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Small noncoding RNAs and sperm nuclear basic proteins reflect the environmental impact on germ cells.

BACKGROUND: Molecular techniques can complement conventional spermiogram analyses to provide new information on the fertilizing potential of spermatozoa and to identify early alterations due to environmental pollution. METHODS: Here, we present a multilevel molecular profiling by small RNA sequencing and sperm nuclear basic protein analysis of male germ cells from 33 healthy young subjects residing in low and high-polluted areas. RESULTS: Although sperm motility and sperm concentration were comparable between samples from the two sites, those from the high-pollution area had a higher concentration of immature/immune cells, a lower protamine/histone ratio, a reduced ability of sperm nuclear basic proteins to protect DNA from oxidative damage, and an altered copper/zinc ratio in sperm. Sperm levels of 32 microRNAs involved in intraflagellar transport, oxidative stress response, and spermatogenesis were different between the two areas. In parallel, a decrease of Piwi-interacting RNA levels was observed in samples from the high-polluted area. CONCLUSIONS: This comprehensive analysis provides new insights into pollution-driven epigenetic alterations in sperm not detectable by spermiogram.

Male

Mouse sperm basic nuclear protein. Electrophoretic characterization and fate after fertilization.

Mouse sperm were labeled in vivo with [3H]arginine. The sperm were then followed autoradiographically from the time of label incorporation until after fertilization. The label was completely lost from the sperm head after fertilization, during the oocyte's second meiotic division. That the [3H]arginine was incorporated into a sperm-specific basic protein was demonstrated by fractionating acid extracts of epididymal and ejaculated sperm with polyacrylamide gel electrophoresis. All the histone fractions were resolved in the epididymal extracts, but in addition a band was present that migrated faster than histone F2al and slower than the salmon protamine used as a marker. This new fraction (proposed name: musculine) was also present in ejaculated sperm; it was shown to be the only fraction that was labeled. Musculine therefore represents the end product of a histone transition in mice. It is, however, according to our electrophoretic characterization, not identical to the classical fish protamines. Rather, musculine resembles bovine sperm nuclear protein. Since the loss of this fraction from the sperm head was coincident with the rearrangement of the male genome, before its resumption of transcription, it is suggested that musculine is involved in the control of chromatin that accompanies spermiogenesis and fertilization.

Animals

Studies on the immunogenicity of protamines in humans and experimental animals by means of a micro-complement fixation test.

A complement fixation study with human, monkey and rabbit sera, using purified sperm nuclear basic proteins as antigens, led to the following conclusions. (1) Protamines, the sperm-specific basic nuclear proteins, may be immunogenic in mammalians. (2) Antibodies detected in the indirect immunofluorescence test on human swollen sperm heads in sera from infertile and vasectomized men, are directed primarily against human protamines. (3) The results obtained suggested that differences in the immunization site and/or in the configuration of the immunizing protamine, may lead to the formation of antibodies directed against different antigenic determinants. Autoimmunity to protamines, following vasectomy or in infertile men, is accompanied by the formation of antibodies cross-reacting with common antigenic determinants present in protamines of other species. Induction of immunity to protamines by means of immunization with protamines-RNA complexes (in rabbits), or protamine-insulin complexes (in humans), leads to the formation of antibodies reacting more specifically with the immunizing protamine, showing only slight cross-reaction with other protamines. (4) The histone-like fraction present in mature human spermatozoa is composed mainly of histone fraction H2B.

Animals

Arginine evaluation to verify sperm maturation in man.

A modified version of Sakaguchi's histochemical reaction is proposed for the evaluation of arginine content in spermatozoa as an index of sperm maturation. Results obtained with this procedure, compared with DNA and basic nuclear proteins determinations in the sperm cells from normal subjects and from patients with oligospermia, appear to confirm the usefulness of this technique.

Adult

Autoradiographic study of mouse spermatozoan arginine-rich nuclear protein in fertilization.

General labeling of ripe mouse spermatozoa was obtained two weeks after six injections of L-arginine-5-3H monohydrochloride, administered within two days. Besides tail labeling a very intensive nuclear labeling was obtained. It is presumed that this nuclear labeling represents almost exclusively tritiated arginine incorporation into basic nuclear protein. Mouse oocytes were fertilized in vitro with such labeled spermatozoa. It was found that the nuclear label is lost very early during male pronucleus formation, probably concomitantly with sperm chromatin decondensation. This might indicate total loss of the basic spermatozoal nuclear protein before male genome activation.

Adenine

On the diversity of sperm histones in the vertebrates. I. Changes in basic proteins during spermiogenesis in the newt Notophthalmus viridescens.

Sperm histones display great variability in contrast to the conservation of most classes of somatic histones. To study this paradox, this series of papers examines the variation of histone patterns in the testis and sperm of vertebrates, particularly amphibians and reptiles, and attempts to relate such variation to genetically based sex determination as hypothesized by Bloch [Genetics Supplement 61, 93 (1969)]. In the present study we have investigated spermiogenesis in the newt Notophthalmus viridescens viridescens. Cytochemical experiments indicate that the basic nuclear proteins undergo progressive shifts from somatic type histone leads to very arginine-rich "stable protamine" in the later spermatids leads to protamine in the mature sperm. Electrophoresis of Notophthalmus histones extracted from chromatin reveals that the pattern of testes specific basic proteins in the urodele is distinct from the pattern of testicular proteins in the anurans Bufo americanus and Xenopus laevis. Species within the class Amphibia therefore exhibit considerable diversification in their type of basic sperm proteins.

Animals

Comparative analysis of the nuclear basic proteins in rat, human, guinea pig, mouse and rabbit spermatozoa.

Cysteine-rich protamines (Arg = 47-61%, Cys = 8-16%) were isolated from the sperm of an individual guinea pig, human and rabbit and from pooled samples of mouse and rat sperm. Appreciable concentrations of histones were not found in the sperm nuclei of these species. In addition to the protamines, a substance of relatively low molecular weight, which reacted with the Lowry reagent, appeared in crude acid-soluble extracts of sperm nucleoprotein. This unidentified contaminent was resolved from the protamines by chromatography on Bio-Rex 70. Heterogeneity of human and mouse protamines was revealed by electrophoresis at pH 2.7, in the presence of 2.5 M urea, and confirmed by amino acid analysis, which also suggested the presence of 2 or more species of protamine in the rabbit. By contrast, the guinea pig and rat preparations displayed nearly stoichiometric ratios of amino acid residues, approaching homogeneity by this criterion. The functional consequences of crosslinks between cysteine residues of these proteins and the possible species-specific significance of their differing percentages of histidine are discussed. Potentially analogous functions are suggested for phosphorylated serine and threonine, and for ionized cysteine and tyrosine, within the protamines of developing spermatids. Their amino acid compositions indicate that the protamines of eutherian mammals are coded by a C.G-rich genome which has been unusually susceptible to genetic drift. An especially high rate of G leads to A transitions seems to have occurred in the human protamine genes.

Amino Acids

[Ultrastructural and chemical study of the chromatin during spermiogenesis of the fish Scyliorhinus caniculus (L.) (author's transl)].

Electron microscopic, cytochemical and biochemical techniques were applied to study structural aspects and changes in nuclear components during the spermiogenesis of Scyliorhinus caniculus. Five major stages of nuclear differentiation were recognized and characterized by variations in the organization and chemical properties of chromatin. Stage I is analogous to a somatic nucleus with heterogeneous chromatin. At the second stage, the nuclear content is dispersed but the chromatin fibers are of the same diameter as those of the stage I. The nuclear elongation begins at stage III, the DNP fibers running preferentially parallel to the long axis of the nucleus. During these early modifications of chromatin structure appear two new basic nuclear proteins (S 1 and S 2) which migrate faster than histones but typical histones remain assosciated with these nuclei. In later elongation stage (stage IV), the chromatin fibers organize in a helical form and fuse side by side giving lamellar systems which have a reticular structure. At the end of this stage, the nuclear material has become uniformly compact. These late variations in chromatin organization are parallel to the association of chromatin with new basic nuclear proteins (S 3, S 4, Z 1, Z 2 and Z 3). The cytochemical and electrophoretical properties of one of these proteins (S 4) which appears at the end of spermiogenesis are similar to those of a protamine. In stage V, the chromatin is homogeneous and the nucleus assumes a helical configuration beginning at the posterior end. The deoxyribonucleoproteins of the mature sperm show some novel chemical characters, including the appearance of a stable nuclear acidophilia with the ALFERT and GESCHWIND method and extraction with 0.25 N HCl of one of the basic protein fractions newly appeared in late spermiogenesis (Z 3), two other fractions (Z 1 and Z 2) being extracted with a more drastic procedure. The other fractions described before are no more detectable.

Animals

On the cytochemical demonstration of basic proteins in the cell nucleus, including the nucleolus.

A combined Feulgen-alkaline fast green method is described for simultaneous demonstration of DNA and basic proteins in the cell nucleus. The method is based on preserving both types of substances in the tissue section and releasing in them reactive groups for the 2 kinds of staining. These conditions are best provided, as proved by staining tests on tissue hydrolysates, if formalin-containing mixtures (SERRA's or LILLIE's fluids) are employed for fixation, and cold 5 N HCl is used for FEULGEN hydrolysis. In this way, a good cytological picture is also achieved. Nuclear euchromatin stains with this method red, while heterochromatin, pycnotic nuclei and sperm heads exhibit a deep violet to blue-violet colour. Prominent nucleoli of metabolically active cells display a distinct blue-green staining thus manifesting their high content of basic proteins. Acetylation test reveals that these proteins are of lysine-rich type. The known negative reaction of the nucleoli with the routine alkaline fast green method according to ALFERT and GESCHWIND must be attributed to an extraction of the nucleolar basic proteins with the hot TCA used in this method. Certain analogy in the cytochemical behaviour between the nucleolous and the chromatin under various conditions of hydrolysis leads to the suggestion that the nucleolar basic proteins demonstrated should be in the form of a ribonucleoprotein complex, probably of the pre-ribosomal material of the nucleolus.

Animals

Interaction of basic oligo-L-amino acids with deoxyribonucleic acids. Oligo-L-arginines of various chain lengths and herring sperm DNA.

The interaction of DNA and oligo-L-arginines having definite chain lengths of 1-17 residues was studied by precipitate formation and thermal denaturation of the complexes in order to obtain a better understanding of the roles of nuclear basic proteins. The results can be summarized as follows. 1. Those oligo-L-arginines, (Arg)n, in which n greater than or larger than 4 can bind with DNA irreversibly to form precipitates of the complexes. Among them, oligomers larger than (Arg)5 precipitate DNA completely in Arg/P input ratios below 1. The Arg/P ratios in the precipitates are between 0.6-0.8. 2. The thermal stability of the complexes depends on the method of complex formation, and complexes formed by the dialysis method are more stable than those formed by the mixing method. 3. The binding of (Arg)n to DNA was found to be reversible and in a equilibrium for n less than or equal to 6. In general, the longer the oligomer, the higher the stability of the complex at a definite Arg/P ratio. 4. For (Arg)7-10, three kinds of complexes with different stabilities are formed between DNA and oligopeptides. 5. For (Arg)14-17, only a restricted type of complexes can be formed between DNA and oligomers, as in the case with poly-L-arginine or protamines. 6. The interaction between basic nuclear proteins and DNA is discussed in the light of the basic region in protamine and histone molecules.

Animals

Changes in nuclear proteins of rat testis cells separated by velocity sedimentation.

The technique of velocity sedimentation at unit gravity has been used to separate rat testis cell suspensions into fractions enriched in particular cell types. Changes in the nuclear proteins from the various fractions have been characterized by polyacrylamide gel electrophoresis, and correlated with the changing morphology of the nucleus during spermatogenesis. The most striking alterations in both protein composition and nuclear morphology occur during spermatid maturation as both histone and non-histone proteins are replaced by highly basic, low molecular weight, spermatidal proteins. This replacement process is accompanied by a quantitative reduction in both histone and non-histone proteins. The synthesis of at least three basic proteins has been identified with late stage spermatids. One of these proteins is a highly basic sperm-specific protein containing high levels of cyst(e)ine and arginine. A second protein synthesized in late stage spermatids is lysine rich, while the third protein contains cyst(e)ine and co-migrates with histone F2a1 on acid-urea polyacrylamide gels. The changes in protein composition of rat testis nuclei after irradiation or hypophysectomy reflect the resulting changes in the cellular composition of the testis. After selective elimination of the germinal cells by irradiation, the electrophoretic pattern of acid-soluble proteins from the testis is very similar to that of somatic tissue. Thus, the cellular specificity of nuclear proteins demonstrated here using cell separation techniques is also apparent following treatments which selectively alter the cellular composition of the testis.

Amino Acids

Isolation, chemical and immunological characterization of two strongly basic nuclear proteins from human spermatozoa.

Human spermatozoa were solubilized by treatment with urea/guanidine and fractionated by ion-exchange chromatography with Bio-Rex 70 resin. Four fractions were obtained. The acidic proteins pass unretarded, whereas the moderately basic and two strongly basic protein fractions are eluted by means of guanidine gradients. The main protein components of the strongly basic protein fractions have been isolated by gel filtration on Sephadex G-50. The purified proteins have been named human sperm protamine 1 and 2. They contain 47 and 51 aminoacid residues (mol. wt 6280 and 6840), of which 22 and 24 are arginine and 5 and 4 are half cystine residues, respectively. The electrophoretic mobility in urea/polyacrylamide gels is between that of calf thymus histone and salmon protamine. Human protamine 1 and 2 are both auto-antigens as has been detected by a quantitative immunofluorescence inhibition test.

Amino Acids