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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↗

Primary structure of protamine from the Northern pike Esox lucius.

The basic nuclear protein in the sperm of the Northern pike is a protamine, 32-residues long, which behaved as a single component during ion-exchange chromatography and gel electrophoresis. Amino acid analysis gave close to molar ratios for the eight different residues with no evidence of microheterogeneity. However, the presence of sequence variants was revealed following a combination of automated protein sequencing and cleavage of the protamine by CNBr, endoproteinase Lys-C and thermolysin. At position 28 there is an equal probability of having serine or glycine. At position 9 glycine is found more frequently than serine. The reciprocal nature of the substitutions results in glycine and serine contents which are close to a 4:2 ratio. Pike protamines are homologous to those of the trout but show less sequence variation between components.

Amino Acid Sequence↗

The increase by spermidine of fidelity of protamine synthesis in a wheat-germ cell-free system.

The influence of spermidine on the fidelity of natural mRNA-directed protein synthesis has been investigated. With protamine mRNA as a template for protamine synthesis, misincorporation of lysine, histidine, threonine and cysteine for arginine was measured in the presence and absence of spermidine. It was found that misincorporation of these four amino acids in the presence of spermidine was less than or nearly equal to that occurring in the absence of spermidine; however, incorporation of arginine was stimulated greatly by spermidine. These results clearly show that spermidine induced an increase of fidelity in protamine synthesis. The increase of fidelity in the presence of spermidine occurred mainly at the level of binding of aminoacyl-tRNA to ribosomes. The frequency of misreading the 5' base of the codon (misincorporation of cysteine) was greater than that of the middle base of the codon (misincorporation of histidine), but spermidine reduction of misreading was more marked at the middle base of the codon. Misincorporation of lysine (misreading of G to A residue at the middle base of the codon) was greater than that of threonine (misreading of G to C residue), but spermidine reduction of misreading was more marked in the misincorporation of threonine. It was deduced from these results that spermidine inhibited low-frequency misreading more effectively than high-frequency misreading.

Arginine↗

Nucleotide sequence of a cDNA clone encoding Scylliorhinus caniculus protamine Z2.

A cDNA library was constructed from a protamine-enriched fraction of dogfish (Scylliorhinus caniculus) mRNA. The nucleotide sequence of a 440-bp insert was determined, and its produced protein sequence confirmed its identification as a cysteine-rich protamine Z2 [Martinage, A., Gusse, M., Belaiche, D., Sautiere, P. and Chevaillier, P. (1985) Biochim. Biophys. Acta 831, 172-178]. The frequency of utilization of the different triplets coding for arginine, which represents 30-70% of the total amino acid residues for trout, mouse and dogfish protamines, is discussed. An alternative repetitive sequence of CGC-AGG was found in the N terminus of the protein. Analysis of the 3' flanking region after the mRNA-terminating TAA codon identified an inverted repeat sequence and an ACCA sequence, which may be possible vestiges of a histone-like termination signal.

Animals↗

Kinetics of histone and protamine synthesis during meiosis and spermiogenesis in the mouse.

The separation of mouse spermatogenic cell nuclei by sedimentation velocity at unit gravity has been used to determine the timing of histone and "mouse protamine" synthesis, and the turnover of basic nuclear proteins throughout spermatogenesis. Animals were injected with 3H-arginine or 3H-lysine and at various time intervals (2 hours post-label or from 1 to 30 days post-label) germinal cell nuclei preparations were separated on the staput. Labelled histones and mouse protamine were extracted from staput separated nuclei with hydrocholoric acid and fractionated by polyacrylamide gel electrophoresis. Results indicate that histones are synthesized in association with DNA replication in spermatogonia and preleptotene spermatocytes, in pachytene primary spermatocytes and in spermatids stages 11-16, simultaneously with "mouse protamine". Experiments are reported showing that histones synthesized in pachytene primary spermatocytes and in spermatids stages 11-16 are retained in epididymal spermatozoa, while histones synthesized before meiosis are no longer detectable onto chromatin after meiosis.

Animals↗

Ultrastructural and immunocytochemical study of P1 protamine localization in human testis.

Two monoclonal antibodies (MAbs) directed against human protamine P1 were realized. Anti-P1 specificity was assessed by western-blot and confirmed by ELISA. Monoclonal antibody 97-3 was selected. Protamine P1 was specifically demonstrated in human testis by immunoelectron microscopy, using 97-3 MAb and an indirect post-embedding immunogold technique. Our results clearly demonstrated the precise time of appearance of P1 protamine in the nuclei of human spermatids. P1 first appeared in the nucleus of step 5 spermatids and its concentration was increased in steps 6-8 spermatids, cytoplasm was not labelled.

Antibodies, Monoclonal↗

Cardiovascular effects of enoximone and epinephrine on heparin reversal with protamine in conscious dogs.

OBJECTIVE: To compare enoximone with epinephrine as treatments for the cardiotoxic effects of protamine sulfate. STUDY DESIGN: Prospective randomized study. ANIMAL POPULATION: 12 healthy cross-bred dogs weighing 23 +/- 4 kg. METHODS: The dogs were anesthetized with xylazine and ketamine to allow instrumentation. Femoral arterial and venous catheters were inserted for pressure monitoring and to allow drug infusion. A thermodilution catheter mounted with a fast response thermistor was inserted into the pulmonary artery via the jugular vein to measure cardiac output and right ventricular volumes. Heparin 300 units/kg followed by protamine 4.5 mg/kg were administered 45 minutes after the xylazine/ketamine. Four animals were not treated (controls), four received enoximone, and four were given epinephrine. Cardiopulmonary parameters were monitored for a period of 30 minutes. RESULTS: Cardiac index was 104 +/- 15 mL/kg/min in the enoximone group, 72 +/- 13 mL/kg/min in the epinephrine group, and 63 +/- 10 mL/kg/min in the control group (P < .05 enoximone versus control and epinephrine). Right ventricular end systolic volume was 18 +/- 3, 27 +/- 4, and 29 +/- 6 mL in the enoximone, epinephrine, and control groups (P < .05 enoximone versus control and epinephrine). There were no differences in mean arterial pressure or pulmonary and systemic vascular resistance between the groups. CONCLUSION AND CLINICAL RELEVANCE: In this study, enoximone was more effective than epinephrine at reversing the hemodynamic changes associated with protamine sulfate administration.

Animals↗

Sinorhizobium meliloti genes involved in tolerance to the antimicrobial peptide protamine.

The innate resistance of plants and animals to microbial infection is mediated in part by small cationic peptides with antimicrobial activity. We assessed the susceptibility of the alfalfa symbiont Sinorhizobium meliloti to the model antimicrobial peptide protamine. Twenty-one Tn5-induced mutants showing increased sensitivity to protamine were isolated, and nine were further characterized in detail. These nine mutants carried distinct transposon insertions that affected a total of seven different genes. Three of these genes are involved in exopolysaccharide and beta-(1,2)-glucan biosynthesis (exoT, exoU and ndvB), three other genes are implicated in nitrogen metabolism, such as a putative dyhidropyrimidinase, hutU and ureF, and the last gene exhibited similarity to the ATP binding cassette family of membrane transporters. Symbiotic defects ranging from severe to moderate were displayed by some of the protamine-hypersensitive mutants suggesting that S. meliloti possess active mechanisms to counteract hypothetical cationic peptides that may be produced by its host plant.

ATP-Binding Cassette Transporters↗

Expression and processing of the rooster protamine mRNA.

In situ hybridization in immature and mature testis sections shows that the rooster protamine mRNA is transcribed in the post-meiotic stages of spermatogenesis. Two distinct populations of rooster protamine mRNA are expressed as determined by Northern blot analysis. Since there are two copies of the chicken protamine gene per haploid genome, the question was raised of whether the two mRNA populations correspond to the two different genes or was a result of differential mRNA processing. The fact that the two genes differ only in one nucleotide (one extra A in the polyadenylation signal in the second locus) and that random sequencing of several cDNA clones has revealed only one poly-A tail addition site favors the hypothesis that the differences are due to mRNA processing. This is supported by 3' S1 mapping which shows a single poly-A tail addition site, which in turn suggests that the heterogeneity is due to differences in the length of the poly-A tail. The latter is confirmed by RNAse H digestion of mRNA-Oligo-dT hybrids which shows that the two mRNA populations (470 +/- 20 nucleotide (nt) and 430 +/- 20 nt respectively) are converted to a single population of 345 +/- 15 nt in good accordance with the poly-A tail site determined by S1 mapping (347 nt). Thus one species has a poly-A tail of 145 nt appearing in round spermatids and the second, a shorter tail of 105 nt present at the later stages of elongated spermatids.

Amino Acid Sequence↗

Protamine-induced condensation and decondensation of the same DNA molecule.

The DNA in sperm and certain viruses is condensed by arginine-rich proteins into toroidal subunits, a form of packaging that inactivates their entire genome. Individual DNA molecules were manipulated with an optical trap to examine the kinetics of torus formation induced by the binding of protamine and a subset of its DNA binding domain, Arg6. Condensation and decondensation experiments with lambda-phage DNA show that toroid formation and stability are influenced by the number of arginine-rich anchoring domains in protamine. The results explain why protamines contain so much arginine and suggest that these proteins must be actively removed from sperm chromatin after fertilization.

Arginine↗

Inhibitory effects of atropine, protamine, and their combination on hepatitis A virus replication in PLC/PRF/5 cells.

Atropine, protamine, and the combination of these drugs were tested for their effects on hepatitis A virus (HAV) replication in cell culture. PLC/PRF/5 hepatoma cells were treated simultaneously with nontoxic concentrations of these drugs and inoculated with HAV strain CF 53 at several multiplicities of infection. The yields of infectious HAV after 4 and 15 days were markedly reduced by each drug, especially at the lowest multiplicity of infection. The activities of each drug were irreversible. Atropine was active when it was added as late as 2 h after inoculation with HAV. An anti-HAV effect was also induced by treating cells with atropine prior to inoculation. Protamine was active as late as 6 h postinoculation. The combination of atropine and protamine resulted in an enhanced anti-HAV effect. We concluded that these drugs affect undetermined, but separate, steps in the HAV replication cycle.

Atropine↗

Protamine-induced permeabilization of cell envelopes of gram-positive and gram-negative bacteria.

The inhibitory effect of the cationic peptide protamine on Listeria monocytogenes, Escherichia coli, and Shewanella putrefaciens has been studied in detail. The addition of protamine (10 to 1,000 micrograms/ml) resulted in inhibition of oxygen consumption after less than 1 min and loss of intracellular carboxyfluorescein and ATP after 2 to 5 min. Maximum antibacterial activity was reached at alkaline pH and in the absence of divalent cations. The efficient permeabilization of cell envelopes of both gram-positive and gram-negative bacteria suggests that protamine causes a general disruption of the cell envelope, leading to a rapid and nonspecific efflux of low- and high-molecular-weight compounds.

Adenosine Triphosphate↗

In situ localization of a mammalian protamine gene: parameters affecting specificity of hybridization.

Southern hybridization analysis of Indian muntjac genomic DNA with the Eco-Taq bovine genomic protamine probe revealed a simple banding pattern. The pattern of hybridization was identical with that previously observed in the genus Bos. This suggested that the bovine probe specifically hybridized to the Indian muntjac protamine gene. The opportunity was thus provided to assign the chromosomal location of the protamine gene in a comparatively simple system. Accordingly, this probe and the corresponding cDNA probe were used for in situ chromosome hybridization and localization. Various parameters affecting specificity and the resolution of hybridization were examined. Subsequent to optimization, the Indian muntjac gene was shown to be autosomal and distally located in the telomeric region of the p arm of chromosome 1.

Animals↗

Protamine-like proteins: evidence for a novel chromatin structure.

Protamine-like (PL) proteins are DNA-condensing proteins that replace somatic-type histones during spermatogenesis. Their composition suggests a function intermediate to that of histones and protamines. Although these proteins have been well characterized at the chemical level in a large number of species, particularly in marine invertebrates, little is known about the specific structures arising from their interaction with DNA. Speculation concerning chromatin structure is complicated by the high degree of heterogeneity in both the number and size of these proteins, which can vary considerably even between closely related species. After careful examination and comparison of the protein sequences available to date for the PL proteins, we propose a model for a novel chromatin structure in the sperm of these organisms that is mediated by somatic-type histones, which are frequently found associated with these proteins. This structure supports the concept that the PL proteins may represent various evolutionary steps between a sperm-specific histone H1 precursor and true protamines. Potential post-translational modifications and the control of PL protein expression and deposition are also discussed.

Amino Acid Sequence↗

Protamine messenger RNA: partial purification and characterization of a heterogeneous family of polyadenylated messenger components.

Poly(A)+ protamine mRNA (pmRNA) components were isolated after separation on denaturing preparative polyacrylamide gels. The four size classes of protamine mRNA described previously were found to contain poly(A) tracts of different lengths. The pmRNA1 was found to be associated with (A)110, pmRNA2 with (A)90, pmRNA3 with (A)85, and pmRNA4 with (A)69. Following deadenylation with RNase H after duplex formation with oligo-dT, the isolated mRNAs were found to be still heterogeneous, although highly enriched in certain of the deadenylated components. DNA complementary to the isolated mRNAs (cDNA) was synthesized in vitro. Following depurination, the oligopyrimidine maps indicated that C7T4, corresponding to an Arg-Arg-Gly-Gly sequence in protamine and originally thought to be characteristic of all mRNA components, is present in only one or possibly tow of the components. Cross-hybridizations between the cDNAs and the four poly(A)+ pmRNAs indicated that a basic polynucleotide unit of substantial length is common to all four mRNAs and that the existing nucleotide sequence variations probably originate from one or both of the non-coding portions of the mRNA molecules.

Animals↗

Heparin reversal by protamine in humans--complement, prostaglandins, blood cells, and hemodynamics.

Fourteen noncardiac surgical patients received heparin (10,000 IU), which was neutralized by 100 mg protamine injected within 2 min during steady-state anesthesia. After protamine application, plasma complement C3a, thromboxane B2 (TxB2), prostaglandin F2 alpha (PGF2 alpha) and KH2PGF2 alpha increased significantly, whereas prostacyclin (6-keto-PGF2 alpha) levels did not change. This mediator response was associated with transient leukopenia and thrombocytopenia. Arterial pressure, pulmonary arterial pressure, and transpulmonary pressure gradient increased significantly. Heart rate, cardiac output, pulmonary capillary wedge pressure, and arterial PO2 remained constant. Positive correlations of plasma C3a were observed with pulmonary leukosequestration and plasma TxB2. Inverse correlations of C3a were noted with the counts of leukocytes and of platelets. A positive correlation was found between TxB2 and pulmonary arterial pressure. Our results indicate that marked activation of the complement system and the cyclooxygenase pathway is common after heparin reversal by protamine in anesthetized patients. This is in contrast to previous human studies performed after cardiopulmonary bypass but agrees well with results obtained in animal experiments. The mediator response in our patients, however, was not accompanied by hemodynamic instability, suggesting appropriate compensatory mechanisms.

Aged↗

Direct effects of protamine sulfate on myocyte contractile processes. Cellular and molecular mechanisms.

BACKGROUND: Administration of the arginine-rich, highly charged protamine (PROT) molecule has been associated with episodes of acute left ventricular (LV) dysfunction. The objective of the present study was to test the hypothesis that PROT has direct effects on isolated LV myocyte contractile processes and sarcolemmal transduction systems. METHODS AND RESULTS: Exposure of porcine LV myocytes (n = 305) to 40 micrograms/mL PROT (reflecting a dose of 2.5 mg/kg) decreased basal contractile function and beta-adrenergic responsiveness. For example, myocyte percent shortening was 4.3 +/- 0.1% in control myocytes and decreased to 2.8 +/- 0.2% in the presence of 40 micrograms/mL PROT (P < .05). Myocyte percent shortening was 9.3 +/- 0.7% after beta-adrenergic receptor stimulation (isoproterenol; 25 nmol/L) and was significantly reduced in the presence of 40 micrograms/mL PROT (5.7 +/- 0.7%, P < .05). PROT reduced myocyte responsiveness to forskolin (100 mumol/L), which directly activates adenylate cyclase, by > 40% from forskolin. In addition, PROT abolished the inotropic effects of ouabain on myocyte contractile function. To determine contributory mechanisms for the effects of PROT on myocyte sarcolemmal systems, beta-receptor- and cardiac glycoside-binding characteristics were determined in sarcolemmal preparations. beta-receptor binding was 175 +/- 10 fmol/mg and was reduced to 140 +/- 6 fmol/mg in the presence of PROT (P < .05). Ouabain receptor binding was 7.1 pmol/mg and decreased to 2.6 +/- 0.4 pmol/mg in the presence of PROT. In addition, cAMP production after stimulation with isoproterenol and forskolin was significantly blunted in the presence of PROT. Variants of the PROT moelcule were constructed by specific amino acid substitutions and deletions, which provided a means to vary charge as well as structure. Substitution of arginine with lysine in the PROT peptide sequence ameliorated the negative effects on myocyte contractile processes; despite identical overall charge (21+). However, a PROT variant with an 18+ charge but different amino acid sequence induced significant negative effects on myocyte function and inotropic responsiveness. Thus, the effects of PROT on myocyte contractile processes are not due simply to the high positive charge of the molecule. To further establish that PROT can contribute to changes in LV function in the clinical setting, fluorescein-labeled PROT was circulated in antegradely perfused rabbit hearts. Microscopic examination revealed that PROT could traverse the vascular compartment of the myocardium and come in direct contact with the myocyte. CONCLUSIONS: The unique findings from the present study suggest that a fundamental contributory mechanisms for the changes in LV function observed after protamine administration may be the direct effect of unbound protamine on myocyte contractile processes.

Adrenergic beta-Agonists↗

Myocardial angiogenesis and coronary perfusion in left ventricular pressure-overload hypertrophy in the young lamb. Evidence for inhibition with chronic protamine administration.

In contrast to young growing animals, pressure-overload hypertrophy in adults is frequently associated with diminished myocardial capillary density and maximal coronary flow per gram. To determine the role of angiogenesis in maintaining perfusion capacity in the hypertrophying heart, the angiogenesis inhibitor protamine sulfate was administered to young lambs during the development of left ventricular (LV) pressure-overload hypertrophy. Baseline and maximum (adenosine) myocardial perfusion was measured in four groups of chronically instrumented 10-week-old lambs subjected to 1) ascending aortic bands since the age of 4 weeks (LVH group, n = 10), 2) sham operation at the age of 4 weeks (SHAM group, n = 8), 3) aortic bands and twice daily injections of protamine since the age of 4 weeks (LVH + P group, n = 9), 4) sham operation and injection of protamine (SHAM + P group, n = 8). Capillary density was measured postmortem. Peak LV pressure and the LV/body weight ratio were similarly increased in LVH and LVH + P compared with sham-operated lambs (p less than 0.001). In LVH lambs, LV capillary number increased by 32% compared with sham-operated lambs (p less than 0.05), and capillary density, coronary flow reserve, and minimal coronary resistance remained normal. In contrast, LVH + P lambs had no significant increase over SHAM lambs in LV capillaries and total maximum coronary flow. The LVH + P lambs had lower LV subendomyocardial capillary density and higher minimal coronary resistance per gram (p less than 0.05 versus LVH lambs). Right ventricular capillary density and minimal resistance were similar in all groups. These findings support the hypotheses that myocardial angiogenesis with pressure-overload hypertrophy is important in maintaining maximal LV coronary flow in the young and that impairment of angiogenesis results in diminished coronary flow capacity.

Age Factors↗