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P N Lewis

Publications and source records attributed to P N Lewis.

At least 19 recordsLinked to original sources

Assembly, remodeling, and histone binding capabilities of yeast nucleosome assembly protein 1.

Recombinant yeast nucleosome assembly protein (yNAP-1) facilitates the formation of uniformly spaced nucleosomes from high molecular weight DNA and core histone octamers. No additional factors or metabolites are required. The repeat length of the chromatin produced is about 146 base pairs. To obtain the most distinct nucleosomal ladders, the core histones must preexist as an octamer complex. yNAP-1 forms complexes with core histones as judged by native gel electrophoresis, chemical cross-linking, limited histone proteolysis, and affinity blotting. A discrete complex was observed with a probable ratio of yNAP-1 to histone octamer of 4:1. Chromatin produced by salt dialysis does not contain uniformly spaced nucleosomes, but subsequent incubation with yNAP-1 creates uniform spacing. Trypsin-treated core octamers that lack amino termini, although capable of forming core particles with core-length DNA by salt dialysis, are not assembled by yNAP-1 into uniformly spaced nucleosomes on high molecular weight DNA. Proteolytic removal of the amino termini of the core histones precludes complex formation between a histone octamer and yNAP-1. Affinity blotting also demonstrates that yNAP-1 binds linker histones and high mobility group (HMG)-1/HMG-2 but not HMG-14. Competition experiments with poly-L-arginine, poly-L-lysine, and protamine reveal that yNAP-1 binds to core and linker histones more tightly despite the much higher positive charge densities of the former molecules. Naturally occurring acetylated histone H4 species show no evidence for differential yNAP-1 binding. yNAP-1 is not bound tightly to the resulting chromatin after deposition and thus could act catalytically.

Cell Cycle Proteins

Histone-induced damage of a mammalian epithelium: the role of protein and membrane structure.

In a previous report [T. J. Kleine, A. Gladfelter, P. N. Lewis, and S. A. Lewis, Am. J. Physiol. 268 (Cell Physiol. 37): C1114-C1125, 1995], we found that the cationic DNA-binding proteins histones H4, H1, and H5 caused a voltage-dependent increase in the transepithelial conductance in rabbit urinary bladder epithelium. In this study, results from lipid bilayer experiments suggest that histones H5-H1 and H4 form variably sized conductive units. Purified fragments of histones H4 and H5 were used to determine the role of histone tertiary structure in inducing conductance. Isolated COOH- and NH2-terminal tails of histone H4, which are random coils, were inactive, whereas the central alpha-helical domain induced a conductance increase. Although the activities of the central fragment and intact histone H4 were in many ways similar, the dose-response relationships suggest that the isolated central domain was much less potent than intact histone H4. This suggests than the NH2- and COOH-terminal tails are also important for histone H4 activity. For histone H5, the isolated globular central domain was inactive. Thus the random-coil NH2- and COOH-terminal tails are important for H5 activity as well. These results indicate that histone molecules interact directly with membrane phospholipids to form a channel and that protein tertiary structure and the degree of positive charge play an important role in this activity.

Amino Acid Sequence

Is wine the drink of moderation?

OBJECTIVE: To examine, in the light of a current national inquiry into taxation for wine, claims that wine drinkers rarely misuse alcohol and that cask wine is more likely to be misused than bottled wine. METHODS: 1272 persons aged 16 years and over and resident in metropolitan Perth were interviewed in their homes regarding their use of alcohol. RESULTS: The alcohol consumption of 524 (373 women, 151 men) who had drunk at least one glass of wine on one or more of their last four drinking days was examined in relation to National Health and Medical Research Council guidelines. While only 2.9% of women and 2.6% of men had an average daily intake of wine above low risk levels, 6.9% of women and 13.2% of men had exceeded these levels when considering all alcoholic beverages. When wine intake was examined for the day of highest consumption of the last four drinking days recalled by each respondent, 41.1% of women and 17.0% [corrected] of men had exceeded low risk levels. There was no significant difference in the amounts of cask and bottled wine consumed in 180 wine drinkers for whom the distinction between cask and bottled varieties could be made and who drank wine on their last drinking occasion. CONCLUSIONS: Past estimates of the contribution of wine consumption to excessive alcohol intake are underestimates. Raising the tax on wine should be considered as a public health measure and taxes should be levied in direct relation to alcohol content to encourage the consumption of lower alcohol varieties.

Adolescent

Histone-induced damage of a mammalian epithelium: the conductive effect.

Human semen has been reported to be cytotoxic to rat descending colon by a mechanism involving polyamines (cationic molecules) and collagenase. In this study, we report that histones, cationic proteins found in human semen, can contribute to semen's cytotoxicity. Histones H1, H4, and H5, when added to the mucosal side of rabbit urinary bladder epithelium, were found to alter the transepithelial conductance (Gt) in a voltage-sensitive manner. When the cell interior was negative, the conductance rapidly increased and plateaued. When the cell interior was positive, the induced conductance decreased to control values. Histone increased the Gt by increasing the apical membrane conductance rather than the tight junction conductance. The magnitude of the Gt increase was dose dependent, and the histone-induced conductance was nonselective for Na+, K+, and Cl-. The induced conductance could be reversed by either increasing mucosal Ca2+ concentration or by removal of histone from the mucosal solution. Prolonged exposure of the epithelium to histone was toxic as determined by the irreversible loss of transepithelial resistance. These results indicate that histone increases membrane ionic permeability, is cytotoxic, and thus may contribute to human semen's toxic effect on colonic epithelium.

Animals

H3 Cys-110 is in close proximity to the C-terminal regions of H2B and H4 in a nucleosome core with an altered internal arrangement of histones.

A particle obtained by nuclease digestion of nucleohistone complexes prepared by direct mixing of histones with DNA in 0.15 M NaCl was indistinguishable by composition and physical properties from nucleosome cores prepared under the same conditions from nucleohistone preannealed in 0.6 M NaCl. We show here that different photo-cross-links form when these particles are prepared from H3 labeled with photoaffinity reagents on the unique histone H3 cysteine. H3-H3 histone dimers were dominant when the particles were prepared by dilution of the nucleohistone from 0.6 M NaCl while H3-H2B and H3-H4 histone dimers were prominent if the nucleohistone complex was prepared directly in 0.15 M NaCl. Peptide mapping of the novel H3-H4 and H3-H2B dimers showed that Cys-110 of histone H3 is cross-linked to the 18 amino acid C-terminal end of H4 or to the 66 amino acid C-terminal half of H2B.

Affinity Labels

Purification and characterization of two porcine liver nuclear histone acetyltransferases.

Two forms of porcine histone acetyltransferase (types I and II) have been purified to apparent homogeneity from liver nuclei. Both activities are extracted from nuclei by 0.5 M NaCl and display a native Mr of 110,000 as determined by gel filtration. Saline enzyme extracts were subject to ammonium sulfate precipitation and sequential chromatography on Q-Sepharose, Sephacryl S-200, hydroxylapatite, and Mono Q supports. The histone acetyltransferase type I fraction contains three polypeptide chains with apparent Mr values of 105,000, 62,000, and 45,000, respectively, by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Cyanogen bromide peptide mapping and immunoblotting suggest that the Mr 62,000 and 45,000 polypeptides are derived by cleavage of the Mr 105,000 polypeptide. Histone acetyltransferase type II contains two different subunits with apparent Mr values of 50,000 and 40,000, respectively. The amino acid composition, heat inactivation profiles, and Michaelis constants with respect to both acetyl coenzyme A and histones were indistinguishable for types I and II. However, affinity-purified polyclonal antibodies to both forms of the enzyme do not cross-react; cyanogen bromide-derived in situ cleavage digest patterns show few similarities; and the turnover number for type I is approximately 15-fold lower than that for type II. We estimate that there is one enzyme molecule for every 500 nucleosomes. The existence of two distinct forms of nuclear histone acetyltransferase in pig liver suggests that they may have separate functions in vivo.

Acetyltransferases

Histone H3 thiol reactivity and acetyltransferases in chicken erythrocyte nuclei.

Chicken erythrocyte nuclei previously incubated separately with two novel mercury compounds (N-chloromercuribenzoyl)-biocytin and bis(p-(chloromercuribenzoyl))-[3H]lysine diamide) were digested with micrococcal nuclease and the digest products fractionated according to their solubility in 0.15 M NaCl and molecular size. The identity and quantitation of the chromatin fractions and proteins containing covalently bound mercury were determined by Western blotting, autoradiography, and scintillation counting. The most highly acetylated species of histone H3 in the 0.15 M NaCl-soluble polynucleosome fraction also contained the highest proportion of bound mercury. This fraction contains hyperacetylated core histones, is depleted in linker histones, and enriched in nonhistone proteins. Histone H3 in the 0.15 M NaCl-soluble mononucleosomes, which are unacetylated and lack linker histones, was 45% less labeled than histone H3 in the 0.15 M NaCl-soluble polynucleosome fraction. In the 0.15 M NaCl-insoluble polynucleosomes, which contain unacetylated histones and molar proportions of linker histones, histone H3 was 63% less labeled. Allowing for the differential abundance of these subfractions in the nucleus, the relative H3 reactivities are 50, 7, and 1 for 0.15 M NaCl-soluble polynucleosomes, mononucleosomes, and 0.15 M NaCl-insoluble polynucleosomes, respectively. Thus a gradation of reactivities exists which correlates with increasing hyperacetylation and linker histone depletion. High mobility group proteins 1 and 2, found in subnucleosome particles in the 0.15 M NaCl-soluble fraction, are extensively mercury-labeled. Distribution of histone acetyltransferase activity among salt- and size-resolved micrococcal nuclease produced fractions was almost 5-fold greater in the 0.15 M NaCl-soluble supernatant than in the 0.15 M NaCl-insoluble pellet. Furthermore, the acetyltransferase activity, which is tightly bound to undigested chromatin, is rapidly released by both micrococcal nuclease and DNase I. For short digestion times the enzyme is associated with the salt-soluble polynucleosomes, but at longer times of digestion the enzyme appears to be free from intact nucleosomes. The enzyme may be localized in the globin domain in erythrocytes and maintains that region in a hyperacetylated state which results in an altered linker histone binding reflected in a change in the reactivity of the usually inaccessible H3 cysteine 110.

Acetyltransferases

Histone accessibility determined by lysine-specific acetylation in chicken erythrocyte nuclei.

N-Hydroxysulfosuccinimidyl [3H]acetate was synthesized and, following the determination of the optimal reaction conditions, was used to acetylate histones in chicken erythrocyte nuclei at 4 degrees C, pH 8. The histones were extracted from the labelled nuclei and the distribution of the acetyl groups determined from the amount of tritiated acetate in isolated peptides. The relative degree of acetylation of molecules was H1 1.0, H5 0.81, H2B 0.48, H2A 0.24, H3 0.24, H4 0.16. Histone H1 is the most exposed histone followed by H5. The core histones are much less accessible to chemical modification than the linker histones by a factor of 4-5. Histones H2A, H2B and H5 appear to be labelled at random along the entire polypeptide chain, while histones H3 and H4 are labelled almost exclusively in the first 30 residues from the N terminus. Control and acetylated chicken erythrocyte nuclei were digested with DNase I and the resulting DNA hybridized to globin and ovalbumin cDNAs. Acetylation, at 14 molecules acetate/core nucleosome or 20 molecules acetate/chromatosome, increased the DNase I sensitivity of the ovalbumin gene to that of the globin sequences in the control sample, while the globin sequences became even more nuclease-sensitive. Our results suggest that increased sensitivity of chromatin towards nuclease digestion might be due to increased solubility of the chromatin fibre.

Acetylation

Internal architecture of the core nucleosome: fluorescence energy transfer studies at methionine-84 of histone H4.

Chicken histone H4, labeled separately at Met-84 with N-[[(iodoacetyl)amino]ethyl]-5-naphthylamine-1-sulfonic acid and 5-(iodoacetamido)fluorescein, was reassociated with unlabeled histones H2A, H2B, and H3 and 146 base pairs of DNA to produce fluorescently labeled nucleosomes having physical characteristics virtually the same as those of native core particles. Four types of particles were prepared containing respectively unlabeled H4, dansylated H4, fluoresceinated H4, and a mixture of the two labeled H4 molecules. Quantitative singlet-singlet energy-transfer measurements were carried out to determine changes in the distance between the two Met-84 H4 sites within the same nucleosome following conformational transitions which we have reported earlier. In the ionic strength range 0.1-100 mM NaCl, the distance between these sites is less than 2 nm except at 1 mM. Between 100 and 600 mM monovalent salt the distance separating the donor and acceptor fluors at Met-84 H4 increases to 3.8 nm. The conformational change centered around 200 mM NaCl is cooperative. Our results and those of others indicate that there is little unfolding of the histone octamer, at least around Met-84 H4, in the entire ionic strength range studied. A mechanism involving the rotation of the globular portion of H4 is proposed to account for this transition which occurs at physiological ionic strengths.

Animals

Intermolecular histone H4 interactions in core nucleosomes.

Chicken histone H4, labeled at methionine-84 with 1-N-pyrenyliodoacetamide, has been incorporated into a nucleosome-like particle with core length DNA and unmodified histones H2A, H2B, and H3. These synthetic nucleosomes exhibit properties very similar to those displayed by native particles and those labeled with other fluors. The emission spectrum of the pyrene-labeled nucleosome was characteristic of excited dimer (excimer) fluorescence, indicating that the single pyrene groups on the two H4 molecules are in close proximity in the reconstituted particle. Histone H4 was also labeled randomly at lysines with a group that contains two pyrene moieties separated by 12 A at most. Incorporation of this histone into nucleosome-like particles provides an excimer standard which does not depend on intermolecular interactions. The properties of the pyrene-containing nucleosome were examined as a function of ionic strength. It was found that the H4-H4 pyrene excimer fluorescence exhibited a cooperative disruption centered at 0.1 M NaCl which preceded increases in accessibility and environment polarity revealed by other fluors attached at the same site.

Animals

Total and poly(A) RNA yields during an aluminum encephalopathy in rabbit brains.

The yields of total and poly(A) RNA were examined in rabbit forebrains during an experimentally induced aluminum encephalopathy. Rabbits (35 day old) were injected intracranially with 13 mumole Al lactate and sacrificed 1, 3, 7, 10, or 12 days later. IRNA yields (total RNA minus transfer RNA) were not significantly altered during the encephalopathy. Poly(A) RNA yields, assayed by oligo(dT)-cellulose fractionation and by a [3H]poly(U) hybridization assay on IRNA, were increased significantly by the end of the asymptomatic stage of the encephalopathy (7 days post-Al injection). The increase in messenger RNA population may represent either a compensatory response to cell damage induced by aluminum or the accumulation of messenger RNA for proteins directly related to the expression of aluminum toxicity.

Aluminum

Characterization of messenger RNA from the cerebral cortex of control and Alzheimer-afflicted brain.

A detailed comparative study of RNA transcripts isolated from the neocortex of control and Alzheimer postmortem brains was made to determine whether morphological changes in the chromatin of Alzheimer neurons and glia, which we reported earlier, are accompanied by changes in the products of transcription. A number of parameters were determined including the yields of total and mRNA per gram of tissue, the relative proportions of polyadenylated [poly(A)+] mRNA in the total RNA, the size distribution of the transcripts and the length of their poly(A) tails, and the nature of their in vitro translation products. The levels of endogenous RNase activity were also measured. The effect of the agonal process on the transcript complement was examined by Northern blotting of a cloned human heat-shock cDNA to total human brain RNA. Our results reveal that the yields of total RNA, unadenylated mRNA, and poly(A) tail lengths from Alzheimer neocortex samples do not differ significantly from those of control and non-Alzheimer dementia neocortex. On the other hand we find a significant reduction in the levels and proportion of poly(A)+ mRNA in the Alzheimer samples as compared to control brain samples. Quantitative rather than qualitative differences were observed in the in vitro translation products when programmed with control and Alzheimer mRNA. No differences were found in the levels of RNase activity between control and Alzheimer samples. Heat-shock mRNA transcripts were detected in brain samples from patients in whom fever was associated with death. The direct correlation of reduced poly(A)+ mRNA and chromatin condensation in Alzheimer neocortex suggests a cause-and-effect relationship. Whether all transcribed genes are affected or only a specific subset has yet to be determined.

Aged

Conformations of the core nucleosome: effects of ionic strength and high mobility group protein 14 and 17 binding on the fluorescence emission and polarization of dansylated methionine-84 of histone H4.

Chicken histone H4 labeled at Met-84 with the fluor N-[(acetylamino)ethyl]-8-naphthyl-amine-1-sulfonic acid has been incorporated into a nucleosome which has physical characteristics virtually identical with those of native core nucleosomes. The fluorescence emission and polarization properties of the labeled nucleosome were measured as a function of ionic strength and the binding of high mobility group (HMG) proteins 14 and 17. Also, the accessibility of the fluor to the quenching agent acrylamide was determined. It was found that the fluorescence emission changes in the range 0.1-1000 mM NaCl are rather small and indicate that no major unfolding of the octamer structure occurs around Met-84 on H4 at least. Five or perhaps six discrete states were found in that ionic strength range. Each has a different accessibility to the quenching agent. The range of accessibilities varied from 9 X 10(-7) to 32 X 10(-7) mol-1 s-1 for 0.1-1000 mM NaCl, respectively. Polarization measurements showed that there was little change in the rotational relaxation lifetime of the fluor at ionic strengths less than 50 mM NaCl. Above this value, the rotational relaxation lifetimes decreased from 107 to 25 ns at 600 mM NaCl, indicating a moderately increased rotational freedom for the fluor. It is suggested that the histone octamer changes its degree of compaction in the range 0.1-600 mM NaCl but that no major protein unfolding occurs.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Laser Raman spectra of calf thymus chromatin and its constituents.

Extensive Raman measurements have been made on calf thymus chromatin, core chromatin, the (H3,H4)/DNA complex, and isolated DNA. The results indicate that the alpha-helical content of the nucleosomal histones gradually increases as they form the heterocomplexes that lead to the formation of the octameric nucleosome core. The secondary structure of the latter is not modified as it binds to DNA. The spectra indicate that the DNA essentially retains its B conformation in nucleosomes, although slight changes probably occur in the ribose-phosphate backbone. No specific interactions between the nucleosomal histones and DNA can be established from the spectra, but histone H1 possibly interacts selectively with the thymine bases.

Animals

Changes of histone H1 subtypes with aging in strains of mice that possess different immunological characteristics.

Relative proportions of histone H1 proteins were determined for brain, heart, liver, and spleen for five strains of mice as a function of age. The strains examined were SJL/J and MRL/MPJ-lpr/pr which develop early resistance to tolerance and A/J, C57BL/6J and MRL/MPJ-+/+ which do not. Heart, brain, and liver of most of these strains displayed significant relative increases in histone H1(0) and coordinate decreases in H1I or H1II with age. In contrast, spleen cells, which are highly proliferative, contained little or no histone H1(0). Only spleen cells from a mouse strain with a predisposition to lupus erythematosus, MRL/MPJ-lpr/lpr, displayed any significant H1 changes.

Aging

Chromatin structure in dementia.

Nuclei extracted from neocortex of patients with Alzheimer's disease and treated with micrococcal nuclease release a population of dinucleosomes that contain an increase in the linker histones H1o and H1oo . Five other degenerative brain diseases that clinically resemble Alzheimer's disease do not result in these changes, although Pick's disease is associated with an increase in H1 on dinucleosomes. Histones from nuclei of patients with Alzheimer's disease are also more resistant to salt-induced release from chromatin than are those from age-matched control subjects. These results support the hypothesis that an alteration in chromatin structure is a marker for Alzheimer's disease.

Aged

Structural studies on yeast nucleosomes.

Mononucleosomes isolated from micrococcal nuclease digests of stationary phase chromatin of the yeast Saccharomyces cerevisiae were compared both compositionally and physiochemically with those from chicken and bovine calf. It was found that while yeast mononucleosomes are similar in composition, their thermal denaturation profiles and circular dichroism spectra indicate a less constrained structure. Furthermore, yeast nucleosomes were discovered to be labile in solutions of low ionic strength and could not be reconstituted by methods applicable to calf and chicken nucleosomes. On the basis of the reconstitution of a hybrid nucleosome containing calf histones H2A, H2B, and H3 and yeast histone H4, it was concluded that variations in the yeast H4 sequence are unlikely to be responsible for the apparent decrease in the stability of yeast nucleosomes. Examinations of histone-histone interactions in free solution revealed a change in the H3-H4 interaction and together with the previously published results of other researchers it was inferred that changes in the H3 sequence might be responsible for this structural variation.

Animals