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Expression of a cytokeratin 18 neo-epitope is a specific marker for trophoblast apoptosis in human placenta.

In epithelial cells the caspase-mediated cleavage of cytokeratin 18 during apoptosis leads to the formation of a specific neo-epitope, recognized by the antibody M30. To test whether this antibody can be used as a specific marker for apoptotic trophoblast, we have stained serial sections of villi and junctional zone of first and third trimester human placenta with antibodies against cytokeratins 7 and 18, and against active caspase 3, with M30 and with the TUNEL reaction. Comparison of M30 immunoreactivities with TUNEL positivity and immunoreactivities for cytokeratins 7 and 18 clearly demonstrates that M30 specifically labels late apoptotic trophoblast cells. This finding is supported by the fact that in trophoblast, M30 immunoreactivities largely overlap with those for active caspase 3. As compared to the TUNEL test, the M30 immune reaction appears to be a highly reproducible marker for apoptotic trophoblast. This antibody stains a larger number of cells within the apoptosis cascade as compared to the TUNEL reaction, since cytokeratin 18 cleavage starts earlier than cleavage of DNA and since endonuclease activation can be bypassed in some trophoblast cells. The data suggest that M30 is superior to the TUNEL reaction as a marker for the detection of trophoblast apoptosis since it is easier to handle, more specific for apoptosis and less prone to artifacts.

Adult↗

Carbon monoxide rescues ischemic lungs by interrupting MAPK-driven expression of early growth response 1 gene and its downstream target genes.

Carbon monoxide (CO), an endogenous cytoprotective product of heme oxygenase type-1 regulates target thrombotic and inflammatory genes in ischemic stress. Regulation of the gene encoding early growth response 1 (Egr-1), a potent transcriptional activator of deleterious thrombotic and inflammatory cascades, may govern CO-mediated ischemic lung protection. The exact signaling mechanisms underlying CO-mediated cytoprotection are not well understood. In this study we tested the hypothesis that inhibition of mitogen-activated protein kinase-dependent Egr-1 expression may be pivotal in CO-mediated ischemic protection. In an in vivo isogeneic rat lung ischemic injury model, inhaled CO not only diminished fibrin accumulation and leukostasis and improved gas exchange and survival but also suppressed extracellular signal-regulated kinase (ERK) activation, Egr-1 expression, and Erg DNA-binding activity in lung tissue. Additionally, CO-mediated inhibition of Egr-1 reduced expression of target genes, such as tissue factor, serpine-1, interleukin-1, and TNF-alpha. However, CO failed to inhibit serpine-1 expression after unilateral lung ischemia in mice null for the Egr-1 gene. In RAW macrophages in vitro, hypoxia-induced Egr-1 mRNA expression was ERK-dependent, and CO-mediated suppression of ERK activation resulted in Egr-1 inhibition. Furthermore, CO suppression of ERK phosphorylation was reversed by the guanylate cyclase inhibitor 1H-[1,2,4]oxadiazolo[4,3-a]quinoxalin-1-one but was insensitive to cAMP-dependent protein kinase A inhibition with H89 and NO synthase inhibition with l-nitroarginine methyl ester. This finding indicates that CO suppresses ERK in a cGMP-dependent but cAMP/protein kinase A- and NO-independent manner. Together, these data identify a unifying molecular mechanism by which CO interrupts proinflammatory and prothrombotic mediators of ischemic injury.

Animals↗

Membrane-permeant esters of phosphatidylinositol 3,4,5-trisphosphate.

Phosphoinositide 3-OH kinases and their products, D-3 phosphorylated phosphoinositides, are increasingly recognized as crucial elements in many signaling cascades. A reliable means to introduce these lipids into intact cells would be of great value for showing the physiological roles of this pathway and for testing the specificity of pharmacological inhibitors of the kinases. We have stereospecifically synthesized di-C8-PIP3/AM and di-C12-PIP3/AM, the heptakis(acetoxymethyl) esters of dioctanoyl- and dilauroylphosphatidylinositol 3,4,5-trisphosphate, in 14 steps from myo-inositol. The ability of these uncharged lipophilic derivatives to deliver phosphatidylinositol 3,4,5-trisphosphate across cell membranes was demonstrated on 3T3-L1 adipocytes and T84 colon carcinoma monolayers. Insulin stimulation of hexose uptake into adipocytes was inhibited by the kinase inhibitor wortmannin and was largely restored by di-C8-PIP3/AM, which had no effect in the absence of insulin. Thus phosphatidylinositol 3,4,5-trisphosphate or a metabolite was necessary but not sufficient for stimulation of hexose transport. In T84 epithelial monolayers, di-C12-PIP3/AM mimicked epidermal growth factor in inhibiting chloride secretion and potassium efflux, suggesting that phosphatidylinositol 3,4, 5-trisphosphate was sufficient to modulate these fluxes and mediate epidermal growth factor's action.

3T3 Cells↗

Expression of angiogenic factor Cyr61 during neuronal cell death via the activation of c-Jun N-terminal kinase and serum response factor.

The immediate early gene, cyr61, is transcriptionally activated within minutes by serum and serum growth factors. The encoded Cyr61 protein is secreted into the extracellular matrix and promotes cell adhesion and migration. In this study, we sought to examine the expression profile of cyr61 gene during neuronal cell death induced by various toxic stimuli and the mechanisms involved. Our data show that toxic stimuli, such as etoposide, significantly increased cyr61 mRNA levels in immortalized hippocampal progenitor (H19-7) cells. Cyr61 transcriptional activation was corroborated at the protein level as well. To identify the upstream signaling cascades involved in cyr61 gene induction, the blocking effect of either JNK or p38 kinase-signaling pathway on cyr61 induction in response to etoposide was tested. Transfection of the cells with a kinase-deficient mutant MEKK, an upstream activator of JNK, significantly decreased the cyr61 expression induced by etoposide. In contrast, cyr61 mRNA levels did not change after pretreatment with SB203580, the p38 kinase inhibitor. When the induction of cyr61 was tested by using several of its deleted promoters driving the expression of reporter gene, the promoter activation occurred primarily within the region containing an SRE-like CArG box. In addition, the SRF, which binds to the CArG site, was directly phosphorylated by active JNK. Furthermore, the blockade of cyr61 gene expression using an antisense encoding cyr61 sequence significantly inhibited the cell death induced by etoposide. Overall, these results suggest that the induction of the immediate early gene, cyr61, is important for neuronal cell death in the central nervous system hippocampal progenitor cells, and JNK activation, but not of p38, as well as the subsequent SRF phosphorylation are involved in cyr61 gene induction.

Animals↗

Correlation between checkpoint activation and in vivo assembly of the yeast checkpoint complex Rad17-Mec3-Ddc1.

Rad17-Mec3-Ddc1 forms a proliferating cell nuclear antigen-like complex that is required for the DNA damage response in Saccharomyces cerevisiae and acts at an early step of the signal transduction cascade activated by DNA lesions. We used the mec3-dn allele, which causes a dominant negative checkpoint defect in G1 but not in G2, to test the stability of the complex in vivo and to correlate its assembly and disassembly with the mechanisms controlling checkpoint activation. Under physiological conditions, the mutant complex is formed both in G1 and G2, although the mutant phenotype is detectable only in G1, suggesting that is not the presence of the mutant complex per se to cause a checkpoint defect. Our data indicate that the Rad17-Mec3-Ddc1 complex is very stable, and it takes several hours to replace Mec3 with Mec3-dn within a wild type complex. On the other hand, the mutant complex is rapidly assembled when starting from a condition where the complex is not pre-assembled, indicating that the critical factor for the substitution is the disassembly step rather than complex formation. Moreover, the kinetics of mutant complex assembly, starting from conditions in which the wild type form is present, parallels the kinetics of checkpoint inactivation, suggesting that the complex acts in a stoichiometric way, rather than catalytically.

Cell Cycle↗

RhoA binds to the amino terminus of MEKK1 and regulates its kinase activity.

MEKK1 is a mitogen-activated protein kinase kinase kinase (MAP3K) that can regulate the c-Jun amino-terminal kinase (JNK) MAP kinase cascade. MEKK1 is comprised of a kinase domain and a long amino-terminal regulatory domain. This amino-terminal domain has a scaffold function in that it can assemble modules of the JNK and ERK MAP kinase cascades. Recently, we have demonstrated that MEKK1 binds to p115 Rho GTPase-activating protein, which has GTPase-activating protein activity toward RhoA. Thus, we tested whether Rho GTPases interact with the regulatory domain of MEKK1. RhoA, but not Rac or Cdc42, binds to a site in the aminoterminal one-third of MEKK1, which includes its PHD domain. The interaction is prevented by mutation of the essential cysteine in the MEKK1 PHD domain. Rho-GTP stimulates the kinase activity of full-length MEKK1 as much as 10-fold toward MEK4 but does not appear to be ubiquitinated by MEKK1 under conditions that result in modification of ERK2. In summary, we have characterized a novel point at which Rho GTPases impinge upon the regulation and function of MEKK1.

Amino Acid Sequence↗

Theoretical simulation of residual nuclide products in 208,207,206Pb, NATPb and 209Bi (P,X) reactions at intermediate and high energies.

The independent and cumulative measured yields of residual products in thin lead and bismuth targets irradiated with 0.04-2.6 GeV protons are compared with results by the LAHET, CEM03, LAQGSM03, INCL+ABLA, CASCADE and YIELDX codes, in order to evaluate the predictive power of the codes in this energy region. We found that the predictive power of the tested codes is different but is satisfactory for most of the nuclides in the spallation region, though none of the codes agree well with the data in the whole-mass region of product nuclides and all should be improved further. On the whole, the predictive power of all codes for the data in the fission and fragmentation product regions and, especially, at the borders between spallation and fission and between fission and fragmentation regions is much worse than in the spallation region; therefore, development of better evaporation/fission/fragmentation models is of first priority.

Bismuth↗

A class III histidine kinase acts as a novel virulence factor in Botrytis cinerea.

Filamentous ascomycetes contain large numbers of histidine kinases (HK) that belong to eleven classes. Members of class III from different species were previously shown to be involved in osmoregulation and resistance to dicarboximide and phenylpyrrole fungicides. We have inactivated the gene encoding the single group III HK, BOS1, in the economically important plant pathogen Botrytis cinerea. BOS1 inactivation had pleiotropic effects on the fungus. Besides the expected osmosensitivity and resistance to fungicides, null mutants presented additional characteristics indicating that BOS1 is necessary for normal macroconidiation and full virulence. On standard culture media, null mutants very rarely formed conidiophores and those few conidiophores failed to produce conidia. This defect could be partially restored with 1 M sorbitol, suggesting that another BOS1-independent signal cascade may be involved in macroconidiation. The mutants were not found to be hypersensitive to various oxidative stresses but were more resistant to menadione. Finally, pathogenicity tests showed that bos1-null mutants were significantly reduced in the ability to infect host plants. Appressorium morphogenesis was not altered; however, in planta growth was severely reduced. To our knowledge, this is the first class III HK characterized as a pathogenicity factor in a plant-pathogenic ascomycete.

Blotting, Southern↗

Intercellular junctions in oral epithelial cells: ultrastructural and immunological aspects.

The activation of the molecular cascade leading to Ca++ -induced differentiation in cultured epithelial cells might be provided by the establishment of intercellular junctions between cells. In the present paper, we tested the hypothesis that Ca++ concentration would determine morphological and biochemical changes in intercellular junctions of cultured human gingival cells. Triplicate samples of monolayer cultures of human oral gingival cells were grown with two different Ca++ concentrations (0.3 and 1.8 mM), and examined by transmission (TEM) and scanning (SEM) electron microscopy at different time periods. To determine the role of the E-cadherin/beta-catenin complex in intercellular junction formation, oral epithelial cell cultures were grown in 0.3 mM Ca++ in presence of a blocking antibody anti human E-cadherin, stained with antibodies anti human beta-catenin, and examined by confocal laser scanning microscopy (CLSM). By TEM and SEM, cells grown at physiologic Ca++ concentrations (i.e., 1.8 mM) showed a subjective increase of the size of microvilli and of the number of intercellular junctions, which was more evident after 3 days in culture. Desmosome-like junctions were observed in cells grown in 1.8 mM Ca++, not in cells grown in 0.3 mM. By CLSM, development of intercellular adhesion was marked by membranous localization of E-cadherin and beta-catenin within the first hours in both culture types. When cell-cell adhesion was prevented, cells showed round shape and no membranous localization of beta-catenin. Restoring cell adhesion brought about polygonal cell shape and membranous localization of beta-catenin. We can conclude that increased Ca++ concentration may determine biochemical and morphological changes at membranous level in human oral epithelial cells. These changes may facilitate the development of intercellular junctions.

Cadherins↗

Model inferences on baroreceptor & sinus wall responses.

Mechanical associations between sinus wall elements and those between wall and baroreceptor were modeled with differential equations. Viscoelastic relationships were tested using frequency domain analysis (TUTSIM, FANSIM). Two wall models were examined. The first had a single degree of freedom (df) and the second was a cascade system with two df. Component of the cascade model represented adventitia and media layers of the wall. This wall model had little deviation in gain between 0.1 and 10 Hz; regardless of a 100 fold difference in component damping. Properties of a wall-receptor model were in part estimated from myelinated baroreceptor responses (Brown et al., Circ. Res. 42:694-702, 1978). The wall-receptor model was designed with a natural frequency (omega b) of 12.7 Hz and damping ratio (zeta b) of 0.2 for the receptor and omega w of 50 Hz and zeta w of 1.2 for the wall component. Analysis of receptor responses, with respect to input forcing function, resulted in a omega b of 12.6 Hz. Analysis of responses with respect to those of the wall, resulted in a omega b of 16.0 Hz. These results are indicative of the complexity involved with interactive systems. If frequency analysis is used to estimate mechanical associations between sinus wall elements and baroreceptors, modeling can provide comparative data for interpretation of experimental responses.

Animals↗

Modulation of the proteolytic cascade systems by high dose corticosteroids.

The effects of high-dose corticosteroids (HDC) on activities within the proteolytic cascade systems were studied in vitro and in vivo using chromogenic peptide substrate assays. In in vitro experiments 20 mg methylprednisolone sodium succinate (Solu-Medrol) per ml plasma significantly inhibited activation of plasma prekallikrein, prothrombin and plasminogen and reduced functional plasma kallikrein inhibition, antithrombin and antiplasmin activities. The effects of HDC on activities within these proteolytic cascade systems were further evaluated in experimental acute pancreatitis in pigs. Acute pancreatitis was induced by injection of Na-taurocholate into the pancreatic duct. Seven test animals received methylprednisolone sodium succinate 30 mg per kg intravenously for 30 minutes before the induction of pancreatitis as pretreatment. Eight animals remained untreated. Trypsin (TRY), plasma prekallikrein (PKK), plasma kallikrein (KK) and functional plasma kallikrein inhibition capacity (KKI) were studied in the peritoneal exudate. Cardiac output (CO) and mean arterial pressure (MAP) were monitored regularly before and during a 6 hour observation period. During untreated pancreatitis a reduction of PKK levels of about 40% were found, paralleled by an increased KK activity and a reduction of KKI capacity. Several of the animals experienced high TRY activities. The mortality rate was 63% (5 out of 8 animals). In the pretreated groups, all animals survived the observation period. CO and MAP were significantly less reduced than the untreated group at 6 hours. HDC was also found to reduce significantly plasma kallikrein activities in the peritoneal exudate compared with untreated animals. No changes in TRY activities were found in pretreated animals. Furthermore, plasma prekallikrein and functional plasma kallikrein inhibition values in the exudate were elevated significantly in HDC treated animals compared with untreated animals.

Animals↗

The metastatic spread of kidney and prostate cancers in man.

This research was performed on 66 autopsy reports of kidney cancers and 58 autopsy reports of prostate cancers. Two alternative hypotheses were tested, i.e. whether metastases spread at random from the primary tumor throughout the body or whether the metastatic spread occurs in steps, referred to as a cascade spread, requiring one or more disseminating sites. It was found that in cancer of the prostate two disseminating sites exist, i.e. bones and lungs. Metastases from the primary tumor appear first in the skeleton and then in the lungs, not vice versa. In cancer of the kidney, the lungs are the major disseminating site. The lymphatic areas did not seem to play a major role in the dissemination of both cancers; on the contrary, the presence of metastases in the lymph nodes seem to depend on the presence of carcinomatous cells in key sites, i.e. the skeleton and the lungs. These results, however, should be interpreted with caution, as explained in the text. Considerations were proposed for future research.

Bone Neoplasms↗

Jak3 expression in glomerular epithelia of IgA nephropathy (IgA-N) patients.

Jak3 is a member of the Janus kinase family which plays an important role in cytokine signal transduction. Jak3 associates the gamma(c) chain of receptors for IL-2, IL-4, IL-7, IL-9 and IL-15, and is essential for the signal transduction of these cytokines. We have isolated Jak3 kinase from renal mesangial cells and demonstrated the constitutive expression of Jak3 in glomeruli in vivo. To investigate the physiological and pathological role of Jak3 in glomeruli, we prepared anti-Jak3 antibody and analysed the localization of Jak3 in glomeruli of renal biopsy samples from various nephritis patients and normal subjects. Among 61 nephritis patients and four normal subjects investigated in the present study, Jak3 was selectively localized to glomerular epithelia of IgA-N patients (14/34 cases) and focal glomerulosclerosis patients (1/5 cases), but not detected in minimal changes (n = 6), membranous glomerulonephropathy (n = 7), crescentic glomerulonephritis (n = 4), lupus nephritis patients (n = 5), and normal subjects (n = 4). The intense immunoreactivity for Jak3 is significantly associated with the decrease in creatinine clearance (81.5 +/- 10.4 ml/min versus 104.3 +/- 29.6 ml/min; P < 0.05, Student's t-test) and the increase in level of serum creatinine (1.13 +/- 0.33 mg/dl versus 0.75 +/- 0.23 mg/dl; P < 0.01, Student's t-test) in IgA-N patients. Furthermore, gamma(c) chain was concomitantly expressed with Jak3 in glomerular epithelia in vivo and in vitro, suggesting that signal transduction via gamma(c)-Jak3 cascade may be involved in the pathogenesis of glomerular injury of IgA-N. Taken together with the recent findings that IL-4-secreting T lymphocytes in affected glomeruli injure glomerular epithelium, the responsiveness of glomerular epithelium for IL-4 may be pathologically enhanced in IgA-N.

Animals↗

Purification of a protease inhibitor which controls prophenoloxidase activation in hemolymph of Locusta migratoria (insecta).

A protein which inhibits the prophenoloxidase----phenoloxidase (EC 1.14.18.1) proteolytic activation in hemocyte extracts of Locusta migratoria was isolated from the plasma of the same insect and partially characterized. It shows a molecular weight of 14,000, an inhibiting activity toward the cascade system in the insect hemocytes, which resulted in a lower production of phenoloxidase, a key enzyme for the defence mechanism in arthropods. To identify the specificity of the Locusta inhibitor and consequently the specificity of its target enzyme, inhibitory tests were performed against a number of known serine-proteases. A strong in vitro inhibiting activity toward chymotrypsin and, to a lesser extent, toward human leukocyte elastase was present, while trypsin, Carlsberg subtilisin, human thrombin and pancreatic elastase failed to react. The lack of trypsin inhibition by the isolated inhibitor suggested that the trypsin-catalysed activation of the system in the hemocyte extract takes place under different controls or at an earlier stage of the cascade. The N-terminal sequence of the inhibitor reveals that this molecule is different from the protease inhibitors isolated from other arthropods.

Amino Acid Sequence↗

A review of issues relating to nebulizer standards.

The standardization of in vitro bench-top assessment of nebulizer performance could prove to be extremely beneficial in the advancement of aerosol delivered by nebulizers. At the present time, there is considerable confusion as to how different nebulizer systems perform. Clinical in vivo tests are often compromised, as high patient variability requires large study numbers before differences become significant. In vitro tests should offer less variability and much lower costs, but the test criteria must be standardized and be clinically representative. Standard methods to assess nebulizer performance should therefore be designed to reflect the clinical situation as far as practicable. This would incorporate test methods involving: 1. simulated breathing patterns to estimate the amount of aerosol released and inhaled 2. use of solute tracers to measure aerosol release of salts or drugs themselves 3. use of aerosol sizing instruments such as low-flow cascade impactors that would reflect in vivo deposition. Standards must be written to accommodate the variety of existing devices currently on the market. Because standards take a significant time (typically 1-3 years) to prepare and are intended to operate for a further 10 or more years, they should also aim to accommodate possible advancements in device technology. The potential for such developments should not be overlooked in preparing a standard for in vitro testing of nebulization devices.

Aerosols↗

Effect of nebulizer configuration on delivery of aerosolized tobramycin.

Differences in the reported efficacy of aerosolized aminoglycosides may be due, in part, to differences in aerosol delivery. Optimization of delivery systems of bench testing of nebulizers in a manner that simulates clinical conditions can lead to enhanced lung deposition in subsequent clinical studies. In the present study, we assessed the effects of varying nebulizer configuration on the performance of ultrasonic and jet nebulizers. Tobramycin was mixed with a radiotracer (99mTc) to facilitate measurement of nebulizer output and particle size. A piston ventilator provided a simulated breathing pattern, and the dose delivered to a filter corresponded to what would have been inhaled by a patient (percentage of nebulizer charge inhaled). Particle size was measured using a cascade impactor, sampling at 1 L/min. An ultrasonic nebulizer (Ultra-Neb; DeVilbiss, Somerset, PA), ventilated at 20 breaths per minute, charged with 600 mg of tobramycin (in 30-mL volume) and fitted with its standard tubing, was tested with and without the addition of one-way valves to the inspiratory and expiratory ports of the mouthpiece. In order to assess the degree of environmental contamination associated with jet nebulizer therapy, a filter was placed at the expiratory port of all jet nebulizer experiments. The addition of the valves reduced the percentage of charge inhaled from a mean +/- standard deviation (SD) of 29.2% +/- 1.4% to 7.6% +/- 2.3% and reduced mass median aerodynamic diameter [MMAD (sigma g) from 4.3 microns (2.1) to 1.45 microns (1.65)]. A Circulaire (Westmed, Tucson, AZ) jet nebulizer (7 L/min flow, 50 pounds per square inch gauge (psig), 20 breaths per minute, containing 160 mg of tobramycin in a 4-mL volume) was tested in two configurations: using a plain T-piece and using a valved inflatable aerosol chamber. The use of the holding chamber resulted in an almost twofold reduction in MMAD [MMAD (sigma g) = 2.45 microns (2.0); T-piece; 1.25 microns (2.0), holding chamber]. A slight reduction in the percentage of nebulizer charge inhaled using the holding chamber, compared to the plain T-piece, was not statistically significant (mean +/- SD of percentage inhaled with holding chamber = 20.8% +/- 1.6%; with T-piece = 23.6% +/- 0.5%). With both the jet and ultrasonic nebulizers, breathing frequency influenced percentage inhaled, with a higher percentage inhaled at 20 breaths per minute compared to 15 breaths per minute. The use of the plain T-piece at 20 breaths per minute was associated with more environmental contamination than the use of the holding chamber with the same breathing pattern (26.7% +/- 1.0%, T-piece; 4.5% +/- 0.3%, holding chamber, P < 0.0001). We conclude that nebulizer configuration can potentially affect both the amount of aerosol inhaled and the particle size, and needs to be specified precisely in treatment protocols.

Administration, Inhalation↗

Regulation of transducin GTPase activity in bovine rod outer segments.

The photoreceptor G-protein, transducin, belongs to the class of heterotrimeric GTP-binding proteins that transfer information from activated seven-span membrane receptors to effector enzymes or ion channels. Like other G-proteins, transducin acts as a molecular clock. It is activated by photoexcited rhodopsin which catalyzes the exchange of transducin-bound GDP for GTP and then stays active until bound GTP is hydrolyzed by an intrinsic GTPase activity. Our previous study on the components of the amphibian phototransduction cascade (Arshavsky, V. Y., and Bownds, M. D. (1992) Nature 357, 416-417) has shown that transducin GTPase can be significantly accelerated by the target enzyme, cGMP phosphodiesterase (PDE), and more specifically its gamma-subunit (PDE gamma). Here we report that an analogous mechanism is present in bovine photoreceptors. Addition of recombinant PDE gamma to the test photoreceptor membranes which retain transducin but are depleted of endogenous PDE causes a significant acceleration of transducin GTPase activity. A similar effect was observed with the PDE holoenzyme, but not with the complex of PDE alpha- and beta-subunits prepared by a limited proteolysis of PDE with trypsin. The activating effect of PDE gamma is increased as test membrane concentration increases, exceeding 20-fold at rhodopsin concentrations over 80 microM and approaching the rate of the photoresponse turnoff. This suggests either that photoreceptor membranes contain a further factor which is essential for PDE-dependent regulation of transducin-bound GTP hydrolysis or that components of the phototransduction cascade interact in a cooperative manner. We also report that the GTPase-activating epitope is located within the C-terminal third of PDE gamma: the peptide corresponding to the 25 C-terminal amino acid residues of PDE gamma can accelerate transducin GTPase almost as well as the full-length PDE gamma. A part of the GTPase activating epitope is located within the 3 C-terminal amino acid residues: the truncation PDE gamma mutant lacking these residues accelerates transducin GTPase considerably less than the whole length PDE gamma.

3',5'-Cyclic-GMP Phosphodiesterases↗

Effect of XPD/ERCC2 polymorphisms on chromosome aberration frequencies in smokers and on sensitivity to the mutagenic tobacco-specific nitrosamine NNK.

Polymorphisms in DNA-repair genes could contribute to the interindividual differences in cancer susceptibility in smokers. By reducing DNA-repair capacity, these polymorphisms may influence the net level of smoking-induced genetic damage significantly, a critical step in the cascade of events leading to cancer. In this biomonitoring study, we examined the relationship between polymorphisms in the DNA-repair gene XPD/ERCC2 and genetic damage. We tested the hypothesis that coding polymorphisms in XPD/ERCC2 limit DNA-repair efficiency in humans leading to increased frequencies of chromosome aberration (CA) in their lymphocytes. We also used the mutagen-sensitivity assay, with the tobacco-specific nitrosamine NNK as a model mutagen, to determine whether lymphocytes from individuals with the variant XPD alleles are more sensitive to this tobacco-specific carcinogen. We calculated odds ratios (ORs) as estimates of relative risk of increased frequencies of CA associated with two XPD polymorphisms (Asp312Asn in exon 10 and Lys751Gln in exon 23). We observed a 2.57-fold (95% confidence limit [CL] = 0.88-7.50; P = 0.10) increase in risk of elevated in vivo frequencies of CA associated with the variant 312Asn allele in the total population. The relative risk was more pronounced in smokers (OR = 4.67; 95% CL = 1.04-20.90; P = 0.04) and in all subjects >48 years old (OR = 7.33; 95% CL = 1.53-35.10; P = 0.01). Similarly, elevations in NNK-induced aberrations were significantly associated with the 312Asn allele (OR = 3.69; 95% CL = 1.29-10.56; P = 0.02). The risk was higher in smokers (OR = 4.62; 95% CL = 1.14-18.70; P = 0.04) and in subjects >48 years old (OR = 5.76; 95% CL = 1.30-25.41; P = 0.03). No significant effect was observed with the 715Gln variant allele in relation to either in vivo or NNK-induced CA. These data suggest that the Asp312Asn polymorphism may alter the phenotype of the XPD protein, resulting in reduced DNA-repair capacity.

Adult↗