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P Chevaillier

Publications and source records attributed to P Chevaillier.

At least 37 records · Page 2Linked to original sources

Nuclear basic protein transition during sperm differentiation. Primary structure of the spermatid-specific protein S2 from the dog-fish Scylliorhinus caniculus.

The remodeling of nucleoproteins during dog-fish spermiogenesis involves two successive nuclear protein transitions: the first from somatic-type histones to transition proteins during the nuclear elongation of spermatids and the second leading to protamine-DNA association in mature spermatozoa. The chromatin of elongating spermatids contains two transition proteins called S1 and S2. The amino acid sequence of protein S1, a polypeptide of 87 residues was determined previously [Chauvière, M., Martinage, A., Briand, G., Sautière, P. & Chevaillier, Ph. (1987) Eur. J. Biochem. 169, 105-111]. In the present paper, we report the elucidation of the primary structure of the minor transition protein S2 established by automated Edman degradation of the protein and of its fragments generated by cleavage at methionine and aspartate residues. S2 contains 80 residues and has a molecular mass of 9726 Da. S2 is mainly characterized by a high content of basic amino acids mostly represented by lysine, a relatively high level of hydrophobic residues, the presence of six phosphorylatable residues and the lack of cysteine. Its amino acid sequence shows that the N-terminal half is highly basic, while the acidic residues are located in the C-terminal part of the protein where more diversity in amino acids is noticed. The two transition proteins S1 and S2 share striking structural similarities. Few but significative similarities have been detected with the mammalian transition protein TP1 [Kistler, W. S., Noyes, C., Hsu, R. & Heinrikson, R. L. (1975) J. Biol. Chem. 250, 1847-1853], suggesting similar functions for all these proteins in chromatin remodeling during sperm differentiation. By contrast, the two dog-fish spermatid-specific proteins are structurally unrelated to sperm protamines and cannot be considered as their precursors.

Amino Acid Sequence↗

Comparison of the amino acid sequences of human protamines HP2 and HP3 and of intermediate basic nuclear proteins HPS1 and HPS2. Structural evidence that HPS1 and HPS2 are pro-protamines.

Two intermediate nuclear basic proteins HPS1 and HPS2 were isolated from human sperm. They were characterized by their electrophoretic mobility in acid-urea gels, their amino acid composition, and their peptide maps after digestion by endoproteinase Lys-C and by endoproteinase Glu-C. Their amino-terminal amino acid sequences have also been determined. The structural data thus obtained suggest that HPS1 and HPS2 are precursors of human protamines HP2 and HP3.

Amino Acid Sequence↗

An antiserum against protamines for immunohistochemical studies of histone to protamine transition during human spermiogenesis.

Specific polyclonal antisera have been obtained against total human protamines isolated from purified sperm nuclei. The specificity of antibodies was assessed in immunodotting and immunoblotting assays. In this preliminary report, these specific antibodies were used as probes for in-situ determination of histone to protamine transition during human spermiogenesis. Protamine-containing sites were detected on sections of human testes by light microscopy using the immunoperoxidase technique. As in other mammals, protamines appear and concentrate in condensed nuclei of elongating spermatids, i.e. during the later steps of human spermiogenesis.

Histones↗

Nuclear basic protein transition during sperm differentiation. Amino acid sequence of a spermatid-specific protein from the dog-fish Scylliorhinus caniculus.

During dog-fish spermatogenesis, chromatin undergoes a continuous processing which involves two basic protein transitions: the first from somatic-type histones to spermatid-specific proteins and the second leading to protamines. Two spermatid-specific proteins S1 and S2 were isolated from nuclei of spermatid-enriched testis zone and the amino acid sequence of S1 has been determined. S1 contains 87 amino acids and has a molecular mass of 11179 Da. It is mainly characterized by a high content of basic residues (45%) and the presence of one residue of cysteine. Its primary structure shows that the N-terminal half is highly basic while the hydrophobic residues are preferentially localized in the C-terminal region. Three forms of S1 are present in testis which correspond to di-, mono- and nonphosphorylated molecules. This spermatid-specific protein shares no common structural feature with either histones and dog-fish protamines or rat spermatid-specific protein which has been previously described.

Alkaline Phosphatase↗

Purification and characterization of nuclear basic proteins of human sperm.

Highly purified nuclei were obtained from human sperm without protein loss through the use of CHAPS (3-[(3-cholamidopropyl)dimethylammonio]-1-propanesulfonate), a newly available detergent. The basic protein complement of these nuclei is highly heterogeneous and comprises histones (some of which are testis-specific), protamines and proteins of intermediate basicity and molecular size. The protamines belong to two different classes of protein. Microheterogeneity observed in some of these protamines originates from slight variations in their amino acid composition as well as from post-synthetic modifications. Two of these protamines previously considered as two different proteins are in fact the same protein with different degrees of phosphorylation. All these protamines and intermediate basic proteins are characterized by high amounts of arginine and cysteine. Three of the protamines and all five intermediate basic proteins are also histidine-rich.

Amino Acid Sequence↗

Extraction, purification and characterization of the sperm protamines of the dog-fish Scylliorhinus caniculus.

Dog-fish sperm nuclei contain four low molecular weight basic proteins called scylliorhinines. Protein Z3 is a typical arginine-rich protamine, whilst the three other components, Z1, Z2 and S4, are characterized by high arginine and cysteine contents. In contrast to protamine Z3, which can be directly solubilized by 0.25 M HCl, the three other protamines must be reduced and alkylated before acid extraction. They were further purified by ion-exchange chromatography on carboxymethyl-cellulose. The amino acid compositions and the N-terminal sequences reveal significant differences between scylliorhinines, particularly in their molecular size and amino acid diversity. Moreover, they show no common feature with other sperm-specific protamines previously described.

Amino Acids↗

Purification and characterization of two basic spermatid-specific proteins isolated from the dog-fish Scylliorhinus caniculus.

In dog-fish spermatid nuclei two intermediate proteins S1 and S2 replace histones before the setting down of protamines. These spermatid-specific proteins were isolated by carboxymethyl-cellulose chromatography and purified by high pressure liquid chromatography. S1 and S2 are characterized by a high content of basic residues and by the lack of cysteine and phenylalanine. The determination of their amino acid composition and of their N- and C-terminal sequences prove that each protein corresponds to a specific molecule which can be considered neither as a histone hydrolytic product nor as a protamines precursor.

Amino Acid Sequence↗

DNA-polymerases in neuron and glial cells of developing and aging mouse brain.

DNA-polymerases alpha and beta were studied in neuron and glial cells of mouse during developing and aging brain. Maximum activity of alpha-enzyme was found to be prenatal, though a very low but significant level could be detected in aging brain. Furthermore, this pattern was found to be dependent upon cell types that shift in peak activity just before birth in glial cells in contrast to neurons. DNA-polymerase-beta remained high throughout the period studied though a second peak of activity was also observed at day 30 in both cell types, suggesting a possible role in DNA-replication in addition to DNA-repair. It was found that beta-enzyme from glial cells behaves differently than the same enzyme from neurons.

Animals↗

Primary structure of the protamine isolated from the sperm nuclei of the dog-fish Scylliorhinus caniculus.

A protamine was isolated from mature sperm nuclei of the dog-fish Scylliorhinus caniculus. It contains 31 amino acids per molecule and only five types of residues: arginine (20), glycine (6), serine (3), alanine (1) and tyrosine (1). The primary structure of this protamine is reported. The N-terminal sequence contains the four hydroxylated amino acids of the molecule; the C-terminal region shows a sequence of eleven adjacent residues of arginine and contains all the glycine residues present in the protein. The structure of this 'scylliorhinine' is compared to the amino acid sequence of other sperm protamines whose structure has been previously published. The presence of a modified tyrosine residue in some preparations is discussed in relation to sperm maturation.

Amino Acid Sequence↗

Study of dogfish (Scyliorhinus caniculus) deoxyribonucleic acid polymerase alpha and beta. Extraction, separation, characterization and changes during spermatogenesis.

DNA polymerase activity was extracted from testis cells of the dogfish Scyliorhinus caniculus. On a sucrose gradient, two main peaks could be separated, corresponding to DNA polymerases beta (3.8 S) and alpha (7.5 S). DNA polymerase gamma could also be detected when poly(A) . (dT)12 was used as template. The properties of alpha and beta polymerases of this primitive vertebrate were similar to those generally described, especially in mammals. The beta enzyme was highly sensitive to N-ethylmaleimide, however, and could use poly(dT) . poly(A) as template. Polymerase alpha was present in spermatogonia, spermatocytes and spermatids. Activity was maximal in spermatocytes. DNA polymerase beta was present in all testis cells with similar activities in spermatogonia and spermatocytes. Decreased activities were observed during spermiogenesis. Some activity remained associated with the chromatin fraction of mature sperm cells.

Animals↗

Molecular structure of chromatin during sperm differentiation of the dogfish Scyliorhinus caniculus (L.).

The molecular structure of chromatin during dogfish spermiogenesis was examined by electron microscopy after the dispersion of nuclei at low ionic strength. In early and late stages of differentiation (round and elongating spermatids), chromatin is globular, although basic nuclear proteins are different from those present in somatic nuclei. Three protein fractions are complexed with DNA in sperm nuclei. These fractions appear at the end of differentiation (elongated spermatids), subsequently undergoing a modification of their solubilization properties; only one protein fraction remains acid-soluble. Dispersed chromatin from sperm nuclei again shows a beads-on-a-string configuration both in the presence of the three specific sperm proteins and when the acid soluble fraction is extracted. Variations of the mean diameter of chromatin subunits during spermiogenesis appear rather limited compared to extensive modifications of chromatin superstructures.

Animals↗

Electron microscope evidence for the presence of globular structures in different sperm chromatins.

Dispersion of nuclear fibers of the spermatozoa of dogfish, man, and bull is made possible after treatment with a reducing and alkylating reagent coupled with an anionic detergent; the same detergent used at a low ionic strength dissociates the nuclear content of the rainbow trout sperm. Electron microscopy of such dispersed nuclear fibers has shown a beads-on-a-string configuration for these four types of sperm chromatin. These structures are morphologically similar to those described in somatic cell nuclei as nucleosomes, although in sperm chromatin the basic proteins associated with DNA were significantly different from histones.

Animals↗

3H-actinomycin D binding to ultrathin section of plastic-embedded Locusta migratoria testicular tubules. Improvement of the technique and further characterization of the reaction.

Semi-thin and ultrathin sections of locust testes have been incubated in 3H-actinomycin D solution and submitted to radioautography. The improved technical conditions described allow the reproducible obtainment of cell radioautographs with a moderate nuclear labelling and a very low nonspecific background which are usable for semi-quantitative results. Extraction with enzymes (DNase, RNase, pronase) or concentrated salt solution have been carried out before 3H-Actinomycin D treatment in order to characterize the reaction. The semi-quantitative results obtained at the light microscope level suggest that, in relation to the structural and chemical changes which occur in chromatin during spermiogenesis, some proteins may be easily hydrolysed in early spermatids. In ultrathin sections of spermatocytes the X chromosome is heavily "stained" with 3H-Actinomycin D, while 3H-uridine is not incorporated into the sex chromatin. These results are discussed in the light of current ideas on the constitution of active chromatin.

Animals↗

Extraction and biochemical characterization of a nuclear deoxyribonucleic acid polymerase activity in bull spermatozoa.

Bull spermatozoa heads were separated from cytoplasmic contaminants, especially mitochondria-rich middle pieces, by centrifugation through 2.4M-sucrose. DNA polymerase activity was demonstrated by incubating nuclear heads for 1 h at 37 degrees C or for 20 h at room temperature in a medium containing detergent and dithiothreitol or 2-mercaptoethanol. Optimal DNA polymerase activity was detected after extraction in a medium containing 50 mM-borate, pH9, 1 mg of soya-bean trypsin inhibitor/ml and supplemented with either 20 mM-dithiothreitol and 4% Tween 80 or 100mM-2-mercaptoethanol and 10% Tween 80. The DNA polymerase reaction was Mg2+-dependent; Mn2+ or Ca2+ could not replace Mg2+ and all four deoxynucleoside triphosphates were required for optimal activity. The polymerase activity was pH-dependent (optimum between 8.2 and 10.5) and was a function of buffer composition and also of pH values. Optimal activity was obtained with 50 mM-Na+ or 150mM-K+ and was partially lowered by N-ethylmaleimide; it was inhibited by spermidine and by salmon protamines, but was greatly stimulated by calf thymus histones. It was also resistant to actinomycin D, netropsin and ethidium bromide. The present results suggest that bull spermatozoa heads contain a beta-type DNA polymerase activity.

Animals↗

Presence of two deoxyribonucleic acid polymerases in bull spermatozoa.

A DNA polymerase-endogenous template complex was isolated from nuclear heads of bull spermatozoa. The buoyant density of the complex was 1.15 g/cm 3. The sedimentation coefficient of the nuclear DNA polymerase isolated from the complex was higher at low ionic strength, but approached 3.4S when centrifuged in a medium containing 2M-KCl. Activated exogenous DNA increased polymerase activity. Only very low activities were detected with synthetic templates such as poly(A).(dT)12-18 and poly(dT).poly(A). The nuclear reaction was stimulated by 150mM-KCl and was slightly inhibited by N-ethylmaleimide; it was resistant to actinomycin D, netropsin and ethidium bromide. Another DNA polymerase, highly sensitive to ethidium bromide, was extracted from the mitochondira-rich middle-piece fraction. Its sedimentation coefficient was close to 9S, but fell to approx. 4S in high-ionic-strength medium.

Animals↗

[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↗