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Variable effects of DNA-synthesis inhibitors upon DNA methylation in mammalian cells.

Post-synthetic enzymatic hypermethylation of DNA was induced in hamster fibrosarcoma cells by the DNA synthesis inhibitors cytosine arabinoside, hydroxyurea and aphidicolin. This effect required direct inhibition of DNA polymerase alpha or reduction in deoxynucleotide pools and was not specific to a single cell type. At equivalently reduced levels of DNA synthesis, neither cycloheximide, actinomycin D nor serum deprivation affected DNA methylation in this way. The topoisomerase inhibitors nalidixic acid and novobiocin caused significant hypomethylation indicating that increased 5-mCyt content was not a necessary consequence of DNA synthesis inhibition. The induced hypermethylation occurred predominantly in that fraction of the DNA synthesized in the presence of inhibitor; was stable in the absence of drug; was most prominent in low molecular weight DNA representing sites of initiated but incomplete DNA synthesis; and occurred primarily within CpG dinucleotides, although other dinucleotides were overmethylated as well. Drug-induced CpG hypermethylation may be capable of silencing genes, an effect which may be relevant to the aberrantly expressed genes characteristic of neoplastic cells.

Animals

Integration of methylome and transcriptome reveals age-associated signatures of stage-specific dynamics and regulatory remodeling in dogs.

Aging in mammals is characterized by widespread yet coordinated epigenetic alterations. However, integrative analyses of DNA methylation and gene expression in dogs remain largely unexplored, particularly within genetically homogeneous single-breed populations. To elucidate the molecular signatures of canine aging, we profiled the genome-wide methylome and transcriptome of clinically healthy beagle dogs representing three distinct age groups. Global methylation levels were highly conserved across individuals, yet both methylation and gene expression variability increased progressively with aging. This epigenetic drift was not stochastic but structured by genomic context, as reduced CpG-gene associations indicated a gradual loss of epigenetic control over transcription. We further observed stage-related methylation change patterns across the three age groups, including early-shift, late-shift, and progressive patterns. These groups showed partially overlapping but distinct hallmark associations, suggesting links to different age-related biological processes. Together, these findings indicate that canine epigenetic aging involves multifaceted molecular changes across adulthood and support dogs as a useful model for investigating conserved molecular signatures of aging.

Beagle dog

The abortifacient effectiveness and plasma prostaglandin concentrations with 15(S)-15-methyl prostaglandin F2alpha methyl ester-containing vaginal silastic devices.

The abortifacient effectiveness of three intravaginal Silastic devices impregnated with 15(S)-15-methyl prostaglandin F2alpha (15(S)-Me-PGF2alpha) methyl ester in concentrations of 0.25%, 0.5%, and 1.0% was investigated. Each concentration was tested in 10 patients with gestations ranging from 8 to 19 weeks. Abortion was successfully induced by prostaglandin alone in 6 patients with the 0.25% device, in 9 patients with the 0.5% device, and all 10 patients treated with the 1.0% device. Additionally, three patients treated with the 0.25% device and one patient treated with the 0.5% device aborted with concomitant, continuous, intravenous oxytocin therapy. The mean abortion time with the 0.25% device was 16.43 hours; with the 0.5% device, 16.49 hours; and with the 1.0% device, 10.18 hours. The peripheral plasma levels of 15(S)-Me-PGF2alpha methyl ester were the most variable with the 0.5% device. The plasma levels of 15(S)-Me-PGF2alpha methyl ester of patients receiving the 0.25% device were similar to the levels of patients receiving the 1.0% device. The intravaginal Silastic device impregnated with 15(S)-Me-PGF2alpha methyl ester appears to be an effective abortifacient, but further study is indicated to determine the most efficient device with the fewest side effects.

Abortifacient Agents

Prior exposure to hypoxia alters DNA methylation patterns in the eastern oyster.

Environmentally induced epigenetic changes (e.g., DNA methylation) can alter genetic activity to help organisms adapt and respond to variable environments. While many studies have investigated DNA methylation as a response to a stressor at a single timepoint, less well-understood is how methylation may encode memory of past environments and influence the response to current environments (i.e., carryover effects). Oysters are an excellent natural system to study carryover effects due to their sessile nature, which may expose them to increased environmental variability. To better understand how methylation changes in response to a previous exposure of environmental stress, we conducted a fully factorial experiment exposing juvenile oysters to either control or hypoxic conditions at two timepoints separated by 60 days. After the second exposure, whole body tissue samples were collected and processed for methylRAD sequencing. Regardless of treatment, methylation was mostly found in exons. We found both the first and second exposure treatments contributed significantly to the observed variation in gene body methylation. Interestingly, oysters that were first exposed to hypoxia and later exposed to control conditions had methylation patterns that differed the most from any other condition. We found that differentially methylated genes identified in pairwise comparisons were mainly involved in the oxidative stress response, metabolism, and transcription. Together, these findings suggest that early life environments have a lasting impact on the epigenome and that the timing of stress elicits unique response strategies, which highlights potential targets of resilience for oysters.

Animals

The DNA methylation system in proliferating and differentiated cells.

The human melanoma cell line M21 can be induced to differentiate into oligodendrocyte-like cells with concommitant cessation of cell division. Cytosine-arabinoside, 5-aza-2'-deoxycytidine, hydroxyurea, aphidicolin, and phorbol-12-myristate-13-acetate were found to be potent differentiation inducers. We have analyzed the changes of methylation of DNA cytosines that occur after treatment of M21 cells with these compounds. Although DNA methylation levels remain unchanged in the presence of aphidicolin and phorbol ester, 5-aza-2'-deoxycytidine-induced differentiation of these cells results in a 40% DNA demethylation. On the other hand, hydroxyurea and cytosine-arabinoside treatment causes DNA hypermethylation, which, in the case of the cytidine analogue is of only transient nature. These results show that the differentiation of human melanoma cells can be accompanied by variable changes of DNA methylation levels. In another set of experiments, the DNA methylation levels have been analyzed during cytosine-arabinoside-induced differentiation of human K562 erythroleukemia cells. In this system, a transient DNA demethylation precedes the establishment of the differentiated phenotype. Since DNA replication is inhibited, this demethylation cannot be explained by inhibition of the maintenance activity of DNA methyltransferase, but is more likely caused by an active excision of 5-methylcytosine from DNA.

Aphidicolin

V(D)J recombination: evidence that a replicative mechanism is not required.

We examined a series of extrachromosomal DNA substrates for V(D)J recombination under replicating and nonreplicating conditions. Complete and partial replications were examined by monitoring the loss of prokaryote-specific adenine methylation at 14 to 22 MboI-DpnI restriction sites (GATC) on the substrates. Some of these sites are within 2 bases of the signal sequence ends. We found that neither coding joint nor signal joint formation requires substrate replication. After ruling out replication as a substrate requirement, we determined whether replication had any effect on the efficiency of V(D)J recombination. Quantitation of V(D)J recombination efficiency on nonreplicating substrates requires some method of monitoring the entry of substrate molecules into the cells. We devised such a method by monitoring DNA repair of substrates into which we had substituted deoxyuridine for 10 to 20% of the thymidine nucleotides in the DNA. The substrates which enter the lymphoid cells were repaired efficiently in vivo by the eukaryotic uracil DNA repair system. Upon plasmid harvest, we distinguished repaired (entered) from unrepaired (not entered) plasmids by cleaving unrepaired molecules with uracil DNA glycoylase and Escherichia coli endonuclease IV in vitro. This method of monitoring DNA entry does not appear to underestimate or overestimate the amount of DNA entry. By using this method, we found no significant quantitative effect of DNA replication on V(D)J recombination efficiency.

Animals

The physical organization of the human immunoglobulin heavy chain gene complex.

Two dimensional DNA electrophoresis (2D-DE) was used to map the variable (VH) region of the human heavy chain immunoglobulin gene cluster. Seventy-six VH gene segments were mapped to specific SfiI, BssHI and NotI fragments by 2D-DE. We have determined that a common insertion/deletion polymorphism of 80 kb, involving three VH gene segments, occurs in the VH region. The physical map suggests that the evolution of the human IGH gene complex involved duplication of blocks containing different VH families. This physical map will allow comparison of the usage of VH loci in human ontogeny with their proximity to the CH region. Knowledge of the germline repertoire of a particular DNA source studied in essential as the number of the dispersed VH gene segments of VH families, especially of the VH5 family, is variable. 2D-DE, as illustrated here for the IGH gene cluster, has general application in the development of large scale physical maps of gene and repeat families.

Chromosome Deletion

Partial purification and properties of branched-chain 2-oxo acid dehydrogenase of ox liver.

1. A branched-chain 2-oxo acid dehydrogenase was partially purified from ox liver mitochondria. 2. The preparation oxidized 4-methyl-2-oxopentanoate, 3-methyl-2-oxobutyrate and D- and L-3-methyl-2-oxopentanoate. The apparent Km values for the oxo acids and for thiamin pyrophosphate, CoA, NAD+ and Mg2+ were determined. 3. The oxidation of each oxo acid was inhibited by isovaleryl (3-methylbutyryl)-CoA (competitive with CoA) and by NADH (competitive with NAD+); Ki values were determined. 4. The preparation showed substrate inhibition with each 2-oxo acid. The oxidative decarboxylation of 4-methyl-2-oxo[1-14C]pentanoate was inhibited by 3-methyl-2-oxobutyrate and DL-3-methyl-2-oxopentanoate, but not by pyruvate. The Vmax. with 3-methyl-2-oxobutyrate as variable substrate was not increased by the presence of each of the other 2-oxo acids. 5. Ox heart pyruvate dehydrogenase did not oxidize these branched-chain 2-oxo acids and it was not inhibited by isovaleryl-CoA. The branched-chain 2-oxo acid dehydrogenase activity (unlike that of pyruvate dehydrogenase) was not inhibited by acetyl-CoA. 6. It is concluded that the branched-chain 2-oxo acid dehydrogenase activity is distinct from that of pyruvate dehydrogenase, and that a single complex may oxidize all three branched-chain 2-oxo acids.

Acyl Coenzyme A

A new personal sampler for organic vapors.

This paper describes the evaluation of a new personal sampler for organic vapors which is totally different from traditional sampling techniques using pumps and adsorption tubes. Sampling of organic vapors is effected by collection on an adsorption substrate contained within a small passive sampler worn by the worker. The collection element is removed from the sampler and subsequently analyzed for organic vapors. The results are equated with the time-weighted-average concentration of contaminants in air. This new sampling device circumvents inherent errors generally associated with sampling pumps and tubes; e.g., changes in pumping rates and variable pressure drops across adsorption tubes. Applications of the sampler were demonstrated on various concentrations of benzene, methyl isobutyl ketone, isooctane, butyl acetate, methyl chloroform, trichloroethylene, butanol and solvent mixtures. Variables studied included the effects of temperature, charcoal lot, and air velocities. In addition, the occurrence of "breakthrough" and effect of time on sample stability were investigated.

Air Pollutants

Biosynthetic pathway leading to gentamicin C2b.

Incubation of Micromonospora purpurea SC 1210 (NRRL 5467) with L-[methyl-14C]methionine yielded [methyl-14C]gentamicin A and methyl-14C-labeled antibiotic JI-20A in a molar radioactivity ratio of 9:2. We did not isolate methyl-14C-labeled gentamicin X2, which was expected as an intermediate based on the biosynthetic pathways proposed by others. Addition of methyl-14C-labeled antibiotic JI-20A to M. purpurea SC 1124 (NRRL 8102) yielded [methyl-14C]-gentamicin C1a and [methyl-14C]gentamicin C2b in variable molar radioactivity ratios. These data do not support the biosynthetic pathway leading to gentamicin C2b proposed by Testa and Tilley.

Fermentation

Lectin inhibition system for determination of concanavalin A glycoprotein complexes dissociation constants in agarose affinity electrophoresis.

A new system for lectin-glycoprotein complexes dissociation constants (K) determination is presented. The system is based on agarose affinity electrophoresis where equal lectin (Con A) concentrations are inhibited by variable specific sugar (alpha-methyl-mannoside) amounts. Moreover, the system allows lectin-sugar inhibition constants (Ki) studies. For determination of mechanisms as well as K and Ki values calculations mathematical equations are developed. Values of K for two variants of alpha 1 acid-glycoprotein, two variants of alpha 1-antitrypsin, one variant of alphafetoprotein and Ki for Con A-alpha-MM are calculated according to the introduced equations and compared in a computed system. Moreover, the influence of sugar on lectin-glycoproteins interaction is demonstrated and discussed.

Arthritis, Rheumatoid

Synthesis and hypoglycemic activity of pyridyl alcohols.

The potent hypoglycemic activity of 3-(3-methyl-2-pyridyl)propan-1-ol (1) prompted us to synthesize and study related structures. Some of the variables studied were the position of the methyl and alcohol side chains, the distance between the heterocyclic ring and the hydroxyl group, the effect of additional nuclear substitution, and the effects of branching and substitution on the alcohol side chain. The compounds were tested in 48-h fasted rats, usually at a dose of 150 mg/kg po. 1, the corresponding propionic acid 12, the acetate and methyl ether of 1 (22 and 23), and the 5-methyl analogue of 1 (29) were of comparable hypoglycemic potency. However, these compounds all caused a concomitant elevation of hepatic triglycerides and/or death in the test animals when observations were continued for 4--24 h.

Alcohols

Observations on altered hepatocellular foci in National Toxicology Program two-year carcinogenicity studies in rats.

Retrospective characterization of morphological and stereological features of altered hepatocellular foci (AHF) in hematoxylin & eosin (H&E)-stained sections was performed on 6 conventional 2-yr carcinogenicity studies conducted in Fischer 344 (F344) rats by the National Toxicology Program (NTP). In 3 of these studies where there was clear evidence of hepatocarcinogenicity [1-amino-2,4-dibromoanthraquinone (ADBAQ), C.I. Acid Red 114, methyl carbamate], there was greater morphological variability in AHF than in the studies of chemicals that were not hepatocarcinogenic [4-hydroxyacetanilide, epinephrine, dimethoxane]. In addition to having the expected types of AHF, rats treated with ADBAQ, C.I. Acid Red 114, and methyl carbamate had atypical basophilic AHF. In addition, atypical eosinophilic AHF were present in rats treated with ADBAQ. Both types of atypical AHF showed a morphological spectrum and sequential changes suggesting they could develop into hepatocellular neoplasms. For the 3 liver tumor positive studies, there were dose and time-dependent increases in stereological parameters for the atypical as well as commonly occurring clear, vacuolated, and mixed cell AHF. Consistent stereological changes were not found for commonly occurring basophilic and eosinophilic AHF. Aside from some decreases in stereological measurements in some rats treated with 4-hydroxyacetanilide and epinephrine, there were no significant quantitative changes in AHF in the three liver tumor negative studies. These results show that hepatocarcinogens may induce unique types of AHF in conventional 2-yr carcinogenicity/toxicity studies in rats and may cause quantitative increases in commonly occurring clear, vacuolated, and mixed cell AHF. Such qualitative and quantitative changes are potentially useful predictors of hepatic neoplasia.

Animals

Variability of Aspergillus niger after treatment with N-emthyl-N'-nitro-N-nitrosoguanidine.

N-Methyl-N'-nitro-N-nitrosoguanidine influences strongly the variability of Aspergillus niger MU 90, particularly on long-term treatment. The number of spores capable of growth decreases with the duration of treatment and the number of morphological and biochemical mutants considerably increases. The highest number of mutants with increased organic acid production was obtained after a mutagenic treatment when the number of surviving spores decreased below 1%.

Aspergillus niger

Cytosine-specific type II DNA methyltransferases. A conserved enzyme core with variable target-recognizing domains.

Comparisons of the amino acid sequences of m5C DNA methyltransferases (Mtases) from 11 prokaryotes and one eukaryote reveal a very similar organization. Among all the enzymes one can distinguish highly conserved "core" sequences and "variable" regions. The core sequences apparently mediate steps of the methylation reaction that are common to all the enzymes. The major variable region has been shown in our previous studies on multispecific phage Mtases to contain the target-recognizing domains (TRDs) of these enzymes. Here we have compared the amino acid sequences of various TRDs from phage Mtases. This has revealed the presence of both highly conserved and variable amino acids. We postulate that the conserved residues represent a "consensus" sequence defining a TRD, whereas the specificity of the TRD is determined by the variable residues. We have observed similarity between this consensus sequence and sequences in the variable region of the monospecific Mtases. We predict that the regions thus identified represent part of the TRDs of monospecific Mtases.

Amino Acid Sequence

How M.MspI and M.HpaII decide which base to methylate.

The HpaII methylase (M.HpaII) recognizes the sequence CCGG and methylates the inner cytosine residue. The MspI methylase (MspI) recognizes the same sequence but methylates the outer cytosine residue. Both methylases have the usual architecture of 10 well-conserved motifs surrounding a variable region, responsible for sequence specific recognition, that is quite different in the two methylases. We have constructed hybrids between these two methylases and studied their methylation properties. A hybrid containing the variable region and C-terminal sequences from M.MspI methylates the outer cytosine residue. A second hybrid identical to the first except that the variable region derives from the M.HpaII methylates the inner cytosine residue. Thus the choice of base to be methylated within the recognition sequence is determined by the variable region.

Base Sequence