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E Lee

Publications and source records attributed to E Lee.

At least 271 records · Page 15Linked to original sources

Mechanism of GTP hydrolysis by G-protein alpha subunits.

Hydrolysis of GTP by a variety of guanine nucleotide-binding proteins is a crucial step for regulation of these biological switches. Mutations that impair the GTPase activity of certain heterotrimeric signal-transducing G proteins or of p21ras cause tumors in man. A conserved glutamic residue in the alpha subunit of G proteins has been hypothesized to serve as a general base, thereby activating a water molecule for nucleophilic attack on GTP. The results of mutagenesis of this residue (Glu-207) in Gi alpha 1 refute this hypothesis. Based on the structure of the complex of Gi alpha 1 with GDP, Mg2+, and AlF-4, which appears to resemble the transition state for GTP hydrolysis, we believe that Gln-204 of Gi alpha 1, rather than Glu-207, supports catalysis of GTP hydrolysis by stabilization of the transition state.

Aluminum Compounds↗

Structures of active conformations of Gi alpha 1 and the mechanism of GTP hydrolysis.

Mechanisms of guanosine triphosphate (GTP) hydrolysis by members of the G protein alpha subunit-p21ras superfamily of guanosine triphosphatases have been studied extensively but have not been well understood. High-resolution x-ray structures of the GTP gamma S and GDP.AlF4- complexes formed by the G protein Gi alpha 1 demonstrate specific roles in transition-state stabilization for two highly conserved residues. Glutamine204 (Gln61 in p21ras) stabilizes and orients the hydrolytic water in the trigonal-bipyramidal transition state. Arginine 178 stabilizes the negative charge at the equatorial oxygen atoms of the pentacoordinate phosphate intermediate. Conserved only in the G alpha family, this residue may account for the higher hydrolytic rate of G alpha proteins relative to those of the p21ras family members. The fold of Gi alpha 1 differs from that of the homologous Gt alpha subunit in the conformation of a helix-loop sequence located in the alpha-helical domain that is characteristic of these proteins; this site may participate in effector binding. The amino-terminal 33 residues are disordered in GTP gamma S-Gi alpha 1, suggesting a mechanism that may promote release of the beta gamma subunit complex when the alpha subunit is activated by GTP.

Aluminum Compounds↗

Selective inhibition of dexamethasone-induced apoptosis in rat thymocytes by herbimycin A.

DNA fragmentation and cell death in rat thymocytes induced by dexamethasone were inhibited by herbimycin A but not by the other inhibitors of tyrosine kinase including genistein and tyrphostin. Herbimycin A also prevented the inter-nucleosomal DNA fragmentation induced by dexamethasone. On the contrary, apoptosis induced by DNA topoisomerase inhibitors such as camptothecin and etoposide were not affected by herbimycin A. These results demonstrate that dexamethasone-induced apoptosis is specifically inhibited by herbimycin A.

Animals↗

Crystallization and preliminary crystallographic studies of Gi alpha 1 and mutants of Gi alpha 1 in the GTP and GDP-bound states.

Several different crystal forms of Gi alpha 1 have been grown and analyzed. Crystals of native protein containing bound GTP gamma S belong to space group P3(1)2(1) or P3(2)2(1) with cell dimensions a,b = 80.6 A and c = 106.3 A and diffract to a resolution of 1.9 A using synchrotron radiation. Crystals of native protein containing bound GDP belong to space group I4 with cell dimensions a,b = 121.3 A, and c = 67.7 A and diffract to 3.0 A. Data sets from crystals grown using mutant proteins have also been obtained and characterized.

Crystallization↗

G protein beta gamma subunits. Simplified purification and properties of novel isoforms.

The beta and gamma subunits of heterotrimeric guanine nucleotide-binding regulatory proteins (G proteins) form tightly associated complexes. To examine functional differences among the large number of possible combinations of unique beta and gamma subunits, we have synthesized and characterized beta gamma complexes containing gamma 5 and gamma 7, two widely distributed gamma subunits. When either gamma 5 or gamma 7 is expressed concurrently with beta 1 or beta 2 subunits in a baculovirus/Sf9 cell system, all four subunit complexes support pertussis toxin-catalyzed ADP-ribosylation of rGi alpha 1 (where "r" indicates recombinant), indicating formation of functional complexes. Each of the complexes was purified by subunit exchange chromatography, using the G203A mutant of rGi alpha 1 as the immobilized ligand. The purified preparations were compared with other recombinant beta gamma subunits, including beta 1 gamma 1 and beta 1 gamma 2, for their ability to modulate type I and II adenylyl cyclase activities; stimulate phosphoinositide-specific phospholipase C beta; support pertussis toxin-catalyzed ADP-ribosylation of rGi alpha 1 and Go alpha; and inhibit steady-state GTP hydrolysis catalyzed by Gs alpha, Go alpha, and myristoylated rGi alpha 2. The results emphasize the unique properties of beta 1 gamma 1. The properties of the complexes containing gamma 5 or gamma 7 were similar to each other and to those of beta 1 gamma 2.

Adenylate Cyclase Toxin↗

Structure of the tomato Adh2 gene and Adh2 pseudogenes, and a study of Adh2 gene expression in fruit.

A cDNA library was constructed from RNA from the pericarp of ripe tomato fruit and four cDNAs encoding ADH2 were isolated and characterized. The cDNAs encode a peptide 379 amino acids in length. They hybridized strongly with a 1.8 kb RNA species well represented in RNA from ripe, but not from mature, unripe fruit, and strongly to a similar RNA species present in hypoxic, but not in aerobic roots. Northern analysis showed that the mRNA for ADH2 in fruit increased in abundance through ripening, particularly during late ripening. In pericarp tissue of fruit, the Adh2 mRNA level increased to a maximum within 8-16 h of exposure to atmospheres with 3% (v/v) oxygen, and returned to the basal level within 16 h of a return to air. The mRNA level was sensitive to the oxygen level in the atmosphere, increasing 20-fold in 12% (v/v) oxygen and 100-fold in 3% oxygen. The homologous tomato Adh2 gene was isolated from a genomic library. The gene has an overall length of 2334 bp from transcription start site to poly(A) addition site and includes eight introns. Southern blot analysis of tomato genomic DNA identified multiple Adh2-related sequences. Two of these, PSA1 and PSA2, were cloned and found to have 94% similarity with each other and 77% similarity with the tomato Adh2 gene over a 1000 bp region. The homologous regions include introns and exons but the equivalent exons contain frame shifts, deletions and stop codons. The two regions are therefore presumptive pseudogenes.

Alcohol Dehydrogenase↗

Biphasic modulation of choline uptake and phosphatidylcholine biosynthesis by vasopressin in rat cardiac myocytes.

The effect of vasopressin on choline uptake and phosphatidylcholine biosynthesis in isolated rat heart myocytes was investigated. Myocytes were incubated with labelled choline in the presence of 0.05-1.0 microM vasopressin. Uptake of choline was enhanced (25%) by a low concentration (0.2 microM) of vasopressin, but was attenuated (19%) by a higher vasopressin concentration (1.0 microM). The biosynthesis of phosphatidylcholine was also affected by vasopressin in a biphasic manner. At low concentrations of vasopressin, a general increase in cytosine triphosphate:phosphocholine cytidylyltransferase activity was observed that caused an enhanced conversion of phosphocholine to phosphatidylcholine via the cytidine diphosphocholine pathway. At high vasopressin concentrations, a decrease in the activity of cytidylyltransferase was detected, which was caused by the translocation of the enzyme from the microsomal fraction to the cytosolic fraction. The decrease in enzyme activity coincides with a reduction in the conversion of labelled phosphocholine to phosphatidylcholine. In view of the fact that phospholipid biosynthesis in rat hepatocytes is inhibited by vasopressin at all concentrations, the biphasic modulation of phosphatidylcholine biosynthesis in rat heart myocytes illustrates the diverse effects of this hormone in different mammalian tissues.

Animals↗

Metaanalysis of prophylactic drug treatment in the prevention of postoperative bleeding.

Prophylactic drug treatment is one of several strategies to reduce postoperative blood loss and potentially limit homologous blood use in open heart surgery. A computerized MEDLINE search supplemented with manual bibliography reviews was performed for randomized clinical trials published in peer-reviewed English-language journals from January 1980 to June 1993. A metaanalysis was conducted of trials evaluating desmopressin (group DD, n = 13), epsilon-aminocaproic acid or tranexamic acid (group EA, n = 4), and aprotinin (group AP, n = 16). Eligible studies used placebo controls and administered the drug in a prophylactic manner. The primary study end point was postoperative chest tube loss (mL, mean +/- standard deviation). There was a significant reduction in postoperative chest tube loss detected for each of the active treatments versus the placebo (DD versus controls: percent reduction 0.11, p = 0.0021; EA versus controls: percent reduction 0.30, p < 0.0001; and AP versus controls: percent reduction 0.36, p < 0.0001). Therapy with EA or AP was associated with a greater reduction in chest tube loss than DD (EA versus DD, p = 0.0033, and AP versus DD, p < 0.0001). Secondary study end points were transfusion requirements, chest reexploration, and perioperative mortality. The volume of postoperative red cell transfusion (mean +/- standard deviation) was reduced with EA (p < 0.0001) or AP treatment (p < 0.0001) compared with a placebo or DD, whereas the proportion of patients given transfusions was limited only in the AP-treated patients (odds ratio 0.23; 95% confidence interval, 0.16 to 0.33; p < 0.0001).(ABSTRACT TRUNCATED AT 250 WORDS)

Aminocaproic Acid↗

Effect of glutathione and its related enzymes on chemosensitivity of renal cell carcinoma and bladder carcinoma cell lines.

Glutathione and glutathione-related enzymes have been implicated in sensitivity of tumors to chemotherapeutic drugs. In the present study, glutathione and the activity of its related enzymes were quantitated in 4 renal cell carcinoma cell lines and 4 bladder carcinoma cell lines. The expression of glutathione-s-transferase pi and alpha in each cell line was analyzed by immunoblot analysis. The relationships between glutathione levels, glutathione peroxidase activity and glutathione-s-transferase activity and tumor sensitivity to cisplatinum, doxorubicin and vinblastine were determined by linear regression analysis. Glutathione levels were positively related to cisplatinum resistance in both renal cell carcinoma and bladder carcinoma cell lines and to doxorubicin resistance in bladder carcinoma cell lines. A positive correlation between glutathione peroxidase activity and doxorubicin resistance was identified in renal cell carcinoma cell lines, but no correlation was noted in bladder carcinoma cell lines. No significant correlation was apparent between glutathione-s-transferase activity and sensitivity to any of the drugs tested in this study. To further clarify the relationship between glutathione levels and the cytotoxicity of the drugs, we evaluated the effect of glutathione depletion by L-buthionine sulfoximine on the cytotoxicity of the drugs in bladder carcinoma cell lines. Glutathione depletion enhanced cisplatinum cytotoxicity 1.3- to 1.7-fold and doxorubicin cytotoxicity by 1.45- to 11.2-fold. Glutathione depletion did not change vinblastine cytotoxicity. The present study demonstrates that glutathione and its related enzymes affect sensitivity to cisplatinum or doxorubicin. The drug resistance mechanism elicited by glutathione and its related enzymes in these tumors needs further elucidation so that chemotherapeutic regimens may be modified.

Carcinoma, Renal Cell↗

Middle generation roles and the well-being of men and women.

Sociological literature on gender, work, and families has focused on both conflict and benefits created by combining the spouse, parent, and paid worker roles, whereas research by family gerontologists has focused on stress experienced by those who provide care to frail elderly parents as well as other roles associated with being in the "middle generation." We examine consequences of adding middle generation roles to other major life roles during the middle years. We find that giving help to parents increases men's distress, while giving help to adult children enhances women's well-being. When help to biological parents is examined separately, it is found to increase both men's and women's distress. Women are unaffected by the multiplicity of roles while, for men, there is evidence of both role buffering and strain from conflicting demands. We discuss further directions for research on consequences of roles for well-being.

Adult↗

Isolation, phenotypic characterization, and complementation analysis of mutants of Methylobacterium extorquens AM1 unable to synthesize pyrroloquinoline quinone and sequences of pqqD, pqqG, and pqqC.

Aerobic gram-negative methylotrophs oxidize methanol to formaldehyde by using a methanol dehydrogenase that has pyrroloquinoline quinone (PQQ) as a prosthetic group. Seventy-two mutants which are unable to grow on methanol unless the growth medium is supplemented with PQQ have been isolated in the facultative methanol utilizer Methylobacterium extorquens AM1. In addition, 12 previously isolated methanol oxidation mutants of M. extorquens AM1 were shown to be able to grow on methanol in the presence of PQQ. These putative PQQ biosynthesis mutants have been complemented by using previously isolated clones containing M. extorquens AM1 DNA, which were known to contain genes necessary for oxidation of methanol to formaldehyde (mox genes). Subcloning and transposon mutagenesis experiments have assigned these mutants to five complementation groups in two gene clusters. Representatives of each complementation group were shown to lack detectable PQQ in the growth medium and in cell extracts and to contain methanol dehydrogenase polypeptides that were inactive. Therefore, these mutants all appear to be defective in PQQ biosynthesis. PQQ biosynthesis mutants of Methylobacterium organophilum DSM 760 and M. organophilum XX were complemented by using M. extorquens AM1 subclones, and PQQ biosynthesis mutants of M. extorquens AM1 and M. organophilum XX were complemented by using M. organophilum DSM 760 subclones. This analysis suggested that a total of six PQQ biosynthesis complementation groups were present in M. extorquens AM1 and M. organophilum DSM 760. A 2-kb M. extorquens AM1 DNA fragment that complemented the MoxO class of PQQ biosynthesis mutants was sequenced and found to contain two complete open reading frames and the N-terminal sequence of a third. These genes designated pqqDGC, had predicted gene products with substantial similarity to the gene products of corresponding pqq genes in Acinetobacter calcoaceticus and Klebsiella pneumoniae. pqqD encodes a 29-amino-acid peptide which contains a tyrosine residue and glutamate residue that are conserved in the equivalent peptides of K. pneumoniae, PqqA (23 amino acids), and A. calcoaceticus, PqqIV (24 amino acids), and are thought to be the precursors for PQQ biosynthesis. The organizations of a cluster of five PQQ biosynthetic genes appear to be similiar in four different bacteria (M. extorquens AM1, M. organophilum DSM 760, K. pneumoniae, and A. calcoaceticus). Our results show that a total of seven pqq genes are present in M. extorquens AM1, and these have been designated pqqDGCBA and pqqEF.

Amino Acid Sequence↗

Preserved leftward movement in left unilateral spatial neglect due to frontal lesions.

Three patients with left unilateral spatial neglect after predominantly frontal lobe lesions were asked to extend a horizontal line leftwards to double its original length. In this line extension task, they readily executed movements in or towards the contralesional left space. They performed the task in the left and right hemispaces as well as in the midline. The mean extension lengths did not differ significantly among these three spatial conditions. These results suggest that directional hypokinesia takes little part in left unilateral spatial neglect due to frontal lobe lesions. It is considered that the patients could execute leftward movements as the task oriented their attention sufficiently to the left. Two of the three patients, like reported cases with frontal neglect, showed a typical exploratory deficit for the left space in the line cancellation test. Such a deficit found in the traditional tasks, however, does not mean the presence of directional hypokinesia. All three patients showed visual extinction on double simultaneous stimulation. An attentional mechanism seems to play a predominant part in unilateral spatial neglect due to frontal lesions.

Aged↗

Urinary N-acetyl-beta-D-glucosaminidase activity in workers exposed to inorganic lead.

Urinary N-acetyl-beta-D-glucosaminidase (NAG) had been shown to be a useful early marker of renal injury. In workers exposed to lead it seems to be the only early marker but the dose response and dose effect relations are weak. Furthermore, the significance and underlying mechanism of increased urinary NAG activity is far from clear. By studying the isoenzyme profiles of urinary NAG, the significance and underlying mechanism may be further clarified. The heat labile (NAG-A) and heat stable (NAG-B) isoenzyme profiles of 128 workers exposed to lead from a lead stabiliser factory were analysed. NAG activity was expressed as total NAG, NAG-A, and NAG-B activity as well as ratios (NAG-B/total NAG and NAG-B/NAG-A). Exposure indices included the recent concentration of blood lead (BPb), a cumulative blood lead index (TBPb), and the recent change in concentration of blood lead (CBPb). The NAG indices correlated best with CBPb. Nearly 50% of the variation in NAG-B activity could be explained by the combination of all three exposure indices but only the CBPb was highly significant. When these exposure indices were entered separately into the regression equation, CBPb accounted for 36.3% of the variation in NAG-B activity, 5.7% was accounted for by TBPb and 2.7% by BPb. There was also no dose-effect or dose-response relation between the NAG variables and BPb or TBPb groups. With CBPb, there were dose-effect and dose-response relations. With CBPb, there was an increase in NAG variables in the group with more than 25% increase in blood lead over the past six months. The increase in NAG activity in this study is likely to be due to a recent increase in concentration of blood lead and hence presumably a recent rise in renal burden of inorganic lead. This suggests that the increase in urinary NAG activity is a form of acute response to a sharp increase in renal burden of lead, rather than to a cumulative dose. Heat stable NAG is part of the lysosomal membrane and is present in the urine when there is breakdown of lysosomes. Our data therefore contradict suggestions that the increase in urinary NAG activity is due to exocytosis.

Adult↗

Altered sensitivity to low dose dexamethasone in a subset of patients with premature adrenarche.

During adrenarche, levels of adrenal androgens increase. Although the regulatory mechanisms of adrenarche and premature adrenarche (PA) are not fully understood, it has been suggested that, unlike the cortisol (F) response to glucocorticoid suppression, which is not age dependent, before adrenarche the major adrenal androgen, dehydroepiandrosterone sulfate, is not suppressible by glucocorticoid. As these studies were performed using long term, high dose glucocorticoids, we sought to evaluate the F and adrenal androgen or androgen precursor suppression in response to low dose glucocorticoids [a single evening dose of dexamethasone (DEX), 0.3 mg/m2]. Twenty-four children (aged 1.3-8.75 yr; 4 males and 20 females) known to have PA, as determined by their response to ACTH-(1-24) (Cortrosyn; 0.25 mg, given by iv bolus), were studied. The children with PA could be divided into two groups, as defined by their morning F level after DEX administration: group I (n = 12), F levels below 5 micrograms/dL; and group II (n = 12), F levels of 5 micrograms/dL or more. Although the mean baseline values of F, testosterone, dehydroepiandrosterone, delta 4-androstenedione, 17-hydroxyprogesterone, and delta 5-17-hydroxypregnenolone did not differ between groups I and II, the mean levels in group I vs. group II of dehydroepiandrosterone, delta 4-androstenedione, and delta 5-17-hydroxypregnenolone were significantly greater in response to ACTH and lower in response to DEX (P < 0.05). Although no clinical difference was noted between the 2 groups, the mean SD for bone age adjusted for chronological age was greater and approached significance in group I, suggesting a greater degree of biological maturity in this group. These results suggest an increased sensitivity of the hypothalamic-pituitary-adrenal axis to changes in ACTH secretion in this subgroup of patients with PA.

Adrenal Glands↗

Decrease in myeloperoxidase during differentiation of bone marrow cells by colony-stimulating factor.

Granulocyte-macrophage colony-stimulating factor (GM-CSF) induced the proliferation and differentiation of bone marrow cells of normal mice with a concomitant loss of myeloperoxidase activity. The decrease in the enzyme activity was due to a reduced level in the bone marrow cells. These findings indicate that myeloperoxidase is not merely a marker, but may also play a role in the differentiation of stem cells into granulocytes.

Animals↗

Image enhancement for the visually impaired: the effects of enhancement on face recognition.

Image enhancement has been shown to improve face recognition by visually impaired observers. We conducted three experiments in an effort to refine our understanding of the parameters leading to this effect. In experiment 1 we found that the band of spatial frequencies between 4 and 8 cycles/face is critical for face recognition. In experiment 2 we found that enhancement of these frequencies and the resulting image distortion actually reduced recognition performance for normal observers. Since the degradation of performance by low vision is larger than the effect of distortion, the enhancement that reduces performance for normal observers may still be beneficial for the visually impaired observer. Experiment 3 found that patients tend to prefer images enhanced at frequencies higher than the critical frequencies found in experiment 1. Such individually selected enhancement did not improve recognition in comparison with uniformly applied enhancement. The lack of an enhancement effect may be due to the small variability in enhancement frequencies selected by our subject population.

Adult↗