody of different specifity from that which agglutinated pig red blood cells. However, no serum component other than heteroagglutinin was contained in selected sera from control subjects which fluoresced porcine zonae. Since the component was present in the immunoglobulin G fraction, bound to human zonae, and was reactive with zona-specific antigen(s), it was judged an autoantibody to zonae. Thus a method for specific detection of autoantibodies to zonae has been developed by indirect membrane immunofluorescence using porcine ova as targets.

Absorption

Block of hamster fertilization by anti-ovary antibody.

Antibody produced in rabbits against hamster ovary blocked fertilization of golden hamster eggs in vitro by binding to the surface of the zona pellucida and rendering it impenetrable to spermatozoa. The antibody was also effective in blocking fertilization in vivo. An intraperitoneal injection of the antibody into females resulted in the complete inhibition of fertilization for approximately 12 days, i.e. three oestrous cycles. This temporary sterility was apparently due to the binding of the antibody to the zona pellucida of oviducal and ovarian oocytes, and dot due to a failure of sperm ascent or capacitation in the female genital tract. Neither the oestrous cycle nor ovulation was affected by the antibody injection.

Animals

Inhibition of in-vitro fertilization of intact and denuded hamster eggs by univalent anti-sperm antibodies.

Univalent (Fab) rabbit anti-hamster sperm antibodies added to an in-vitro fertilization system did not interfere with the sperm acrosome reaction or motility, but inhibited cumulus dispersion by the spermatozoa, sperm binding to and passage through the zona pellucida as well as sperm-egg fusion. Addition of the Fab preparations to the capacitated spermatozoa at various times before or up to 40-45 min after the sperm-egg mixing prevented penetration of spermatozoa through the zona pellucida. Detachment of the spermatozoa already bound as well as those partly inside the zona pellucida was achieved by a late addition of antibodies. In experiments with zona-free hamster eggs, addition of the Fab antibodies to the spermatozoa 10 min to 5 h before the introduction of unfertilized eggs reduced the rate of adhesion and fertilization to very low levels. These antibodies were not absorbed on hamster ovary, liver or kidney and had no direct effect on the fertilizability of zona-intact or zona-free eggs.

Animals

Immunological aspects of sperm receptors on the zona pellucida of mammalian eggs.

Sperm receptor sites on the surface of the zona pellucida are believed to be necessary for fertilization on the mammalian egg. Ovary specific antibodies are known to precipitate the zona pellucida and are also responsible for inhibition of sperm binding and subsequent fertilization. The nature of the proposed receptor sites which are blocked by antibodies are discussed relative to comparable studies in which phytoagglutinins and other agents are used to determine the chemical nature of sperm receptor sites.

Animals

Cell surface carbohydrates of preimplantation embryos as assessed by lectin binding.

Preimplantation embryos were obtained from the uteri and oviducts of 2 strains of mice, Swiss CD-1 and B6CBA. After removal of the zona pellucida by treatment with pronase, FITC-lectins were bound to the embryonic cell surfaces at either 4 degrees C or 37 degrees C. Both morula and blastocyst stage embryos bound the following lectins, FITC-ConA, FITC-WGA, FITC-RCAII and FITC-RCAI. No difference in binding was observed between the morula stage and the blastocyst stage within each mouse strain for each specific lectin. However B6CBA embryos bound less FITC-ConA and FITC-WGA than the corresponding Swiss CD-1 embryos. The topographical arrangement of the lectin receptors was observed to differ between 4 degrees C and 37 degrees C for FITC-ConA, FITC-RCAII, and FITC-RCAI. While lectins bound at 4 degrees C showed a pattern of continuous labeling, the same lectin at 37 degrees C showed aggregation of lectin receptors into patches indicating lateral mobility of these receptors within the embryonic cell membranes. In contrast FITC-WGA bound at 4 degrees C and 37 degrees C demonstrated continuous labeling of embryos at both temperatures. FITC-fucose binding protein did not bind to Swiss CD-1 embryos. The invasiveness of trophoblastic cells of mouse blastocysts was studied by culturing isolated embryos without prior enzyme treatment on reconstituted collagen gels. After 4 days in BME containing only glutamine and bovine serum albumin as supplements, the embryos shed their zona pellucida and implanted into the collagen gel as indicated by zones of lysis in proximity to the embryonic cells when analyzed by scanning electron microscopy.

Animals

The uptake and redistribution of 241pu within the gonads.

Male and female hamsters and a female rabbit were injected with 241Pu citrate. The hamsters were killed serially at 15 min, 2 hours, 1 day and 10 days after injection, and the rabbit 1 week after injection. The gonads were examined for 241Pu by tissue-section autoradiography. Soon after injection the plutonium was concentrated by the contents of atretic Graafian follicles and by thecal rings in the ovary, but was found to be dispersed throughout the testes. It is suggested that the disperse distribution in the testes which is only seen soon after injection may be an artefact of tissue processing. One day after injection, plutonium was accumulated by macrophages in both the follicles of the ovary and in the interstitial tissue of the testes. Macrophages containing plutonium later migrated away from the aretic ovarian follicles towards the ovarian medulla. This pattern of distribution and redistribution in the ovary is regarded as likely to lower the effective dose from a-emitting plutonium isotopes to the viable oocytes. No migration of macrophages was seen in the testes. Histochemical staining methods revealed the presence of acid protoglycans, including chondroitin sulphate, and glycoproteins at the sites of plutonium concentration in the ovary. These molecules are regarded as likely receptor sites for plutonium. In the testes no acidic carbohydrates were found, and it is suggested that the initial binding site for plutonium may be a compound lipid. This was deduced from the apparent inability of the interstitial tissue of the testes to bind plutonium in situ.

Animals

Immunological interference with fertilization.

Rabbit antisera against mouse and hamster ovaries and sheep antisera against rabbit ovary have been used to demonstrate ovary specific antigens in these three species of mammals. That one or more of the specific antigens are located in the zona pellucida which surrounds the egg was indicated in immunofluorescence studies and by the effects antibodies have on the zona. After exposure to the antibody a precipitate forms on the zonae of preovulatory, unfertilized and fertilized eggs and all embryonic stages up to the time when the zona is shed. The precipitate was always seen near the outer surface of the zona suggesting that the active sites of the antigen(s) are located in this region. Trypsin and pronase which usually dissolve the zona were ineffective on the precipitated outer portion but did dissolve the inner, unprecipitated region. Species- and tissue-specificity and chemical nature of the zona are discussed. Important roles for the zona antigen(s) in a number of early events in reproduction were indicated by the effects of antizona antibodies have on fertilization and implantation. Pretreatment of unfertilized hamster eggs with zona precipitating antibodies was most effective in blocking sperm attachment to the zona. When the antibody was added subsequent to in vitro insemination, but before the sperm had passed through the outer region of the zona, sperm penetration was blocked. Mouse embryos treated with zona precipitating antibody and cultured in vitro failed to escape from the zonae, implying that implantation could be inhibited by antibody. Passive immunization of female mice with antizona antibodies and precipitattion of the zonae of hamster embryos in transfer experiments reduced the number of implantation sites. The identification of zona antigens and the effects of zona precipitating antibodies on early reproductive events encourage further studies on the zona in reference to immunological control of fertility.

Animals