PubMed HealthSearch

Biomedical subjects

R L Levine

Publications and source records attributed to R L Levine.

At least 19 recordsLinked to original sources

Loss of the ataxia-telangiectasia gene product causes oxidative damage in target organs.

Ataxia-telangiectasia (A-T) is characterized by a markedly increased sensitivity to ionizing radiation, increased incidence of cancer, and neurodegeneration, especially of the cerebellar Purkinje cells. Ionizing radiation oxidizes macromolecules and causes tissue damage through the generation of reactive oxygen species (ROS). We therefore hypothesized that A-T is due to oxidative damage resulting from loss of function of the A-T gene product. To assess this hypothesis, we employed an animal model of A-T, the mouse with a disrupted Atm gene. We show that organs which develop pathologic changes in the Atm-deficient mice are targets of oxidative damage, and that cerebellar Purkinje cells are particularly affected. These observations provide a mechanistic basis for the A-T phenotype and lay a rational foundation for therapeutic intervention.

Animals

Thiols mediate superoxide-dependent NADH modification of glyceraldehyde-3-phosphate dehydrogenase.

Glyceraldehyde-3-phosphate dehydrogenase (GAPDH) is covalently modified by NAD in the presence of nitric oxide (NO) and dithiothreitol. Replacement of NAD with NADH in the presence of SIN-1 (3-morpholinosydnonimine) and dithiothreitol increased modification 25-fold. We now demonstrate that in contrast to NO-mediated attachment of NAD, covalent attachment of NADH to GAPDH proceeds in the presence of low molecular weight thiols, independent of NO. Removal of oxygen and transition metal ions inhibited modification, consistent with a role for reactive oxygen species; inhibition by superoxide dismutase, stimulation by xanthine oxidase/hypoxanthine, and the lack of an effect of catalase supported the hypothesis that superoxide, generated from thiol oxidation, was involved. Electrospray mass spectrometry showed covalent linkage of the NADH molecule to GAPDH. Characterization of the product of phosphodiesterase cleavage demonstrated that linkage to GAPDH occurred through the nicotinamide of NADH. Lys-C digestion of GAPDH, followed by peptide isolation by high performance liquid chromatography, matrix-assisted laser desorption ionization time-of-flight analysis, and Edman sequencing, demonstrated that NADH attachment occurred at Cys-149, the active-site thiol. This thiol linkage was stable to HgCl2. Thus, linkage of GAPDH to NADH, in contrast to NAD, occurs in the presence of thiol, is independent of NO, and is mediated by superoxide.

Animals

Peroxynitrite-mediated modification of proteins at physiological carbon dioxide concentration: pH dependence of carbonyl formation, tyrosine nitration, and methionine oxidation.

The ability of peroxynitrite to modify amino acid residues in glutamine synthetase (GS) and BSA is greatly influenced by pH and CO2. At physiological concentrations of CO2 (1.3 mM), the generation of carbonyl groups (0.2-0.4 equivalents/subunit) is little affected by pH over the range of 7.2-9.0, but, in the absence of CO2, carbonyl formation increases (from 0.1- 1.2 equivalents/subunit) as the pH is raised from 7.2 to 10.5. This increase is attributable, in part but not entirely, to the increase in peroxynitrite (PN) stability with increasing pH. Of several amino acid polymers tested, only those containing lysine residues yielded carbonyl derivatives. In contrast, the nitration of tyrosine residues of both GS and BSA at pH 7.5 almost completely depends on the presence of CO2. However, the pH profiles of tyrosine nitration in GS and BSA are not the same. With both proteins, nitration decreases approximately 65% with increasing pH over the range of 7.2-8.4, but, then in the case of GS only, there is a 3.4-fold increase in the level of nitration over the range pH 8.4-8.8. The oxidation of methionine residues in both proteins and in the tripeptide Ala-Met-Ala was inhibited by CO2 at both high and low pH values. These results emphasize the importance of controlling the pH and CO2 concentrations in studies involving PN and indicate that PN is not likely to contribute appreciably to carbonyl formation or oxidation of methionine residues of proteins at physiological pH and CO2 concentrations.

Carbon Dioxide

Modification of cysteine residues in vitro and in vivo affects the immunogenicity and antigenicity of major histocompatibility complex class I-restricted viral determinants.

In studying the subdominant status of two cysteine-containing influenza virus nuclear protein (NP) determinants (NP39-47 and NP218-226) restricted by H-2Kd, we found that the antigenicity of synthetic peptides was enhanced 10-100-fold by treatment with reducing agents, despite the fact that the affinity for Kd was not enhanced. Reducing agents also markedly enhanced the immunogenicity of cysteine-containing peptides, as measured by propagation of long-term T cell lines in vitro. Similar enhancing effects were obtained by substituting cysteine with alanine or serine in the synthetic peptides, demonstrating that sulfhydryl modification of cysteine is responsible for the impaired antigenicity and immunogenicity of NP39-47 and NP218-226. We found similar effects for two widely studied, cysteine-containing peptides from lymphocytic choriomeningitis virus. The major modifications of cysteine-containing synthetic peptides are cysteinylation and dimerization occurring through cysteine residues. We demonstrate that both of these modifications occur in cells synthesizing a cytosolic NP218-226 minigene product and, further, that T cells specific for cysteinylated NP218-226 are induced by influenza virus infection in mice, demonstrating that this modification occurs in vivo. These findings demonstrate that posttranslational modifications affect the immunogenicity and antigenicity of cysteine-containing viral peptides and that this must be considered in studying the status of such peptides in immunodominance hierarchies.

Amino Acid Sequence

Methionine residues may protect proteins from critical oxidative damage.

Cysteine and methionine are the two sulfur-containing residues normally found in proteins. Cysteine residues function in the catalytic cycle of many enzymes, and they form disulfide bonds which contribute to protein structure. In contrast, the key functions of methionine residues are not known. We propose that methionine residues constitute an important antioxidant defense mechanism. A variety of oxidants react readily with methionine to form methionine sulfoxide, and surface exposed methionine residues create an extremely high concentration of reactant, providing for efficient scavenging of oxidants. The effect of hydrogen peroxide exposure upon glutamine synthetase from Escherichia coli was studied as an in vitro model system. Eight of the sixteen methionine residues could be oxidized with little effect on activity. The oxidizable methionine residues were found to be relatively surface exposed while the intact residues were generally buried within the core of the protein. Further, the susceptible residues were physically arranged in an array which guarded the entrance to the active site. Methionine sulfoxide can be reduced back to methionine by the enzyme methionine sulfoxide reductase, providing a catalytic amplification of the antioxidant potential of each methionine residue. Given the importance of oxidative stress during aging, the potential function of methionine residues as antioxidants during aging should be investigated experimentally.

Antioxidants

Molecular cloning and characterization of a mitochondrial selenocysteine-containing thioredoxin reductase from rat liver.

A thioredoxin reductase (TrxR), named here TrxR2, that did not react with antibodies to the previously identified TrxR (now named TrxR1) was purified from rat liver. Like TrxR1, TrxR2 was a dimeric enzyme containing selenocysteine (Secys) as the COOH-terminal penultimate residue. A cDNA encoding TrxR2 was cloned from rat liver; the open reading frame predicts a polypeptide of 526 amino acids with a COOH-terminal Gly-Cys-Secys-Gly motif provided that an in-frame TGA codon encodes Secys. The 3'-untranslated region of the cDNA contains a canonical Secys insertion sequence element. The deduced amino acid sequence of TrxR2 shows 54% identity to that of TrxR1 and contained 36 additional residues upstream of the experimentally determined NH2-terminal sequence. The sequence of this 36-residue region is typical of that of a mitochondrial leader peptide. Immunoblot analysis confirmed that TrxR2 is localized almost exclusively in mitochondria, whereas TrxR1 is a cytosolic protein. Unlike TrxR1, which was expressed at a level of 0.6 to 1.6 microgram/milligram of total soluble protein in all rat tissues examined, TrxR2 was relatively abundant (0.3 to 0.6 microgram/mg) only in liver, kidney, adrenal gland, and heart. The specific localization of TrxR2 in mitochondria, together with the previous identification of mitochondria-specific thioredoxin and thioredoxin-dependent peroxidase, suggest that these three proteins provide a primary line of defense against H2O2 produced by the mitochondrial respiratory chain.

Amino Acid Sequence

Laparoscopy in morbidly obese patients.

STUDY OBJECTIVE: To assess the safety and efficacy of different insufflation methods in morbidly obese women undergoing laparoscopy. DESIGN: Retrospective analysis of 13 years' experience (Canadian Task Force classification II-2). SETTING: University-affiliated hospital. PATIENTS: One hundred thirty-eight morbidly obese women (weight >250 lbs, body mass index >36). The heaviest patient weighed 400 lbs and had a body mass index of 66. INTERVENTION: Laparoscopic tubal sterilizations and diagnostic laparoscopies performed on an outpatient basis by residents under faculty supervision. MEASUREMENTS AND MAIN RESULTS: Of 138 patients, 36 underwent standard transumbilical insufflation with 5 failures, 83 had transuterine insufflation with 3 failures, 12 had subcostal insufflation with 1 failure, and 7 had open laparoscopy with 2 failures. CONCLUSION: The insufflation failure rate was significantly high for transumbilical insufflation and open laparoscopy, and not for transuterine or subcostal insufflation. Morbid obesity was not a contraindication to laparoscopy. (J Am Assoc Gynecol Laparosc 6(3):307-312, 1999)

Adult

Influence of age upon complications of carotid artery stenting. UAB Neurovascular Angioplasty Team.

PURPOSE: To examine the impact of age upon the development of neurological and major systemic complications during or after carotid artery stenting. METHODS: We reviewed the complications that occurred in patients undergoing elective carotid stent implantation between September 1994 and August 1996. The study population was then divided into 3 groups according to age: > or = 80 (group A), 75 to 79 (group B), and < or = 74 (group C) years. The rates of death, major and minor stroke, and myocardial infarction were compared among the groups, as well as with the rates reported by the major carotid endarterectomy (CEA) trials. RESULTS: During the study period, 182 patients (216 vessels) were treated with carotid stenting. There were 19 (10.4%) complications: 1 (0.5%) death, 2 (1.1%) major strokes, 15 (8.2%) minor strokes, and 1 (0.5%) myocardial infarction. Neurological complications were clearly related to increased age with rates of 25.0% in group A versus 8.6% in group C (p = 0.042). The overall per patient rate of death or major stroke was 1.6% (1.4% per vessel). CONCLUSIONS: Increasing age has a negative impact on the rate of complications in carotid stent patients. However, the majority of those complications are minor. The relative roles of medical therapy, stenting, and CEA in patients > 80 years of age must await the results of randomized trials.

Age Factors

The levels of retinal mRNA for gefiltin, a neuronal intermediate filament protein, are regulated by the tectum during optic fiber regeneration in the goldfish.

Reorganization of the intermediate filament (IF) network during axonal regeneration is accompanied by changes in the expression of various IF proteins. An increase in expression of the neuronal IF subunit gefiltin in goldfish retinal ganglion cells (RGCs) has been linked to the unique ability of the goldfish optic nerve to regenerate following injury. Evidence suggests that the optic tectum, the target of optic fibers, may regulate the expression of gefiltin during regeneration. To address this issue we examined gefiltin mRNA levels during optic fiber regeneration in the presence or absence of the tectum. We found that gefiltin mRNA levels in the RGCs of animals that received an optic nerve crush (ONC group) began increasing by 10 days, peaked from 20 to 38 days at 5.5-fold over normal, and declined to near normal values by 115 days. In animals that had the entire tectum removed as well as an optic nerve crush (ETR group), gefiltin mRNA levels increased by 10 days, peaked at 20 days at 5.5 to 6.5-fold over normal, and although they dropped slightly thereafter, they remained elevated at 5-fold over normal for at least 115 days. When axons regenerated to the ipsilateral tectal lobe as a result of a left tectal lobe removal and left eye removal surgery (LTR/LER group), the expression pattern of gefiltin mRNA paralleled that of the ONC group. We also found that the abundance of gefiltin subunits in the retina was elevated at 30 days of regeneration in ONC and ETR animals, and that levels in the nerve were reconstituted to 80% of normal by 30 days. These results demonstrate that increases in gefiltin mRNA and protein levels during optic nerve regeneration are independent of the tectum, whereas the downregulation of gefiltin mRNA levels in the late stages of regeneration is entirely dependent upon the tectum.

Animals

PTEN mutations and microsatellite instability in complex atypical hyperplasia, a precursor lesion to uterine endometrioid carcinoma.

The two most common types of genetic alterations yet identified in uterine endometrioid carcinoma (UEC) are PTEN mutations and microsatellite instability (MI). Furthermore, MI-positive UECs (defined as tumors with detectable alterations at two or more different microsatellite loci) are significantly more likely to contain PTEN mutations than are MI-negative UECs. To determine whether PTEN inactivation is a relatively early event in endometrial tumorigenesis, we evaluated complex atypical hyperplasia (CAH), the direct precursor to UEC, for the presence of PTEN mutations. Mutations were present in 3 of 11 (27%) CAHs with synchronous UEC and in 4 of 18 (22%) CAHs that were not associated with invasive carcinoma. One case with synchronous CAH and UEC contained a germ-line PTEN mutation. In addition, we evaluated the same series of CAHs for MI. We identified four MI-positive CAHs with synchronous UEC but did not detect the MI phenotype in any CAHs without associated invasive carcinoma. A PTEN-mutant (germ-line mutation) MI-negative CAH was synchronous with a PTEN-mutant MI-positive UEC. These results suggest that mutation of PTEN can be an early event in the pathogenesis of UEC and may precede the development of the MI phenotype in a subset of cases.

Carcinoma, Endometrioid

Iron-dependent oxidation, ubiquitination, and degradation of iron regulatory protein 2: implications for degradation of oxidized proteins.

The ability of iron to catalyze formation of reactive oxygen species significantly contributes to its toxicity in cells and animals. Iron uptake and distribution is regulated tightly in mammalian cells, in part by iron regulatory protein 2 (IRP2), a protein that is degraded efficiently by the proteasome in iron-replete cells. Here, we demonstrate that IRP2 is oxidized and ubiquitinated in cells before degradation. Moreover, iron-dependent oxidation converts IRP2 into a substrate for ubiquitination in vitro. A regulatory pathway is described in which excess iron is sensed by its ability to catalyze site-specific oxidations in IRP2, oxidized IRP2 is ubiquitinated, and ubiquitinated IRP2 subsequently is degraded by the proteasome. Selective targeting and removal of oxidatively modified proteins may contribute to the turnover of many proteins that are degraded by the proteasome.

Animals

Carbon dioxide stimulates peroxynitrite-mediated nitration of tyrosine residues and inhibits oxidation of methionine residues of glutamine synthetase: both modifications mimic effects of adenylylation.

The activity of glutamine synthetase (EC 6.3.1.2) from Escherichia coli is regulated by the cyclic adenylylation and deadenylylation of Tyr-397 in each of the enzyme's 12 identical subunits. The nitration of Tyr-397 or of the nearby Tyr-326 by peroxynitrite can convert the unadenylylated enzyme to a form exhibiting regulatory characteristics similar to the form obtained by adenylylation. The adenylylated conformation can also be elicited by the oxidation of surface-exposed methionine residues to methionine sulfoxide. However, the nitration of tyrosine residues and the oxidation of methionine residues are oppositely directed by the presence and absence of CO2. At physiological concentrations of CO2, pH 7.4, nitration occurs but oxidation of methionine residues is inhibited. Conversely, in the absence of CO2 methionine oxidation is stimulated and nitration of tyrosine is prevented. It was further established that adenylylation of Tyr-397 precludes its nitration by peroxynitrite. Furthermore, nitration of Tyr-326 together with either nitration or adenylylation of Tyr-397 leads to inactivation of the enzyme. These results demonstrate that CO2 can alter the course of peroxynitrite-dependent reactions and serve notice that (i) the reactions have physiological significance only if they are shown to occur at physiological concentrations of CO2 and physiological pH; and (ii) the peroxynitrite-dependent nitration of tyrosine residues or the oxidation of methionine residues of metabolically regulated proteins can seriously compromise their biological function.

Adenosine Monophosphate

Extrachromosomal unequal homologous recombination and gene conversion in simian kidney cells: effects of UV damage.

Shuttle plasmid vectors containing the SV40 origin of replication and tandem neo genes with distally placed non-overlapping deletions were used to study the effects of DNA damage on extrachromosomal homologous recombination in simian kidney cells. DNA was introduced into COS7 cells by a lipofectin-mediated transfection procedure and recombination was assessed by analyzing the structure of plasmids. Recombinational events observed included unequal homologous recombination (triplication), gene conversion, double reciprocal recombination, deletion (pop-outs), gene amplification (4-6 copies), and multimerization. Triplication, an event that previously had not been reported in association with extrachromosomal recombination, predominated in experiments with undamaged vectors. The recombination frequency (NeoR/AmpR) of vectors randomly damaged by UV irradiation was essentially unchanged; however, the relative number of triplication events decreased significantly. Selective damage in one of the two neo genes increased the relative frequency of gene conversion. The experimental system developed for use in this study detects all major homologous recombination events observed in chromosomal direct repeat sequences in mammalian cells and yeast and should prove valuable for future studies of homologous recombination in mammalian cells.

Animals

Recurrent ischemic strokes in a patient with Medtronic-Hall prosthetic aortic valve and valve strands.

Fine strands associated with prosthetic heart valves have been demonstrated with transesophageal echocardiography, but the pathologic identity of these strands is unclear. A case of a man with a prosthetic aortic Medtronic-Hall valve with prominent valve strands and recurrent strokes is discussed. The patient underwent valve replacement surgery, and histopathologic examination of the strands identified them as Lambl's excrescences.

Aortic Valve

Tortuosity of carotid and vertebral arteries: a magnetic resonance angiographic study.

Nine patients (group A) were found on magnetic resonance angiography (MRA) to have excessive carotid artery, vertebral artery, and vertebrobasilar junction tortuosity. A control group (group B) were age- and sex-matched to group A patients, were selected randomly from our MRA or stroke data banks, and had not undergone MRA for evaluation of migraine, "carotidynia," or pulsatile tinnitus. Factors more prevalent in group A patients included migraine, chronic daily headache, carotidynia, pulsatile tinnitus, and a positive family history of headache. Factors more prevalent in group B patients included a positive family history of stroke, large-vessel atherosclerosis, and scan evidence of ischemic infarctions; many group B patients had undergone MRA for stroke or transient ischemic attack evaluation. Men were slightly underrepresented at 44%, and were younger than women (34 +/- 6 years vs. 43 +/- 3 years; p = 0.01). Relationships in this preliminary study between arterial tortuosity and migraine seem evident.

Adult