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M K Holland

Publications and source records attributed to M K Holland.

At least 19 recordsLinked to original sources

Isolation, immunolocalization, and sperm-association of three proteins of 18, 25, and 29 kilodaltons secreted by the mouse epididymis.

Three murine epididymal secretory proteins have been characterized by their site of synthesis, sperm association, and tissue localization by use of polyclonal antisera and immunochemistry. Mouse epididymal protein 7 (MEP 7) was localized initially within the supranuclear regions of some principal epithelial cells in the proximal corpus while other cells remained unstained. In the mid-proximal corpus, all principal cells and stereocilia were stained, and luminal staining increased from corpus to cauda. Some clear cells in the distal corpus and cauda also showed immunoperoxidase staining. Sequential extraction of caudal spermatozoa indicated that MEP 7 was predominantly loosely associated with spermatozoa and that only a small amount of MEP 7 required detergent to extract it from spermatozoa. Examination of other rodent caudal fluids revealed a related protein in rat caudal fluid of 32 kDa, and amino acid sequence analysis of MEP 7 showed a 68% sequence similarity with rat proteins AEG and D/E. MEP 9 immunolocalized within the cytoplasm of all principal cells of the distal caput. In a transition zone between the distal caput and the corpus, some principal cells were stained while others were not. Distal to the corpus, the principal cell staining gradually decreased. In the distal caput and proximal corpus, large heavily stained droplets associated with spermatozoa were seen in the lumen. The staining intensity of these droplets also decreased from corpus to cauda. The clear cells of the distal corpus and cauda did not stain with the antibody to MEP 9. Sequential extraction of caudal spermatozoa showed that some MEP 9 was extractable under low-salt conditions, whereas extraction with 0.1% Triton X-100 was required to remove all MEP 9, indicating it was firmly associated with spermatozoa. The antibody to MEP 9 cross-reacted with a 25-kDa protein present in rat caudal fluid. MEP 10 was localized within the cytoplasm of the principal cells, the stereocilia, and the lumen of the epididymis at the junction of the distal caput and corpus. In the distal corpus, a large number of clear cells were stained, but very few of these cells stained in the cauda. MEP 10 dissociated completely from caudal spermatozoa under low-salt conditions, indicating that it was not firmly bound to spermatozoa. The antiserum to MEP 10 cross-reacted with proteins present in rat and guinea pig caudal fluid. The related rat protein migrated at approximately 20 kDa. Amino acid sequence analysis of MEP 10 revealed an 86% sequence similarity with rat proteins B and C.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence

Binding of epididymal proteins to rat spermatozoa in vivo.

The secretion of epididymal proteins and their binding to spermatozoa in rats were examined after retrograde perfusion of the superior and inferior epididymal arteries with [35S]methionine. PAGE revealed that the pattern of radioactive proteins in the luminal fluid was markedly different from the well-characterized pattern of secretory proteins obtained by in vitro incubation of epididymal minces with labeled methionine. Of the proteins secreted into the lumen, about 1% were associated with Percoll-purified spermatozoa. More proteins were associated with the spermatozoa in the corpus epididymidis than in the caput. Sequential extraction of spermatozoa with an isotonic buffer, a high-salt buffer, Triton X-100, and SDS revealed that almost half of the radiolabeled proteins could be extracted with the isotonic buffer. The firmly bound radioactive proteins remaining, which were extracted with Triton X-100 or SDS, consisted of one major band of 25 kDa and two minor bands of 30 kDa and 32 kDa. Analysis of the sperm-associated proteins at various times after the isotope was administered indicated that tight binding of proteins to spermatozoa occurs within 3 h after isotope injection.

Animals

Secretion and transport of mouse epididymal proteins after injection of 35S-methionine.

The presence of epididymal secretory proteins in crude luminal fluids of the epididymis of mice was investigated at varying times after i.v. injection of 35S-methionine or after incubation of epididymal minces with 35S-methionine. The amount of label incorporated into luminal proteins after in vivo injection was not significantly different at 4, 8, 12, and 16 h. The quantity of labeled proteins in the crude luminal fluids of Regions 1-3 (caput) was about two and four times higher than in Regions 4 (corpus) and 5 (cauda), respectively. Increasing the dosage of 35S-methionine strongly increased the amount of labeled protein present. Approximately half of the labeled protein present in the epididymis was found in the luminal fluid. Polyacrylamide gel electrophoresis revealed comparable patterns of proteins at 8 h after injection of isotope or after a 5-h in vitro incubation of minced epididymal tissues with isotope. The protein patterns from the five regions, however, were markedly different from each other and highly characteristic. Two proteins (25 kDa and 18 kDa) were found in crude luminal fluids of Regions 2 and 3 eight hours after in vivo injection, but not in Regions 4 and 5. One protein (29 kDa) was found in high amounts in Regions 4 and 5 eight hours after injection. Five days after injection, the three proteins were found in Regions 4 and 5. However, the 25-kDa protein was present in reduced amount, whereas the 18- and 29-kDa proteins accumulated in caudal fluid.(ABSTRACT TRUNCATED AT 250 WORDS)

Androgens

Interactions of labeled epididymal secretory proteins with spermatozoa after injection of 35S-methionine in the mouse.

The sequential interactions of epididymal secretory proteins with spermatozoa during epididymal transit were examined. Mice received injections of 35S-methionine, and the radiolabeled luminal fluid and sperm-associated proteins were analyzed by sodium dodecylsulfate-polyacrylamide gel electrophoresis at various times after injection. The majority of the luminal fluid and sperm-associated proteins were found in the caput epididymidis at 8 h; by 7 days, many of these proteins had been transported to the cauda epididymidis. Two classes of epididymal protein-sperm interactions were distinguished on the basis of regional synthesis and secretion. The major class consisted of proteins that were synthesized, secreted, and bound to spermatozoa in the caput epididymidis. In this class, however, the binding of proteins to the spermatozoa was variable. For example, a protein of 25 kDa remained associated with spermatozoa in substantial amounts during epididymal transit, while proteins of 40 and 35 kDa decreased in amount. Other proteins such as a protein of 18 kDa did not remain associated with spermatozoa. Another class of proteins (54, 44, 29 kDa) were synthesized and secreted from all epididymal regions but bound only to caput spermatozoa. Most of the epididymal proteins appeared to be tightly bound to the spermatozoa since spermatozoa already saturated with the unlabeled protein in the distal epididymis remained so even though the spermatozoa were surrounded by labeled proteins in the luminal fluid. These studies demonstrate that a variety of specific interactions occur between epididymal secretory proteins and spermatozoa as they migrate and mature in the epididymis.

Animals

Lectin binding characteristics of mouse epididymal fluid and sperm extracts.

Glycoproteins from luminal fluid of the mouse cauda epididymidis have been compared with glycoproteins from Triton X-100 extracts of mouse spermatozoa from varying regions of the epididymis, using lectins with specific affinity for different sugar residues. Concanavalin A recognizes 11 glycocomponents on Western blots of fractionated caudal fluid; wheat germ agglutinin (WGA) binds 12 proteins; Ulex europaeus agglutinin (UEA) binds seven; and Dolichos biflorus agglutinin (DBA) recognizes nine. Several of these glycoproteins display an affinity for more than one lectin, indicating a diversity in their exposed carbohydrate residues; whereas other proteins bind only one of the four lectins used. The results also show that some glycoproteins exhibit a higher affinity for particular lectins. Eight glycoproteins of similar mobility and lectin-binding characteristics are detected in Triton X-100 extracts of spermatozoa from different regions of the epididymis and in caudal fluid. The lectin affinity of some proteins appears or increases in spermatozoa from distal epididymal regions (54 kD, 32 kD), whereas the lectin affinity of others decreases (29 kD, 40 kD). There are differences in lectin affinities between proteins in sperm extracts and in caudal fluid. Some proteins show an affinity for three or four lectins in caudal fluid, but proteins of similar electrophoretic mobility in sperm extracts bind only one or two of the lectins. These data show that glycoproteins of similar mobility are present in caudal fluid and in Triton-X-100 sperm extracts, implying a potential interaction between caudal fluid components and epididymal sperm.

Animals

Heavy metals and human spermatozoa. III. The toxicity of copper ions for spermatozoa.

The dissolution of copper ions from copper metal into a saline medium in vitro was quantified using a colourimetric assay. The presence of spermatozoa enhanced this dissolution and increasing the protein content of the medium further increased the rate of dissolution. Approximately 17% of the copper released was either tightly bound to the spermatozoa or was within the cell and could not be removed by repeated washing. Once spermatozoa were immobilized, they could not be revived by washing and repeated changes of medium, by addition of copper specific-chelating agent or by extensive dialysis. When the toxicity to spermatozoa of cuprous and cupric ions was compared with copper metal, it could be shown that the quantity of cupric ions required (0.2-0.4 mg/ml) was in excess of the total quantity of copper released into solution. The quantity of cuprous ion required (0.08-0.16 mg/ml) to exert similar toxic effects to copper, was within the range of copper released from the metal. Under the conditions of this study, it is possible that cuprous ion would be oxidised to the cupric form generating free radicals in the process. It is not known whether the toxic effect is due to the cuprous ion, per se, or to radicals generated in its oxidation. Increasing the protein content of the medium to levels similar to low (8 mg/ml) and high (64 mg/ml) values reported in human uterine fluid increased the dissolution rate of copper but also offered some protection against the toxic effects of copper metal and cuprous and cupric ions.

Copper

Characterization and hormonal regulation of protein synthesis by the murine epididymis.

Protein synthesis and secretion were examined in vitro by incubating minced tissue with [35S]methionine. The incorporation of label into tissue plus medium was linear for the 5 h of incubation. The percentage of available label incorporated into protein increased with the weight of tissue used. Approximately 13% of the label incorporated appeared in the medium after 5 h of incubation. Release of radioactive protein into the medium was characterized by an initial slow release (1-2 h) followed by a more rapid linear release between 3 and 5 h. Polyacrylamide gel electrophoresis revealed that the pattern of radioactive proteins present in the medium was different from and less complex than the tissue proteins. Substantial differences in protein patterns from different epididymal regions could be detected. The caput epididymidis was particularly active in secreting proteins characteristic of this region, whereas the corpus and cauda synthesized and secreted similar proteins. At least one of these proteins characteristic of the caput is stabilized by disulphide bonds. Short-term (9 day) castration resulted in reduced synthesis and secretion of several of these epididymal proteins. Testosterone administered after 9 days of castration reinitiated synthesis of some but not all of these epididymal proteins.

Androgens

Epididymal protein synthesis and secretion in strains of mice bearing single gene mutations which affect fertility.

Mice bearing gene mutations that, among other effects, render the males infertile were examined. Serum testosterone was within the normal range (0.8-1.8 ng/ml), and sperm numbers in the testis and epididymis were not different between mutant animals and coisogenic wild types. All mutants, except mocha and achondroplasia, displayed normal mating behavior. However, in all genotypes, fewer fertilized eggs were recovered from females mated by mutants. In vitro fertilization tests showed that all mutants--except bouncy--fertilized similar numbers of eggs to wild types. Spermatozoa from bouncy mutants also bound to eggs in lower numbers. These findings indicate that spermatozoa from the bouncy mutant have a severe defect in sperm-zona interaction. When bouncy spermatozoa were tested for sperm-vitelline membrane interaction at a low (10:1) sperm to egg ratio, they penetrated fewer zona-free hamster eggs. Epididymal protein synthesis and secretion were comparable between wild-type animals from all genotypes. However, while the regional pattern of protein synthesis was comparable among all mutants, the absolute rate of protein synthesis (cpm per mg tissue) was lower in some cases. Nevertheless, the proportion of the proteins synthesized that appeared in the medium remained constant. When the regional profile of proteins secreted by mutants was compared to that of their coisogenic wild types, three types of differences were noted: (1) changes in the abundance of a protein, (2) changes in the region of the epididymis from which a protein was secreted, or (3) the absence of a protein.

Animals

Effects of photoperiod on androgen-binding protein and sperm fertilizing ability in the hamster.

Androgen binding protein (ABP) was detected in both the testis and epididymis of golden hamsters exposed to a long photoperiod (16L:8D). The concentration of ABP in the testis rose from 0.1 pmol/g testis in 2-week-old animals to attain maximum values (3.9 pmol/g testis) at 6-7 weeks, then declined to adult values (1.8 +/- 0.4 pmol/g testis) after 10-11 weeks of age. In contrast, the ABP concentration of the caput epididymidis reached maximum values at 4-7 weeks of age (14 pmol/g tissue) and declined to adult values (4.8 +/- 1.5 pmol/g tissue) by 10-11 weeks of age. ABP content of the corpus epididymidis was maximal (1.0 pmol/g tissue) at 2 weeks of age and thereafter declined to below detectable levels by 10-11 weeks. No ABP could be detected in the cauda epididymidis from animals of any age examined. Hamster ABP analysed by steady-state polyacrylamide gel electrophoresis had a relative mobility (Rf) of 0.33 compared to 0.41 for rabbit ABP. Sucrose gradient analysis of hamster ABP indicated a sedimentation coefficient of about 4 S. The binding of [3H]5 alpha-dihydrotestosterone [( 3H]5 alpha-DHT) to hamster ABP was very rapid with equilibrium occurring within 10 min. The dissociation of [3H]5 alpha-DHT from hamster ABP was also rapid (t1/2 = 2.77 min). Saturation analysis of ABP from mature animals yielded an apparent dissociation constant of 6.4 nM and an ABP concentration of 1.2 +/- 0.2 pmol/mg protein. The binding of [3H]5 alpha-DHT to hamster ABP was inhibited by 5 alpha-DHT greater than testosterone greater than greater than greater than oestradiol greater than cyproterone acetate. Exposure of mature hamsters to a short photoperiod (8L:16D) for 3 weeks resulted in a 42% drop in epididymal ABP levels (10.3 to 4.3 pmol/g tissue). Epididymal ABP further declined so that after 15 weeks in a short photoperiod it was 4% (0.4 pmol/g) of initial values. Accompanying this decrease in epididymal ABP concentrations was a decline in the fertilizing ability of spermatozoa from the distal cauda. When hamsters were transferred from a short to a long photoperiod (16L:8D), epididymal ABP content returned to about 50% of control values within 3 weeks. However, the fertilizing ability of spermatozoa from the cauda epididymidis of these animals did not return to control values after a 9-week exposure to a stimulatory photoperiod.

Androgen-Binding Protein

Activity of the hypothalamo-pituitary axis and testicular development in prepubertal ram lambs with induced hypothyroidism or hyperthyroidism.

Prepubertal (16 weeks old) ram lambs were used to investigate the effects of hyperthyroidism and hypothyroidism on development of reproductive endocrine function. Over a period of 8 weeks, ram lambs were made hypothyroid (serum T4 less than or equal to 3 ng/ml compared with controls congruent to 30 ng/ml) by daily oral administration of methyl thiouracil or hyperthyroid (serum T4 congruent to 135 ng/ml) by daily sc injection of T4. Hyperthyroidism was associated with decreases in LH pulse frequency (2.25 +/- 0.75/12 h compared with controls 5.75 +/- 0.48/12 h), basal LH, and mean LH concentrations, together with arrested testicular growth and aspermatogenesis. Hypothyroid rams showed normal pubertal development. After iv injection of LHRH, hyperthyroid ram lambs showed similar LH responses to control and hypothyroid rams. Basal testosterone production (5.6 +/- 1.0 ng/min) and plasma testosterone concentrations after human CG (2.0 +/- 0.7 ng/ml) in hyperthyroid rams were significantly lower than in controls (67.5 +/- 24.0 ng/min and 5.2 +/- 1.0 ng/ml, respectively). It is concluded that retarded testicular development in hyperthyroid ram lambs results from changes in hypothalamo-pituitary activity manifested in a decreased LH pulse frequency.

Animals

Spermatogenesis, seminal characteristics and reproductive hormone levels in mature rams with induced hypothyroidism and hyperthyroidism.

Mature Merino rams were made hypothyroid by daily oral drenching with methylthiouracil or hyperthyroid by daily subcutaneous injections of thyroxine for 8 weeks. Neither hypothyroidism nor hyperthyroidism had any apparent effect on either spermatogenesis or daily sperm production, but motility of ejaculated spermatozoa and circulating testosterone concentrations were reduced in both conditions. The ratio of testosterone concentrations in plasma from the internal spermatic vein to those in peripheral blood plasma was higher in hyperthyroid (21.2 +/- 3.5) than in control (11.1 +/- 4.4) and hypothyroid (7.6 +/- 1.4) rams. The basal secretion rate for testosterone was slightly lower in hypothyroid rams and testosterone responses to human chorionic gonadotrophin and after LH-releasing hormone (LHRH) were very much reduced. Basal serum LH levels were low in both hypothyroid and hyperthyroid rams compared with controls whereas there were no differences in FSH levels. The LH response to exogenous LHRH was reduced in hypothyroid rams but not in hyperthyroid rams. Serum prolactin levels on the other hand were higher than control in both hypothyroid and hyperthyroid rams. Reduced testosterone secretion in hypothyroid rams indicates that the normal function of Leydig cells depends on an adequate level of thyroid hormones. The decrease in circulating testosterone concentrations in hyperthyroid rams with normal secretion rates suggests an increased testosterone clearance rate in these animals. The decreased spermatozoal motility in hypo- and hyperthyroid rams suggests that the lowered testosterone level in these animals has altered the androgen-dependent maturation of spermatozoa in the epididymis.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Production of superoxide and activity of superoxide dismutase in rabbit epididymal spermatozoa.

Mature rabbit spermatozoa from the cauda epididymidis suspended in potassium Tris phosphate buffer at 24 degrees C produced O2.-, as measured by reduction of acetylated ferricytochrome c, with an intrinsic rate of 0.20 nmol/min per 10(8) cells. This rate increased to 1.80 nmol/min per 10(8) cells in the presence of 10 mM cyanide. These spermatozoa contain 2.8 units per 10(8) cells of superoxide dismutase activity, 95% of which is sensitive, and 5% of which is insensitive, to cyanide inhibition. These activities correspond to the cytosolic Cu-Zn form and the mitochondrial Mn form of the dismutase, respectively. Only the cyanide-sensitive form is released from the sperm on hypo-osmotic treatment or sonication. Hypo-osmotically treated rabbit epididymal spermatozoa produced O2.- with an intrinsic rate of 0.24 nmol/min per 10(8) cells, which increased to 0.58 nmol/min per 10(8) cells in the presence of 10 mM cyanide. Both intact and hypo-osmotically treated cells react with O2.- in a second order reaction as inferred from the hyperbolic dependence on cell concentration of O2.- production rate in both the absence and presence of cyanide. The second order rate constant for this reaction with intact cells, kS, was calculated to be 22.9 X 10(-8) (cells/ml)-1 min-1 in its absence. For hypo-osmotically treated cells, the values of kS were 10.8 X 10(-8) (cells/ml)-1 min-1 and 8.2 X 10(-8) (cells/ml) -1 min-1, respectively. Since hypo-osmotically treated cells have lost much of their plasma membrane, the lower value of kS for the treated cells implies that this membrane is one site of reaction of O2.- with the cells. The increase in kS in the presence of cyanide, which inhibits superoxide dismutase and so increases O2.- production, suggests that the cells become more reactive with O2.- as its production rate increase, as would be expected for the occurrence of radical chain oxidation. This in turn suggests that superoxide dismutase plays a major role in protecting rabbit sperm against damage from lipid peroxidation.

Animals

Heavy metals and human spermatozoa: II. The effect of seminal plasma on the toxicity of copper metal for spermatozoa.

The ability of copper metal to immobilize human spermatozoa was assessed in vitro. Copper (200 mm2) significantly decreased the percentage of progressively motile spermatozoa over a 3-hour incubation at 37 degrees C. The toxicity of the copper was potentiated by washing the spermatozoa free of seminal plasma. Once they had been immobilized, spermatozoa did not regain motility even after extensive washing, prolonged dialysis, or treatment with copper-specific chelating agents. Apparently copper induces a change in the properties of the spermatozoa which results in irreversible immobilization. The relevance of these observations to the action of intrauterine devices (IUD) bearing copper is discussed.

Copper

Evaluation of ten potential organic spermicides.

The following compounds, selected as possible vaginal or cervical spermicides, were tested in vitro for their ability to decrease the motility of human spermatozoa: cytochalasins A and B, N-cetylpyridinium chloride (CPC), N-cetyl-N,N,N-trimethylammonium bromide (CTAB), sodium deoxycholate (SDC), quinine and emetine hydrochlorides, 4-nitrophenyl-4-guanidinobenzoate hydrochloride, n-hexanal, and 6-amidino-2-(4-amidinophenyl) dilactate. The most effective spermicide was the antibacterial cytochalasin A which instantaneously abolished motility at a concentration of 0.01%. The two cationic detergents CPC and CTAB were also very potent and instantly immobilised spermatozoa at a concentration of 0.1%. Quinine, emetine and 4-nitrophenyl-4-guanidinobenzoate hydrochlorides at a concentration of 0.1% abolished motility in 30-60 minutes. n-Hexanal, SDC, and the antihaemostatic compound 6-amidino-2-(4-amidinophenyl) dilactate at 0.1% depressed motility but never rendered the sperm completely immotile. Cytochalasin B had little or no effect on sperm motility even at 0.1%.

Cetrimonium Compounds

The concentrations of free L-carnitine and L-O-acetylcarnitine in spermatozoa and seminal plasma of normal, fresh, and frozen human semen.

Free-L-carnitine and L-O-acetylcarnitine concentrations have been determined in spermatozoa and seminal plasma of normal, fresh, and frozen human semen. Results show that in fresh semen most of the free L-carnitine (0.213 +/- 0.02 mM) and L-O-acetylcarnitine (0.063 +/- 0.007 mM) is found in the seminal plasma. In contrast to other worker's results, the concentrations of free L-carnitine and L-O-acetylcarnitine in spermatozoa were found to be high and were 0.384 +/- 0.066 mumole/10(9) spermatozoa (22 mM) and 0.376 +/- 0.057 mumole/10(9) spermatozoa (21.6 mM), respectively. It is also demonstrated that the distribution of soluble metabolites such as L-carnitine between spermatozoa and seminal plasma is altered by the freezing of semen. After freezing and storage of semen at -20 degrees C for 7 days, the intracellular concentrations of free L-carnitine and L-O-acetylcarnitine decreased to below the limits of assay.

Acetylcarnitine