Mutation of the conserved amino acids of mitochondria aldehyde dehydrogenase. Role of the conserved residues in the mechanism of reaction.
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Biomedical subjects
Publications and source records attributed to S Sheikh.
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Cytokine mRNA expression and stimulus-induced cytokines were examined in peripheral blood mononuclear cells in 62 human immunodeficiency virus (HIV)-infected children and uninfected controls. Compared with that in controls, constitutive mRNA expression in patients was increased for tumor necrosis factor (TNF)-alpha, interferon (IFN)-gamma, and interleukin (IL)-10 and decreased for IL-12; it was undetectable for IL-2 and IL-4 in both patients and controls. Stimulus-induced secretion of TNF-alpha, IFN-gamma, IL-12, and IL-4 was less than that in controls; IL-10 secretion was similar. There was no increase in stimulus-induced or constitutive IL-4 or IL-10 in children with severe immunologic deficit compared with controls. A higher stimulus-induced IL-10 secretion and a lower constitutive TNF-alpha mRNA were associated with a slower rate of disease progression, and TNF-alpha mRNA expression correlated with lower plasma HIV RNA. Thus, constitutive cytokine mRNA expression differs from stimulus-induced cytokine responses. The dominant defect in HIV-infected children appears to be one of reduced type 1 cytokines, predominantly IL-2.
About 50% of the Oriental population have less liver mitochondrial aldehyde dehydrogenase (ALDH2) activity than do other people. It was found that they possessed an enzyme with a lysine at position 487 (E487K) instead of glutamate (Glu487). We previously found that the Km for NAD of recombinant human and rat E487K enzymes increased more than 150-fold (Farrés, J., Wang X., Takahashi, K., Cunningham, S. J. , Wang, T.T., and Weiner, H (1994) J. Biol. Chem. 269, 13854-13860). Many aldehyde dehydrogenase-deficient people were found to be heterozygous when genotyped for ALDH2. In this study liver tissue from heterozygous people was analyzed and found to possess mRNAs for both the glutamate and the lysine subunits. Western blot analysis showed that the glutamate subunit was present. The cDNAs for Glu487 and E487K were coexpressed on one plasmid in Escherichia coli, and the enzyme forms were separated from each other by isoelectric focusing to show that heterotetramers were formed. Only one Km value for NAD could be measured with the purified heterotetrameric enzyme that possessed just 16-18% activity of the glutamate homotetrameric enzyme. The E487K homotetramers had 8% specific activity of the Glu487 enzyme. There was no pre-steady state burst of NADH formation with the heterotetramer, a property found with the glutamate enzyme. Similar results were found for the coexpressed rat liver enzyme, except that a higher specific activity, 48%, was obtained. Thus, we conclude that presence of the lysine subunit altered the activity of the glutamate subunit in the heterotetramer to make it function more like an E487K enzyme.
In an in vitro flow model, unstimulated neutrophils rolled steadily over a surface coated with platelets, until superfusion of the chemotactic peptide formyl-methionyl-leucyl-phenylalanine (fMLP) caused a dose-dependent (10(-11) to 10(-7) mol/L) transition from rolling to stationary attachment in seconds, followed more slowly by neutrophil shape change and spreading on the surface, However, at low concentrations of Ca2+ and Mg2+ (0.1 mmol/L and 0.05 mmol/L, respectively, rather than physiologic 1 mmol/L and 0.5 mmol/L), neutrophils first halted but then started to roll again and to detach from the surface over 5 to 10 minutes. At the low cation concentration, stopping was largely inhibited by antibodies to the neutrophil integrins CD18 or CD11b, but not CD11a. When neutrophils were pretreated with antibodies to CD11b or CD18 in 1 mmol/L Ca2+ 0.5 mmol/L Mg2+, stopping was not prevented but delayed. However, if antibodies were also included with the superfused fMLP, stopping was inhibited, and detachment followed. This indicates that CD11b/CD18 was newly expressed during shape change and mediated the second phase of neutrophil immobilization and spreading in a cation-dependent manner. Prestimulated neutrophils also bound to platelets and spread, but immobilization was blocked if they were perfused with antibody to CD18 or CD11b or with low Ca2+ and Mg2+. Examining the cation-dependence further, it was evident that the presence of Mg2+ was essential for integrin-mediated adhesion and that the Mg2+ concentration determined whether immobilization could be maintained or was transient. Continuous superfusion of fMLP was also essential for maintenance of stable adhesion and spreading. Thus, activation of constitutive CD11b/CD18 rapidly and reversibly converted rolling to stationary attachment, whereas maintenance of adhesion and neutrophil spreading required continual expression of additional CD11b/CD18 that was only functional at physiologic Mg2+. Continual activation and deactivation of CD11b/CD18 during de novo expression could mediate immobilization and onward migration of neutrophils in vivo, and activated platelets appear capable of supporting this process as well as endothelial cells.
Beef liver glutamate dehydrogenase (GDH) is inactivated by the bifunctional reagent, o-phthalaldehyde. The initial rate of inactivation follows pseudo first-order kinetics. The reaction of the enzyme with o-phthalaldehyde results in isoindole derivative formation which is characterized by typical fluorescence emission and excitation maximum at 410 nm and 337 nm, respectively. The inactivation of GDH by o-phthalaldehyde is partially prevented by alpha-ketoglutaric acid, whereas NADH does not provide any protection. This clearly indicates that cysteine and lysine residues are located near the alpha-ketoglutaric acid binding center. The dissociation constant of 2.2 mM was obtained for enzyme-alpha-ketoglutaric acid complex. Stoichiometry of o-phthalaldehyde binding with glutamate dehydrogenase showed that the formation of approximately one isoindole derivative per subunit of glutamate dehydrogenase is accompanied by complete loss of activity.
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INTRODUCTION: The mechanism of functional bundle branch block induced at the onset of supraventricular tachycardia (SVT) is well established. However, no data exist to address the underlying mechanism of functional bundle branch block occurring in the second beat of SVT, when the first beat is conducted with a narrow QRS morphology and preceded by ventricular stimulation. METHODS AND RESULTS: Two patients showing such a phenomenon form the basis of this report. Patient 1 with AV nodal reentrant tachycardia of the common variety persistently demonstrated functional right bundle branch block in the second SVT complex when a short train of ventricular pacing was introduced during SVT. This occurred without any discernible change in the SVT cycle length. Patient 2 had a manifest posteroseptal accessory pathway and inducible orthodromic reentrant tachycardia. Functional bundle branch block during propagation of the second SVT complex invariably occurred either in the left bundle when SVT was induced by a bundle branch reentrant complex during premature ventricular stimulation, or in the right bundle when SVT was induced with a short train of ventricular pacing. The development of functional bundle branch block was preceded by minimal or no cycle length variations in the His-bundle inputs. CONCLUSION: These observations suggest that the type of functional bundle branch block occurring in the second SVT complex as a de novo phenomenon may be related to the relative timing of the retrograde penetration of the right versus left bundle during ventricular pacing or bundle branch reentrant complex. Therefore, due to its longest cycle length of activation and refractoriness, the earliest site of retrograde penetration is the most likely site of functional block during propagation of the second SVT complex. This delayed manifestation of retrograde concealment may provide new information regarding the electrophysiologic behavior of the His-Purkinje system.
A case is described of a foreign body (a metallic paper clip) in the hypopharynx of an 18 month old child presenting with recurrent respiratory tract infections. The child was treated with antibiotics at two accident and emergency departments without any benefit. A high degree of suspicion is necessary in young children, as a history of ingestion of a foreign body may not be forthcoming. It is important to be aware of the possibility of a foreign body in young children, particularly when the clinical presentation is atypical.
A retrospective chart review (January 1987-December 1994) of cases of histologically proven Pneumocystis carinii pneumonia (PCP) in 9 infants (ages 1.1-7 months) who had perinatally acquired human immunodeficiency-1 virus (HIV) infection was performed. None of the children was suspected of having HIV or had received PCP prophylaxis. Respiratory failure requiring mechanical ventilation developed in all 9 children. Comparison of survivors (5) with nonsurvivors (4) showed no significant differences in the age of onset, weight for length, hemoglobin level, total protein/albumin, lactic dehydrogenase (LDH), liver function tests, lymphocyte numbers and functions, time on mechanical ventilation, treatment received (including the use of steroids), and other complications occurring during the acute phase of pneumonia. The survivors had significantly higher platelet counts than nonsurvivors (mean 516 K versus 237 K, p = 0.02), a trend toward lower arterial-alveolar (A-a) gradient (mean 415 versus 218, p = 0.07), and earlier use of steroids after the onset of illness (2.5 versus 1 day, p = 0.06). Four of 5 children treated after December 1989 survived compared to 1 of 4 prior to that. Four survivors followed for a median length of 29 months (range 28-32 months) had stable physical and neurocognitive development, improvement in CD4+ T cell counts [mean 27% (range 23-36%), absolute count-mean 1631 (range 1427-1631)] and immunologic functions, and decrease in p24 Ag in 3 of 4. The cellular proviral load measured by DNA quantitative polymerase chain reaction (QC-PCR) decreased (40 K to 17.3 K copies) in one of two patients studied at two time points. PCP continues to be a serious complication of HIV infection in infancy and aggressive preventive approaches seem warranted. In our institution no single factor was responsible for improved survival following PCP after 1989. Four of 5 survivors continued to do well 28-32 months after the acute episode.
Pig heart mitochondrial malate dehydrogenase was inactivated very rapidly by omicron-phthalaldehyde as compared to 5,5'-dithio bis(2-nitrobenzoic acid) and pyridoxal 5'-phosphate. The omicron-phthalaldehyde reaction followed pseudo first order kinetics, and a second order rate constant of 38 M-1 S-1 was obtained. Cysteine and lysine residues participating in the omicron-phthalaldehyde reaction are located in the NADH binding region of malate dehydrogenase as shown by protection experiments. The decrease in the rate of inactivation in the presence of NADH was used to determine the dissociation constant of the enzyme-NADH complex. pH dependent studies and molar transition energy calculations of the omicron-phthalaldehyde-inactivated enzyme have indicated that cysteine and lysine residues involved in the isoindole derivative formation are located in a hydrophobic environment at the coenzyme binding site.
We present a rare case of unilateral anterior jugular venous phlebectasia in an 82-year-old female patient presenting as a soft cystic lump in the anterior aspect of the neck increasing in size during straining and valsalva manoeuvre. Although cases of internal and external jugular phlebectasia have been reported, as far as we are aware no case of anterior jugular phlebectasia has been reported in the literature previously.
We present two rare, but similar, cases of button batteries in the nose in male children of Caucasian origin. The importance of early diagnosis, treatment and the long-term morbidity of such a foreign body in the nose are discussed.
The effect of o-phthalaldehyde on octopine dehydrogenase inactivation has been studied. o-Phthalaldehyde binds to the proximal cysteine and lysine residues of the enzyme leading to the formation of isoindole derivative. Double inhibition studies with o-phthalaldehyde and p-chloromercuricphenyl sulfonic acid have indicated that o-phthalaldehyde does not bind to the functional cysteine present at the active site. Protection experiments have shown that L-arginine prevented o-phthalaldehyde inactivation. This could be only due to the reaction of the amino group of L-arginine with o-phthalaldehyde as per the mechanism proposed elsewhere since L-arginine cannot bind to the enzyme prior to NADH. Other substrates such as pyruvate oR NADH could not prevent the o-phthalaldehyde reaction with the enzyme. Fluorescence spectral studies demonstrated that in the presence of externally added amino acid no isoindole derivative formation occurs. However, a characteristic isoindole derivative is formed in the presence of beta-mercaptoethanol although the enzyme does not lose its activity. This indicated that o-phthalaldehyde can bind with lysine of the enzyme and thiol of externally added beta-mercaptoethanol. Pyridoxal 5'-phosphate, a lysine specific reagent also binds to the enzyme giving the characteristic absorption and fluroescence peak at 325 nm and 395 nm respectively. However, no loss of enzyme activity was observed. On the basis of these experiments we would suggest that o-phthalaldehyde binds to non-essential cysteine and lysine residues present in close proximity which results in conformational changes leading to enzyme inactivation.
Inactivation of rabbit muscle creatine kinase by o-phthalaldehyde was investigated. The loss of enzyme activity was concomitant with the increase in fluorescence intensity at 410 nm. The modified enzyme showed a characteristic absorption peak at 336 nm. These evidences suggested that the mechanisms of inhibition of creatine kinase by o-phthalaldehyde involves binding of the thiol and the epsilon-amino group of enzyme leading to the formation of isoindole derivative. None of the substrates, except Mg-ATP, provided protection against o-phthalaldehyde inhibition. This was corroborated by fluorescence studies. Double inhibition experiments showed that p-chloromercuricphenyl sulphonic acid, a thiol-specific reagent, binds to the same cysteine which is also involved in the o-phthalaldehyde reaction. Stoichiometric results indicated that 2 mol of o-phthalaldehyde were incorporated per mole of enzyme molecule upon complete inactivation. Denaturation of creatine kinase by urea or heat treatment prior to o-phthalaldehyde addition resulted in the decrease of fluorescence intensity indicating that native conformation of the enzyme is essential for isoindole derivative formation.
Although in vitro studies have been invaluable in revealing the complex biochemistry of the blood coagulation system, the mechanisms involved during the in vivo response to hypercoagulable stimuli are still unclear. We have used plasma-based enzyme-linked immunosorbent assays (ELISAs) to study the mechanisms by which the coagulation system is activated in vivo during human cardiopulmonary bypass (CPB) surgery (n = 8). A novel immunoassay for factor XIIa was used to detect activation of the contact system, factor IX activation peptide (FIXAP) was used as a marker for activation of factor IX, and prothrombin fragment F1 + 2 (F1 + 2) was used as a marker for thrombin generation. The ELISA for FIXAP is described for the first time herein. F1 + 2 levels increased early in response to surgical intervention: from a baseline of 38.7 +/- 9.7 ng/mL (mean +/-SE), levels increased rapidly during surgery and bypass to a maximum of 448.5 +/- 92.0 ng/mL. A modest yet significant increase in factor XIIa levels from 3.47 +/- 0.54 ng/mL to 4.33 +/- 0.85 ng/mL was evident during surgery before bypass, but no further significant increase was detected on establishing extracorporeal circulation. FIXAP levels demonstrated a small and late increase during surgery from 4.98 +/- 0.55 ng/mL to a maximum of 10.20 +/- 1.23 ng/mL, the increase beginning at the time of near maximal F1 + 2 levels. There was no association between activation of the contact system (factor XIIa levels) and the generation of thrombin (F1 + 2 levels). However, a strong association (r = .705) was apparent between the generation of thrombin (F1 + 2 levels) and activation of factor IX (FIXAP levels), despite the delay between the activation of prothrombin and factor IX. The data do not support the established view that contact activation resulting from exposure of blood to foreign surfaces is the major procoagulant stimulus in CPB. Instead, the results suggest that the main trigger to coagulation during CPB surgery was provided via the tissue factor-factor VIIa mechanism in response to the cutting of blood vessels, which directly activated factor X and then prothrombin. The late activation of factor IX, which presumably also contributed to maximal prothrombin activation, could have arisen due to direct tissue factor-factor VIIa action, or by secondary feedback action of thrombin on the intrinsic system.
Thiol-specific reagents, p-chloromercuricphenyl sulfonic acid (PCMS), 5,5'-dithiobis-(2-nitrobenzoic acid) (DTNB) and N-ethyl-maleimide (NEM), incubated with octopine dehydrogenase resulted in the loss of catalytic activity. The kinetic profile of PCMS inactivated enzyme showed that the reaction followed pseudo-first-order kinetics during the initial phase of inactivation. The reversal of enzyme activity was obtained by thiol-containing reagents. The loss of enzyme activity was prevented only by NADH and not by other substrates. The dissociation constant for NADH calculated from the decrease in the enzyme inactivation rate was 45 microM. Cyanolysis of the DTNB-modified enzyme with KCN led to the release of 5-thio-2-nitrobenzoate (TNB) accompanied by the formation of thio-cyano enzyme. By correlating the enzyme activity with the formation of thio-cyano derivative it was found that no activity was recovered after KCN treatment. These evidences clearly established the critical involvement of the thiol group in catalysis. Double inhibition studies with PCMS and NEM on octopine dehydrogenase showed that the inactivating reagents bind to the same functional thiol present at the catalytic center. pH-dependent inactivation by PCMS indicated that a group with a pKa value of 7.4 is involved in the loss of enzyme activity. These approaches suggested that at least one thiol group present at the coenzyme-binding domain is essential for the catalytic reaction of octopine dehydrogenase.
Activation of coagulation was studied during the peri-operative period in patients undergoing cardiopulmonary bypass (CPB) surgery using activation markers which have recently become available: prothrombin fragment F1 + 2 (F1 + 2), which is a measure of total thrombin generation, and thrombin-antithrombin complex, which is a measure of inactivation of free thrombin by antithrombin. Levels of the specific marker of fibrin breakdown, D-dimer, were also determined. F1 + 2 levels were assessed using a newly developed ELISA described herein which employs a neoantigen-specific capture antibody raised using a synthetic peptide; the latter antibody has been pre-adsorbed against prothrombin to ensure high specificity for F1 + 2. Increased generation of thrombin during surgery was clearly demonstrated despite maintenance of a high concentration of heparin during the period of extracorporeal blood circulation. There was a close association (r = 0.882) between the generation of thrombin (F1 + 2 levels) and its inhibition (TAT levels). Differences were noted, however, between the information provided by F1 + 2 and TAT, which are interpreted with regard to the different in vivo fates of F1 + 2 and thrombin. The enhanced activation and inhibition of coagulation observed during CPB was suppressed once physiological blood circulation was restored, with F1 + 2 returning to pre-surgical levels within 24 h after surgery. During the post-operative period D-dimer levels, which rose in concert with F1 + 2 and TAT levels, remained highly elevated, suggesting that not all of the generated thrombin was inactivated by antithrombin.(ABSTRACT TRUNCATED AT 250 WORDS)