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Biomedical subjects

G E Olson

Publications and source records attributed to G E Olson.

At least 19 recordsLinked to original sources

Structural organization of surface domains of sperm mitochondria.

Sperm mitochondria are assembled into an organized sheath surrounding the outer dense fibers and axoneme of the flagellar midpiece. Each mitochondrion is arranged so that its surface faces three different cellular organelles including the plasma membrane, neighboring mitochondria and the outer dense fiber-axoneme complex. In this manuscript we present data on structural differentiations of these three different surface domains of the outer mitochondrial membrane. We demonstrate that the apposed surfaces of adjacent mitochondria are joined by a two dimensional network of studs unique to this domain. By contrast, the surface domain facing the outer dense fiber-axoneme complex exhibits a different, but highly ordered structural organization, evident as a parcrystalline network of parallel stripes; this domain is further distinguished by its exclusive association with a midpiece-specific cytoskeletal complex. These differentiations are not seen on the surface domain of mitochondria which faces the plasma membrane. The implications of the mosaic composition of the outer mitochondrial membrane in the assembly and function of the mitochondrial sheath are discussed.

Animals

Ultrastructural analysis of the acrosome reaction in a population of single guinea pig sperm.

Cauda epididymal guinea pig spermatozoa are arranged in rouleaux, with the sperm heads stacked one on top of the other; the plasma membranes over the apical segment of the acrosomes of adjacent sperm are linked and form non-fusigenic "junctional" zones. A complex structural and temporal sequence of membrane fusions occurs during the acrosome reaction of guinea pig sperm in rouleaux. In this study, we have devised a procedure for dispersing the rouleaux and isolating a population of single, motile guinea pig sperm, and have investigated the ultrastructural features of the acrosome reaction in single sperm to determine if the pattern of membrane fusions is different from sperm in rouleaux. The rouleaux were dispersed using trypsin, and damaged cells were removed by passing the sperm suspension through a glass bead column; a population of 70-90% motile, acrosome-intact, single sperm was obtained. Sperm were then induced to undergo lysolecithin-mediated, "synchronous" acrosome reactions, and processed for transmission electron microscopy. The acrosome reaction involved a complex sequence of membrane fusions between the plasma membrane (PM) and outer acrosomal membrane (OAM). On the convex surface of the apical segment, sheets of hybrid membrane and parallel arrays of hybrid membrane tubules formed; filaments were associated with the luminal surface of the residual OAM in these regions. Hybrid membrane vesicles were produced on the concave surface of the apical segment, but fusion was delayed relative to the convex surface. In the principal segment, branching arrays of hybrid membrane tubules formed and later vesiculated.(ABSTRACT TRUNCATED AT 250 WORDS)

Acrosome

Changes in actin distribution during sperm development in the opossum, Monodelphis domestica.

The distribution of actin in spermatogenic cells and epididymal spermatozoa of the opossum, Monodelphis domestica, was examined by immunofluorescence microscopy to identify its potential function in the major structural events of sperm development. In spermatogenic cells actin was located at the site of initial interaction between the nucleus and acrosome and remained present through subsequent acrosome morphogenesis. Actin was also associated both with the posterior pole of the nucleus, at the site of flagellar attachment, and with the manchette. Thus actin may play a role in establishing the specific associations of spermatid organelles and in the streamlining of the cells' architecture. In epididymal spermatozoa two sites of actin localization are present. The first site is surrounding the connecting piece where it may participate in the characteristic 90 degrees rotation of the head. The second site was a ring of actin surrounding the lateral boundary of the acrosome where it may play a role in the sperm pairing process which also occurs in the epididymis.

Acrosome

Glycoprotein changes in the rat sperm plasma membrane during maturation in the epididymis.

To investigate surface glycoprotein changes during post-testicular maturation, plasma membranes were isolated from proximal caput, distal caput, and cauda epididymal rat spermatozoa. Membrane glycoproteins were identified on Western blots of SDS-PAGE fractionated samples using biotinylated lectins and Vecta-stain reagents; these were compared to glycoproteins present in cauda epididymal luminal fluid. Lens culinaris agglutinin, Pisum sativum agglutinin, peanut agglutinin, wheat germ agglutinin, Ricinus communis agglutinin, Ulaex europaeus agglutinin, and Dolichol biflorus agglutinin each bound a specific subset of the polypeptides present. Several types of glycoprotein changes were noted including their appearance, loss, alteration of staining intensity, and alteration of electrophoretic mobility. Some maturation-dependent sperm surface glycoproteins co-migrated with glycoproteins present in epididymal fluid. This approach of direct analysis of the glycoproteins in purified plasma membranes identifies a broader spectrum of maturation-related surface changes occurring within the epididymis than are noted with surface labeling procedures.

Animals

Mitochondria-cytoskeleton interactions in the sperm midpiece.

The mitochondrial sheath of mammalian spermatozoa is adherent to an underlying organized network of electron-dense material termed the submitochondrial reticulum (SMR). In this manuscript we further characterize the substructure of the SMR and the outer mitochondrial membrane and provide new information on their structural interaction. The SMR resists solubilization by detergent and once partially released from the midpiece of extracted spermatozoa, it appears in negatively stained preparations as a network of longitudinally oriented ribons of fibrillar material which are laterally interconnected. In detergent-extracted specimens the SMR remains attached to the outer mitochondrial membrane thereby suggesting a firm structural interaction. Negatively stained specimens also demonstrate that the outer mitochondrial membrane possesses a paracrystalline substructure and it is suggested that ordered arrays of membrane-associated proteins are involved in the structural interaction with the SMR. The potential roles of this cytoskeletal complex during spermiogenesis and in mature sperm are discussed.

Animals

Regulation of proacrosin conversion in isolated guinea pig sperm acrosomal apical segments.

Following sodium dodecyl sulfate-polyacrylamide gel electrophoresis, proacrosin has been identified in extracts of intact guinea spermatozoa as a major silver staining band which reacted immunologically with antibodies made against purified proacrosin from guinea pig testis. Proacrosin exhibited an approximate Mr of 50,000 and was rapidly converted to an Mr 45,000 protein following induction of the acrosome reaction with 2.0 mM CaCl2 and 1 micrograms/ml A23187. Apical segments isolated at pH 6.0 from guinea pig spermatozoa also contained a major silver staining band of Mr 50,000 which cross-reacted with antibodies to guinea pig testis proacrosin. Subcellular fractionation of spermatozoa indicated that proacrosin remained in the particulate fraction of homogenized spermatozoa and was enriched within the isolated acrosomal apical segment. When apical segments isolated at pH 6.0 were incubated at pH 7.5, proacrosin was rapidly converted to the Mr 45,000 form observed in spermatozoa undergoing the acrosome reaction. The conversion process in isolated apical segments was inhibited by leupeptin and was accelerated in the presence of calcium, magnesium, and manganese. Zinc completely inhibited the conversion of proacrosin to the Mr 45,000 protein. Neither proacrosin nor the Mr 45,000 protein were released into the supernatant fluid during the incubation of apical segments at pH 7.5. Furthermore, the proteins were resistant to solubilization by 150 mM NaCl and 1% Triton X-100 but were solubilized by treatment of apical segments with 1 M NaCl. These results provide evidence as to the identity and subcellular distribution of proacrosin in intact guinea pig sperm prior to zymogen conversion and suggest that isolated apical segments exhibit a subset of the exocytotic reactions leading to completion of the acrosome reaction.

Acrosin

Calcium-induced modification of the acrosomal matrix in digitonin-permeabilized guinea pig spermatozoa.

In this report we describe and partially characterize a preparation of digitonin-permeabilized guinea pig spermatozoa that undergo a rapid and synchronous modification of the acrosomal matrix in response to calcium. Permeabilization of cauda epididymal spermatozoa by digitonin was monitored by using adenylate cyclase activity as an indicator. Spermatozoa (5 x 10(7) cells) treated with 0.005% digitonin for 15 s exhibited maximal adenylate cyclase activity but generally retained their structural morphology, as examined by phase-contrast and transmission electron microscopy. The ratio fo cell number to detergent concentration was the critical factor for determining both the efficiency of permeabilization and the maintenance of structural integrity. When permeabilized spermatozoa were treated with 2 mM CaCl2, the cells underwent a rapid and synchronous modification of the acrosomal matrix (AM). As observed by phase-contrast microscopy, the response to CaCl2 was characterized by events that occurred in the following temporal sequence: disruption of the sperm rouleaux, the loss of refractility by the apical segment of the sperm acrosome, and detachment of the apical segment from the spermatozoa. Transmission electron microscopy indicated that the loss of refractility from the sperm apical segment was coincident with a calcium-induced dispersion of the AM. Analysis of the proteins released during this response, by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, revealed that a specific subset of sperm proteins was released from the spermatozoa, including a major = staining, 45,000 Mr protein apparently generated from a higher molecular weight precursor during the acrosome reaction.

Acrosome

Membrane domains in guinea pig sperm and their role in the membrane fusion events of the acrosome reaction.

In this study, we have examined the structure of domains of the periacrosomal plasma membrane (PM) and outer acrosomal membrane (OAM) of guinea pig sperm and defined their fate during the membrane fusion events of the acrosome reaction. Cauda epididymal sperm were arranged in rouleaux, joined by periacrosomal PM "junctional" zones; in these zones, the PMs were linked by cross bridges formed from a paracrystalline glycocalyx. Bridging elements linked the PM to the OAM on the ventral (concave) but not dorsal (convex) aspect of the apical segment. Parallel filaments were associated with the luminal face of the OAM overlying the dorsal surface of the apical segment. Sperm were induced to undergo a "synchronous" acrosome reaction after preincubation in Ca2+-free medium containing lysolecithin, by the addition of Ca2+. Fusion between the OAM and PM occurred at the boundaries but not within the PM "junctional" zones over the apical segment. In nonjunctional regions on the dorsal surface of the apical segment, sheets of unfenestrated hybrid membranes and parallel arrays of hybrid membrane tubules formed, while branching arrays of hybrid membrane tubules and vesicles were observed on the ventral surface. In the principal segment, networks of branching hybrid membrane tubules initially formed but later transformed into vesicles. Hence, the lysolecithin-mediated guinea pig sperm acrosome reaction involves a complex sequence of membrane fusions, which differs in domains of the periacrosomal PM and OAM. Stable nonfusigenic domains are present in both the PM and OAM of the apical segment; membrane-associated assemblies may maintain these domains and may also provide direction to some of the membrane fusion events of the acrosome reaction.

Acrosome

Localization of actin in human, bull, rabbit, and hamster sperm by immunoelectron microscopy.

Mammalian spermatozoa have previously been shown to contain actin, but its subcellular localization and function have not been elucidated. In this study, actin has been localized at the ultrastructural level in human, bull, rabbit, and golden hamster spermatozoa by a monoclonal antiactin antibody and a preembedding immunogold labeling technique. Specific labeling was localized 1) around the connecting piece in the neck region of sperm from all four species, although a species-specific pattern was evident; 2) on the external surface of the fibrous sheath of human sperm; 3) in the perinuclear space underlying the postacrosomal sheath of bull and rabbit sperm; and 4) between the plasma membrane and outer acrosomal membrane along the concave margin of the hamster sperm head. SDS-PAGE and Western blots immunostained with the monoclonal antibody confirmed the presence of actin in SDS extracts of Percoll-purified sperm from each species.

Actins

Characterization of the postacrosomal sheath of bovine spermatozoa.

A purified head fraction was prepared from bovine epididymal spermatozoa and was utilized to identify the solubility characteristics and major polypeptide components of the postacrosomal sheath. Sperm heads extracted in nonionic-detergent-containing or high-salt-containing solutions retained an intact postacrosomal sheath, but it was readily solubilized by high pH extraction solutions. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis revealed a major polypeptide of 58,000 daltons (58-kD) in the high pH extract solution. Antibodies to the 58-kD polypeptide specifically reacted with the postacrosomal segment by immunofluorescence and by electron microscopic immunohistochemistry were shown to bind the postacrosomal sheath. We conclude that this 58-kD polypeptide is a constituent of the postacrosomal sheath and that its distribution is restricted to the postacrosomal segment.

Acrosome

Characterization of a 23 kDa sperm-binding polypeptide of the golden hamster epididymis.

A 23 kDa polypeptide has been identified on the flagellum of sperm obtained from the cauda epididymis of the golden hamster. A monospecific antiserum to the 23 kDa hamster polypeptide was prepared and used to study its distribution on sperm, in the epididymis, and in epididymal fluid. In the cauda, the polypeptide is found on the midpiece and endpiece of the sperm tail, in detergent extracts of sperm, and in epididymal luminal fluid-enriched fractions. It is not present on sperm or in luminal fluid-enriched fractions from the caput epididymis. Immunocytochemical staining of epididymal tissue has demonstrated the 23 kDa polypeptide in the Golgi region of the principal cells of the proximal cauda and on sperm in the tubules of this segment and in tubules distal to it. Antiserum to the 23 kDa golden hamster polypeptide cross-reacts with sperm from rats and Chinese hamsters, but not with sperm from rabbits, cattle, mice, and guinea pigs. The antigen is localized to the tail of sperm obtained from the cauda of the rat and from the distal caput of the Chinese hamster. Immunoblots of detergent extracts of sperm and luminal fluid-enriched fractions from these two species reveal a 26 dKa polypeptide that is immunologically related to the golden hamster polypeptide.

Animals

Characterization of matrix domains of the hamster acrosome.

In this study we describe the purification and the structural and biochemical properties of a detergent-stable complex of the hamster sperm acrosome. This complex consists of two distinct acrosomal matrix domains and a layer of electron-dense material, termed the acrosomal lamina, derived from the luminal surface of the outer acrosomal membrane. This complex has been isolated by centrifugation of detergent-extracted sperm suspensions on Percoll density gradients. The complex contains two major polypeptides of Mr 29,000 and Mr 22,000 and minor polypeptides of Mr 64,000-62,000, 56,000 and 35,000. Gelatin-containing sodium dodecyl sulfate-polyacrylamide gels demonstrate that bands of proteinase activity are not the major polypeptide components of the complex. These data demonstrate that the matrix of the acrosome is compartmentalized into domains of differing structural properties that occupy specific locations in the intact acrosome and that matrix components are physically associated with the outer acrosomal membrane. These data indicate that a structural framework is present within the acrosome and we speculate that it may be involved in sequestering hydrolases into specific spatial domains and could affect the temporal release of activity of selected hydrolases during the acrosome reaction.

Acrosome

Plasma membrane structure of bat spermatozoa: observations on epididymal and uterine spermatozoa in Myotis lucifugus.

Plasma membrane structure of bat spermatozoa was examined utilizing electron microscopy of thin sections and freeze-fracture replicas. Notable membrane features observed in replicas from cauda epididymal spermatozoa included specialized particle aggregates at the junction between the acrosomal and postacrosomal region of the head (a membrane structure not previously described in mammalian spermatozoa) and another row of rod-like particles just anterior to the posterior ring. Both of these specializations in fractured plasma membranes correspond with regions where the membrane is closely apposed to underlying structures when viewed in thin sections. The postacrosomal sheath appears to be composed of an array of longitudinally oriented filamentous components. Characteristic ordering of intramembranous particles was also noted in replicas from the midpiece region and the annulus. Major changes in plasma membrane structure were not seen in spermatozoa stored in the female reproductive tract; however, the appearance of linear particle aggregations in the principal piece membrane was noted. No evidence was obtained to suggest that an acrosome reaction had occurred in spermatozoa stored in females.

Animals

Secretion of proteins and glycoproteins by perifused rabbit corpus epididymal tubules: effect of castration.

Protein synthesis in epididymal tissue of intact and castrated rabbits was studied after incubation of epididymal minces with [35S]-cysteine or [35S]-methionine and protein separation by two-dimensional gel electrophoresis. Regional differences in the pattern of protein synthesized were observed. Castration did not change overall protein synthesis, but it reduced these regional differences. The presence of 5 alpha-DHT in the culture medium of the proximal corpus epididymidis perfused for 24 hr did not increase overall protein synthesis in tubules from intact or castrated rabbits and did not reinitiate synthesis of the proteins that had disappeared after castration. The kinetics of glycoprotein synthesis and secretion were studied by light and electron microscopy autoradiography at 0.5, 2, 6, and 24 hr after exposure to [3H]-mannose, [3H]-fucose, and [3H]-glucosamine. Changes in the distribution of mannose- and glucosamine-labeled material indicated that the decline in grain density over the epithelium from 30 min to 24 hr coincided with an increasing reaction over the stereocilia border from 30 min to 2 hr and in the lumen from 2 to 24 hr. The distribution of fucose-labeled material indicated that the grain reaction over the epithelium declined more rapidly than with the mannose label. When the glucosamine-labeled sperm mass was released from the tubules, the labeled material was lost after the first washing, indicating that the glucosamine-labeled glycoproteins did not bind firmly to corpus spermatozoa within 24 hr. After castration, both mannose- and fucose-labeled materials migrated to the cell apex more rapidly than in the intact animal, but they were not released as readily into the lumen. The culture of epididymal tubules from castrated males with 5 alpha-DHT for 24 hr did not promote the release of either mannose- or fucose-labeled material into the lumen. However, testosterone given in vivo for 2 weeks restored secretion of mannose-labeled material into the lumen.

Animals

Outer acrosomal membrane of guinea pig spermatozoa: isolation and structural characterization.

We describe a protocol to isolate a highly enriched fraction of outer acrosomal membrane from guinea pig spermatozoa and present new data on the ultrastructure of this membrane domain. Cauda epididymal spermatozoa were suspended into a low ionic strength buffer and subjected to brief homogenization; this stripped the plasma membrane from the spermatozoa and severed the acrosomal apical segment from the spermatozoon. The crescent-shaped apical segments retained the outer acrosomal membrane and specific components of the acrosomal matrix. Enriched fractions of apical segments were isolated on discontinuous sucrose gradients and the outer acrosomal membrane purified by subsequent centrifugation onto Percoll density gradients. The isolated outer acrosomal membrane did not form vesicles, but instead rolled up into spiral sheets. Both thin section and negatively stained specimens revealed a paracrystalline arrangement of filaments associated with the luminal surface of the membrane. The isolated outer acrosomal membrane revealed a limited number of polypeptides by SDS-PAGE, and the polypeptide pattern was distinct from the plasma membrane fraction. The isolated acrosomal membranes possessed no ouabain sensitive Na+,K+-ATPase activity, whereas about 20% of the ATPase activity of the plasma membrane enriched fraction was inhibited by ouabain. The potential function of the structural differentiations of the outer acrosomal membrane in the membrane fusion events of the acrosome reaction is discussed.

Acrosome

Cytoskeletal assemblies of mammalian spermatozoa.

It is becoming increasingly evident that the different domains of the mammalian spermatozoa possess distinct cytoskeletal assemblies. In this paper we have discussed three assemblies, found in the acrosomal, postacrosomal, and midpiece segment, respectively. Each has a distinct substructure and associates with specific sperm-membrane systems. Their protein compositions are currently unidentified, and they may be comprised of sperm-specific polypeptides. Analysis of their formation and fate during sperm-egg interaction should provide valuable insight into their role in the development of cell polarity and in the membrane-mediated steps of fertilization.

Acrosome

Localization of actin in mammalian spermatozoa: a comparison of eight species.

The distribution of monomeric and polymeric actin in spermatozoa from the bull, boar, rabbit, human, rat, mouse, golden hamster, and guinea pig has been examined by using a monoclonal antiactin antibody and NBD-phallacidin. Actin was present in sperm from each species. When the monoclonal antibody was used, there was a species-specific distribution and intensity of fluorescence, but no generalized pattern. Specific fluorescence was noted in the neck and principal piece of human sperm; in the postacrosomal region, neck, and midpiece of bull and boar sperm; in the postacrosomal region, neck, and principal/equatorial segment border of rabbit sperm; in the neck region of hamster sperm; and in the neck, midpiece, and principal piece of rat, mouse, and guinea pig sperm. Sperm from all eight species displayed no specific fluorescence with NBD-phallacidin, indicating that actin was present in a nonfilamentous form. SDS extracts of sperm were analyzed by SDS-PAGE and Western blotting; in sperm from each species, a 42-kD protein with specific affinity for the monoclonal antibody was present.

Actins