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Sequence analysis of protamine mRNA from the rainbow trout. Depurination and nearest neighbor analysis of protamine cDNA.

Protamine cDNA, which was a full length copy of protamine mRNA was labeled during its synthesis by using deoxynucleoside [alpha-32P]triphosphates. Depurination analysis showed that there were 19 different pyrimidine oligonucleotides in protamine cDNA, some of which contained isomeric sequences. The stoichiometry of the pyrimidine oligonucleotides indicated that, while some sequences probably occur in each of the protamine mRNA components, other sequences are clearly absent from one or more of the components. Several of the pyrimidine oligonucleotides had sequences consistent with the amino acid sequences of the rainbow trout protamines. The longest oligopyrimidine tract, C7T4, had a complementary RNA sequence of AGGAGAGGAGG, a stoichiometry of close to 1, and fitted the amino acid sequence Arg-Arg-Gly-Gly which occurs near the COOH terminus of each of three major protamine components. Other pyrimidine oligonucleotides analyzed were complementary to RNA sequences from the noncoding region of protamine mRNA. There appears to be no preferential use of one particular arginine codon or set of codons. Of the 21 to 22 arginine codons in protamine mRNA no less than 7 and no more than 12 are of the CGX series. The other two codons, AGA and AGG, both occur but not in a series of more than two together. This indicates that the RNA sequences coding for the arginine tracts tend to contain a mixture of arginine codons. Nearest neighbor frequency analysis of protamine cDNA gives a low value for the frequency of the CpG doublet, despite its occurrence in four out of the six arginine codons. This is in accordance with the observation that the sequence CpG is surprisingly rare in vertebrate DNA and in the RNA transcribed from it.

Animals

Lethal effect of protamine and histone on competent Bacillus subtilis cells. Inhibition of genetic transformation by protamine in sublethal concentration.

Under experimental conditions of genetic transformation, protamine and total histone were bactericidal for Bacillus subtilis cells. The abilities to cause lethality were very similar for both, either protamine or histone, with no antagonistic effects amongst these natural polycations. With both basic proteins acting simultaneously the enhancement was higher than a summation of the separate lethal effects. Sublethal concentration of protamine added at the beginning of transformation time, produced a strong inhibition of transforming efficiency. The same concentration added later than 10 min from the start of transformation had no inhibitory effect. These facts together with the absence of inhibition by simple pretreatment of DNA alone as well as the cell protection by protamine against lytic activity of lysozyme, suggest a protamine-cell surface interaction which impedes DNA uptake events.

Bacillus subtilis

Polymerization of protamine sulphate by carbodiimide and interaction of isolated protamine polymers with human red blood cells.

A method using a water-soluble carbodiimide to polymerize protamine sulphate is described. The behaviour of polymerized protamine in Sephadex chromatography and in polyacrylamide gel electrophoresis indicates that protamine has been polymerized into aggregates with defined molecular weights. Turbidimetrical titrations of the isolated protamine polymers with dextran sulphate show that the cationic charge density has been conserved after polymerization. The binding characteristics of the protamine polymers to human red blood cells as measured by cell electrophoresis indicate increased affinity with increased molecular weight of the polymer.

Binding Sites

Absorption of protamine-insulin in diabetic patients. I. Preparation and characterization of protamine-125I-insulin.

Protamine-125I-insulin with low specific radioactivity was prepared using 125, 127I-insulin, 0.2 I/mole. The preparations were characterized by disc electrophoresis, isoelectric focusing and analytical gel chromatography in order to evaluate the suitability of 125I-insulin as marker for insulin in protamine-insulin. The stability of the preparations was followed up to 90 days at 4 degrees C. The biological and immunological activity was determined in mice, isolated rat fat cells and by radioimmunoassay. It was concluded that both from a chemical and a biological point of view, the protamine-125I-insulin is a satisfactory preparation that might be used in absorption studies.

Absorption

Pulmonary vasoconstriction produced by protamine and protamine-heparin complex in the isolated cat lung perfused with blood or dextran.

Injections of protamine sulphate, protamine-heparin complex, and the supernatant from this mixture produced a rise in pulmonary artery pressure during constant flow perfusion in the isolated cat lung. The rise in pressure occurred with both blood and dextran perfusates. This suggests that the pulmonary vasoconstriction produced by protamine may be partly due to a direct action on the pulmonary vasculature or to the release of vasoactive substances from the lungs.

Animals

Sequences of large T1 ribonuclease-resistant oligoribonucleotides from protamine mRNA: the overall architecture of protamine mRNA.

Limited T1 ribonuclease digestion of the family of protamine mRNA's purified from rainbow trout testis yields several large oligoribonucleotide fragments ranging in size from 12--54 nucleotides in length. Several of these fragments purified by two dimensional gel electrophoresis contain several G residues and must represent nuclease-resistant, base-paired regions of the mRNA. Sequence analysis of these oligonucleotides by the method of Simoncsits, A., Brownlee, G.G., Brown, R.S., Rubin, J.R. and Guilley, H. (1977) Nature 269: 833-836, shows that these oligoribonucleotides arise from the 5'- and 3'-non-coding regions of the mRNA. Comparisons of the sequences of the large RNA fragment with DNA sequences obtained after cloning double-stranded protamine cDNA in the plasmids pBr322 and pmB9 show precise correspondence of a 54 nucleotide RNA fragment with positions 49--100 from the 3'-poly(A) tract and extending to within 5 nucleotides of the termination codon. Two other RNA fragments of 21 and 25 nucleotides in length arise from the 5'-non-coding region of the message and possess an AUG-sequence at their 3'-termini which is the initiation codon. The presence of distinct by homologous sequences in several sets of large RNA fragments is consistent with the presence of several closely related protamine mRNA's.

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

Isolation and characterization of trout testis protamine mRNAs lacking poly (A).

Poly(A)+ protamine mRNA was isolated from trout testis cells in a very pure form, and artificial poly(A)- protamine mRNA molecules were derived from it by enzymatic deadenylation with RNAase H from calf thymus after hybridization with oligo(dT). The deadenylated protamine mRNA was found to be active in a wheat germ cell-free system and yielded a labeled product which co-migrated with authentic protamine. These deadenylated mRNA molecules were subsequently used as markers on denaturing polyacrylamide gels to identify and allow the purification of the poly(A)- protamine components known to exist in vivo in the total cellular poly(A)- RNA. RNA species of molecular weights similar to the enzymatically deadenylated subcomponents of protamine mRNA were observed in the natural poly(A)-RNA population of the testis cells. These naturally occurring poly(A)- protamine mRNAs were isolated by preparative gel electrophoresis and further characterized by 3H-poly(U) hybridization assay, by hybridization to complementary DNA made against highly purified poly(A)+ protamine mRNA, and by their ability to direct protamine synthesis in a cell-free system.

Animals

Modification of histone binding in calf thymus chromatin by protamine.

When calf thymus chromatin is incubated with protamine, the protein binds to DNA, forming a chromatin-protamine complex. The binding reaches a saturating level at the weight ratio of protamine to DNA of approximately 0.5. Although the saturated binding of protamine to DNA does not cause major displacement of histones from calf thymus chromatin, examination of the dissociation profiles by salt in combination with urea of protamine-treated chromatin shows that the histone-DNA interactions are markedly altered by such binding. The dissociation of histones from the chromatin-protamine complex requires less NaCl but the same concentration of urea as that for untreated chromatin, suggesting that the electorstatic interactions between the histones and DNA are decreased as a result of protamine binding. When protamine concentration is increased beyond that required for saturated binding to DNA during in vitro exposure of calf thymus chromatin to protamine, lysine-rich histone is completely displaced.

Animals

Purification and properties of a protamine kinase from bovine kidney microsomes.

About an eightfold increase in protamine kinase activity was detected following extraction of highly purified microsomes from bovine kidney with 1% Triton X-100. Relative to the soluble fraction, the microsomes contained about 30% protamine kinase activity. The microsomal protamine kinase was purified to apparent homogeneity. The purified enzyme exhibited an apparent M(r) approximately 45,000 as estimated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and by gel permeation chromatography on Sephacryl S-200. Relative to protamine, the purified kinase exhibited about 100% activity with the synthetic peptide RRLSSLRA and about 5, 8, and less than 0.1% activity with casein, histone H2B, and histone H1, respectively. The purified kinase phosphorylated several 40 S ribosome polypeptides. One of these polypeptides was identified as ribosomal protein S6 by N-terminal sequencing. About 2.5 mol of phosphoryl groups was incorporated per mole of ribosomal protein S6 following incubation of the 40 S ribosomes with the purified kinase. Following incubation with protein phosphatase 2A2, purified preparations of the protamine kinase were inactivated. These properties were identical to those of purified preparations of a protamine kinase from extracts of bovine kidney cytosol (Z. Damuni, G.D. Amick, and T.R. Sneed, 1989, J. Biol. Chem. 264, 6412-6418). Near identical peptide patterns were obtained following incubation of purified preparations of the microsomal and cytosolic protamine kinases with Staphylococcus aureus V8 proteinase. The results indicate that a form of the cytosolic protamine kinase is present in microsomes.

Animals

Translation of partially purified poly(A)+ protamine messenger RNA components in wheat germ and rabbit reticulocyte cell-free systems. Evidence for translational control mechanisms.

The coding properties of individual poly(A)+ protamine mRNA subcomponents have been explored by analysis of their translation products in two different cell-free protein synthesis systems, the rabbit reticulocyte lysate and the wheat germ S-30, both of which can translate total protamine mRNA. The products synthesized in the reticulocyte lysate in the presence of total poly(A)+ PmRNA consisted mainly of protamine components CII and CIII with component CI only a minor product. However, in the wheat germ S-30, the same mRNA preparation supported the synthesis of all three protamine components, in approximately equal amounts. In addition a new polypeptide, a putative fourth protamine component, labelled CO, was also synthesized. The translation products of subcomponents of poly(A)+ PmRNA separated as individual bands on polyacrylamide gels were similarly analyzed and it was shown that each of the isolated poly(A)+ PmRNA species could stimulate the incorporation of [3H]arginine into protamines in both translational systems. Although each mRNA band stimulated the synthesis of one particular protamine polypeptide predominantly in a given cell-free system, the same RNA preparation was found to direct preferentially the synthesis of a different protamine component in the second cell-free system. The products synthesized in the rabbit reticulocyte lysate in the presence of the individual mRNA species still showed component CI present as a minor product.

Animals

A simple procedure for the isolation and purification of protamine messenger ribonucleic acid from trout testis.

Preparation of milligram quantities of purified poly(A)+ (polyadenylated) protamine mRNA from trout testis tissue was accomplished by a simple procedure using gentle conditions. This involves chromatography of the total nucleic acids isolated by dissociation of polyribosomes with 25 mM-EDTA to release messenger ribonucleoprotein particles and deproteinization of the total postmitochondrial supernatant with 0.5% sodium dodecyl sulphate in 0.25 M-NaCl by binding it to a DEAE-cellulose column. Total RNA was bound under these conditions, and low-molecular-weight RNA, lacking 18S and 28S RNA, could be eluted with 0.5 M-NaCl and chromatographed on oligo(dT)-cellulose columns to select for poly(A)+ RNA. Further purification of both the unbound poly(A)- RNA and the bound poly(A)+ mRNA on sucrose density gradients showed that both 18S and 28S rRNA were absent, being removed during the DEAE-cellulose chromatography step. Poly(A)- RNA sedimented in the 4S region whereas the bound poly(A)+ RNA fraction showed a main peak at 6S [poly(A+) protamine mRNA] and a shoulder in the 3-4S region. Analysis of the main peak and the shoulder on a second gradient showed that most of the main peak sedimented at 6S, whereas the shoulder sedimented slower than 4S. The identity of the poly(A)+ protamine mRNA was established by the following criteria: (1) purified protamine mRNA migrated as a set of four bands on urea/polyacrylamide-gel electrophoresis; (2) analysis of the polypeptides synthesized in the wheat-germ extract by starch-gel electrophoresis showed a single band of radioactivity which co-migrated exactly with the carrier trout testis protamine standard; and (3) chromatography of the polypeptide products on CM-cellulose (CM-52) showed the presence of three or four radioactively labelled protamine components that were co-eluted with the unlabelled trout testis protamine components added as carrier. The availability of large quantities of purified protamine mRNA should now permit a more thorough analysis of its physical and chemical properties.

Animals

Double-stranded protamine cDNA: synthesis and characterization.

Double-stranded protamine complementary DNA (cDNA) was synthesized from a protamine mRNA template via the single-stranded cDNA intermediate using avian myeloblastosis virus reverse transcriptase. Synthesis at 37 and 46 degrees C resulted in similar overall yields (greater than or equal to 18%), although the initial rate of synthesis was higher at 46 degrees C than at 37 degrees C. The DNA of the second strand of the double-stranded cDNA product was 84% resistant to prolonged digestion with excess S1 nuclease. The S1 nuclease resistant material ranged in size from 235 to 100 base pairs (bp) with an average length of 185 bp. Analysis of the products released from double-stranded protamine cDNA by depurination indicated that there were a number of cytosine-rich oligopyrimidine tracts in protamine mRNA, namely C4, C4U1, C5U1, C6U1, C6U4, and C7U1. On the basis of the amino acid sequences for rainbow trout protamines, C5U1, C6U1 and C7U1 must be located within the noncoding regions. Double-stranded protamine cDNA was cleaved at least once by the restriction endonucleases HaeIII and HhaI and in several places by HpaII. These restriction endonucleases cleave at sequences which have a high probability of occurring within the coding region of protamine mRNA, again based on the known amino acid sequences of the rainbow trout protamines.

DNA

Platelet aggregation following heparin and protamine administration.

The effects of heparin, protamine, and the heparin-protamine complex on the abilities of platelets to aggregate in vitro in response to adenosine diphosphate (ADP) and epinephrine were determined. Citrated blood was obtained from normal volunteers and portions were treated with heparin, protamine, and three different ratios of heparin and protamine. The threshold concentrations of ADP and epinephrine required to produce complete platelet aggregation were then determined. Compared with control citrated plasma, the geometric mean of the threshold concentration for ADP in the heparinized sample was decreased twofold, from 1.88 to 0.94 micrometer; and that for epinephrine more than threefold, from 0.5 to 0.14 micrometer. In contrast, the threshold concentration for ADP was increased to 3.68 micrometer in the neutralized and to 2.78 micrometer in the overneutralized samples and that for epinephrine to 1.62 micrometer in the neutralized and 1.82 micrometer in the overneutralized samples. These data indicate that heparin increases the sensitivity of platelets to ADP and epinephrine as determined by platelet aggregation, and protamine added to heparinized blood not only reverses this effect, but decreases platelet sensitivity when it is added in concentration that neutralize heparin. Additional protamine has no further effect, and protamine alone has no effect on platelet aggregation.

Adenosine Diphosphate

Purification and properties of biologically active rainbow trout testis protamine mRNA.

At least two classes of protamine mRNA are present in both trout testis polysomal RNA and RNA from the postribosomal supernatant fraction of trout testis hormogenate both of which direct the synthesis of protamine in a Krebs II ascites S-30. One contains poly(A) tracts and the other is devoid of poly(A). Sucrose gradient analyses showed that the poly(A) containing protamine mRNA (poly(A) (+)) sedimented IN THE 6 S region with a shoulder in the 4 S region while the protamine mRNA devoid of poly(A) (poly(A) (-)) appeared to sediment at about 4 S and could not be resolved from tRNA. Analysis of the poly(A) (+) protamine mRNA by boundary sedimentation in an analytical ultracentrifuge showed a sedimentation coefficient of 5.7 S, a value which gives rise to an estimate of 165 to 170 nucleotides per molecule. The poly(A) (+) protamine mRNA migrated as a single species in formamide-containing polyacrylamide gels and its mobility in relation to markers of tRNA (4 S) and 5 S RNA was consistent with its sedimentation velocity of 6 S. The RNA present in the major band on an aqueous polyacrylamide gel was extracted and shown to code for protamine in a wheat germ cell-free system.

Animals

Pretreatment with H2 blocker famotidine to ameliorate protamine-induced hypotension in open-heart surgery.

An antagonist to H1 histamine receptor and one to H2 histamine receptor were used to prevent protamine-induced hypotension in 126 Japanese patients undergoing open heart surgery. In a study comparing an H1 antagonist "diphenhydramine" and an H2 antagonist "famotidine", 103 patients were divided into four groups: 31 patients were given no drugs (Group 1), 25 patients were given 0.4 mg/kg of diphenhydramine (Group 2), 33 patients were given 0.4 mg/kg of famotidine (Group 3), and 14 patients were given both the drugs (Group 4) before protamine administration. Although the systolic arterial pressure decreased significantly after protamine administration in all groups, famotidine was found to be effective in reducing protamine-induced hypotension, whereas diphenhydramine was not effective. In order to further investigate the hemodynamic changes in a double-blinded fashion, 12 patients were given normal saline (Group 5), while 11 patients were given 0.4 mg/kg of famotidine (Group 6) before protamine administration. Again, the minimal systolic and mean arterial pressures after protamine injection were significantly higher in Group 6 than in Group 5, while left atrial pressure, central venous pressure, heart rate, and cardiac index were almost the same and remained constant in the two groups. These results strongly suggest that the H2 antagonist "famotidine" is beneficial in reducing protamine-induced hypotension after cardiopulmonary bypass, while the H1 antagonist "diphenhydramine" is not.

Adolescent

Protamine inhibition of the oxidative phosphorylation in intact, cytochrome c-depleted and restored mitochondria.

On the basis of polarographic data it is shown that protamine has a biphasic effect on the respiration of intact mitochondria. At lower protamine concentrations respiration is stimulated and this combined with a decrease of the respiratory control index; at higher ones respiration is inhibited and respiratory control is lost. In cytochrome c-depleted and restored mitochondria protamine effect on oxidative phosphorylation is only inhibitory. Increasing cytochrome c concentrations restore respiration in protamine-treated cytochrome c depleted mitochondria but not the respiratory control. Binding of cytochrome c to mitochondria is studied by determining from Scatchard plots the number of high affinity binding sites (n) and their stability constants (K). In absence of protamine in intact mitochondria n = 2.7 and K = 4.67-10(6) M-1; in cotochrome c depleted mitochondria n = 4.7 and K = 5.16-10(6) M-1. In both types of mitochondria protamine decreases significantly n as well as K. These data show that protamine may affect oxidative phosphorylation by causing desorption of cytochrome c from the inner mitochondrial membrane.

Adenosine Diphosphate