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C Vial

Publications and source records attributed to C Vial.

At least 19 recordsLinked to original sources

Effects of pH and KCl on the conformations of creatine kinase from rabbit muscle. Infrared, circular dichroic and fluorescence studies.

The activity loss of creatine kinase (CK), observed at low pH (midpoint was 4.8) corresponded to the monomerization of the dimeric protein and was correlated with structural changes. The acid-induced unfolding was not complete at this pH, as probed by circular dichroic (CD) and fluorescence methods. Further decrease of pH, led to a second transition (midpoint was pH 3.5). The loss of activity was irreversible at pH 4.8 (< 20% native activity was recovered) while it was almost fully reversible (> 90% of native activity was recovered) for the enzyme incubated at pH 0.9-2.5. The amount of intermolecular beta-sheets (monitored with the 1620 cm-1 infrared component band) was maximal when the enzyme was incubated at pH 4.8, as a consequence of protein aggregation, while it was minimal at extremes of pH and at low ionic strength. Acid-induced and alkaline-induced denaturations promoted different structural changes, leading to distinct partially unfolded conformational states. The addition of KCl (from 0.05 M to 0.5 M) to an acidic solution of monomeric creatine kinase (pH 1.6) resulted in a highly cooperative transition from the partially unfolded conformation (UA) to the more compact conformation (A) with the properties of a molten globule, as probed by CD spectra and by fluorescence. The formation of intermolecular beta-sheets in the compact conformation was observed by infrared spectroscopy, indicating formation of unstable aggregates.

Animals

Reversible dissociation and unfolding of dimeric creatine kinase isoenzyme MM in guanidine hydrochloride and urea.

The unfolding of dimeric cytoplasmic creatine kinase (MM) by guanidine hydrochloride and by urea has been investigated using activity measurements, far-ultraviolet circular dichroism, sedimentation velocity and fluorescence energy transfer experiments to monitor global structural changes. Intrinsic (cysteine and tryptophan residues) and extrinsic probes (1-anilinonaphthalene-8-sulfonate) were also used. The reversibility of the unfolding was checked by monitoring activity and tryptophan fluorescence. The unfolding of creatine kinase in guanidine hydrochloride is a reversible multistep process, as suggested by the non-coincidence of denaturation curves at equilibrium. Inactivation of the dimer precedes its dissociation into two monomers and an intermediate state was identified during the unfolding of the monomer. This intermediate state is characterized by a relatively high degree of secondary structure (as shown by far-ultraviolet circular dichroism), of compactness (as shown by fluorescence energy transfer measurements and sedimentation experiments), a fluctuating tertiary structure (as shown by near-ultraviolet circular dichroism) and a strong affinity for anilinonaphthalene sulfonate (as demonstrated by fluorescence). These results clearly indicate that the intermediate state detected possesses some of the properties of a molten globule. In urea, the unfolding pathway is reversible but differs from that observed in guanidine hydrochloride. Indeed inactivation, dissociation and loss of tertiary structure are coincident but the ellipticity curve is slightly shifted to a higher urea concentration. The dimer is dissociated into two expanded monomers possessing some secondary structure which is progressively lost at a higher urea concentration (6.4M). These results show that guanidine hydrochloride is approximately six times more effective than urea for inactivation and dissociation, underlining the fact that electrostatic interactions are very important in the stabilization of the active site and of the dimeric state.

Anilino Naphthalenesulfonates

A 205 kDa protein from non-neuronal cells in culture contains tubulin binding epitopes.

Microtubule-associated proteins (MAPs) interact with tubulin in vitro and in vivo. Despite that there is a large amount of information on the roles of these proteins in neurons, the data on non-neuronal MAPs or MAPs-related proteins is scarce. There is an increasing number of microtubule-interacting proteins that have been identified in different cultured cell lines, and some of them share common functional epitopes with the most well-known MAPs, MAP-2 and tau. In a search for tubulin-interacting proteins in non-neuronal cells we identified a 205 kDa protein in the monkey kidney Vero cells in culture, on the basis of immunological studies and affinity chromatography. This protein interacts with the C-terminal moiety of beta-tubulin and cosediments with taxol assembled microtubules, but it was not recovered after successive cycles of assembly and disassembly. The presence of neuronal MAPs such as MAP-1, MAP-2 and tau was not detected in these cells. Interestingly, the studies showed that the 205 kDa protein contained a tubulin binding motif which was recognized by site-directed antibodies that also tag tubulin binding epitopes on MAP-2 and tau. This characteristic led us to designate this protein as MBD-205, a component that shares binding domains with these MAPs, rather than as a marker of the MAPs family. On the other hand, immunofluorescence experiments using site-specific antibodies, i.e. MAP-reacting monoclonal anti-idiotypic reagent MTB6.22 and a polyclonal antibody to the second tau repeat, revealed a MBD-205 co-localization with membrane structures and microtubule-organizing centers in Vero cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence

Structure and expression of Euglena gracilis nuclear rbcS genes encoding the small subunits of the ribulose 1,5-bisphosphate carboxylase/oxygenase: a novel splicing process for unusual intervening sequences?

In the protist Euglena gracilis, the small subunit of the chloroplast enzyme ribulose 1,5-bisphosphate carboxylase/oxygenase is encoded by nuclear rbcS genes and synthesized as a polyprotein precursor containing eight mature small subunit molecules. This large precursor is encoded by at least eight different nuclear genes as ascertained by transcript analysis. The structure of three rbcS genes was established and the coding sequences were found to be interrupted by many intervening sequences (IVS). Apart from the first 5' intron involved in trans-splicing, none of these IVSs obeys the GT-AG rule characteristic of introns in higher eukaryote genes. Surprisingly, these IVSs are located at identical positions within the three genes studied. Moreover, extensive sequence homologies were found between IVSs located in the same gene as well as in different genes. The sequences of these homologous IVSs differ only by inserted and/or deleted sequences. The striking conservation of the 5' and 3' regions of these IVSs is correlated to their potential secondary structures. These structures, which bring the IVS extremities together with the exon boundaries, could be involved in a novel splicing process. The second 5' IVS is shown to be excised before the addition of the spliced leader sequence to the pre-mRNA. Similarly, two 3' IVSs are excised before the polyadenylation step. These results suggest that IVS splicing is faster than eukaryotic genomic cis-splicing and involves components other than those of the classical spliceosomes.

Amino Acid Sequence

Antegrade/retrograde cardioplegia in arterial bypass grafting: metabolic randomized clinical trial.

The metabolic effects of combined antegrade/retrograde and antegrade cardioplegia on myocardial protection were evaluated and compared in 30 patients who underwent myocardial revascularization. All patients had three-vessel coronary artery disease, and the revascularization was done with exclusive use of arterial grafts (internal mammary artery, gastroepiploic artery). Myocardial protection consisted of oxygenated crystalloid cardioplegia, topical slushed ice, and moderate systemic hypothermia (34 degrees C). The patients were randomly separated into two groups: group A (n = 15), who received antegrade cardioplegia, and group A/R (n = 15), who received combined antegrade/retrograde cardioplegia. There was no significant difference between the two groups concerning preoperative and intraoperative data. After the first dose of cardioplegia, right ventricular temperature was significantly lower in group A/R (15 +/- 2 degrees versus 19 +/- 5 degrees C; p < 0.05), and there was no significant difference between the two groups in left ventricular temperature. Coronary sinus blood samples were obtained before bypass and 5, 10, and 15 minutes after reperfusion; there was no difference between the two groups concerning lactates, superoxide dismutase, and glutathione peroxidase. After reperfusion, malondialdehyde levels increased significantly in group A and there was no change in group A/R, with a significant difference between the two groups (at 10 minutes after reperfusion, 0.80 +/- 0.20 versus 0.53 +/- 0.16 mumol/L; p < 0.05). Right and left ventricular myocardial biopsies were performed before bypass and 15 minutes after reperfusion; there was no significant difference between the two groups concerning adenosine triphosphate and creatine phosphate myocardial concentrations.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate

[Disulfiram (Esperal) toxicity. Apropos of 3 original cases].

Prescribed since 1948 to control chronic alcoholism, disulfiram may cause severe toxicity as report in three cases of acute motive axonal polyneuritis. Disulfiram toxicity may present different clinical aspects: 1) Cytolytic hepatitis with fatal evolution in 30% of cases (fulminant hepatitis), and full recovery for the other 70%. The onset of the symptoms usually occurs as early as 15 days to a maximum of 6 months (most within 2 months) after initiation of treatment. 2) Severe optic neuritis with full recovery in 2 months. 3) Peripheral neuropathy usually dose dependent, with different clinical presentations: polyneuritis with sensory, motor, or both deficits, and few cases of tetraplegia. 4) Encephalopathy frequently associated with one of the precedent symptoms, having a favorable outcome (probably resulting in inhibition of dopamine-beta-hydroxylase by disulfiram). The mechanism of toxicity (direct or idiosyncractic) remain unclear. Disulfiram has been used safely in millions of people since 1948, and we have only few cases reports of severe toxicity. From a practical point of view, treated patients should benefit by a neurological examination once a month, ophtalmological examination every 2 months, and hepatic enzymes monitored twice a month during the 2 first months. This is the price to prevent and to detect side effects of disulfiram therapy.

Adult

Unilateral upper limb asterixis related to primary motor cortex infarction.

BACKGROUND: Unilateral upper limb asterixis related to cortical infarct is an unusual clinical picture. We found this association in two patients. Magnetic resonance imaging (MRI), somatosensory evoked potentials (SEPs), and electromyographic recording were performed. CASE DESCRIPTIONS: Two patients developed an acute upper limb ataxia with asterixis. This consisted of frequent arrhythmic loss of extensor muscle tone on instruction to maintain the wrist and fingers extended. Voluntary electromyographic activity in the left extensor digitorum communis muscle showed abrupt periods of interruption ranging from 90 to 260 milliseconds in duration in the first case and from 60 to 220 milliseconds in the second case. SEPs were normal. MRI disclosed a right cortical infarct within the primary motor cortex in both cases. CONCLUSIONS: These findings indicate that asterixis was not related to a failure in the processing of proprioceptive input controlling the regulation of postural tone of the distal upper limbs because SEPs were normal. The involvement of primary motor cortex might suggest that asterixis results from an impairment of a centrally generated motor-command signal controlling the postural tone of the distal upper limb.

Aged

Creatine kinase compactness and thiol accessibility during sodium dodecyl sulfate denaturation estimated by resonance energy transfer and 2-nitro-5-thiocyanobenzoic acid cleavage.

We have investigated the effect of increasing sodium dodecyl sulfate (SDS) concentrations on rabbit muscle cytosolic creatine kinase structure by two methods. We have first determined the variation of accessibility of the thiol groups of the enzyme during SDS denaturation by a technique which involves an irreversible chemical modification of CK accessible thiol groups, followed by NTCB cleavage before the unmodified cysteines in 8 M urea (pH 9) and analysis of the peptides obtained by resolutive gel electrophoresis, without sequencing. We have determined that the order of accessibility of CK MM cysteine residues during SDS denaturation is Cys-282, Cys-145 and then Cys-253. The fourth cysteine residue, Cys-73, is never titrated even at high SDS/CK molar ratio. In contrast, the three last residues are simultaneously titrated when CK is denatured in guanidinium chloride. Thus, SDS-denatured CK seems to retain some residual organized structure. In order to confirm this hypothesis, compactness of the molecule was estimated by fluorescence energy transfer between CK tryptophans and AEDANS, an extrinsic fluorophore. The location of this fluorophore on the accessible thiol of Cys-282 was verified by the previous technique. The results of these experiments do indicate that SDS-denatured CK is more compact than CK completely unfolded in guanidinium chloride.

Animals

Facial motor responses evoked by direct electrical stimulation of the trigeminal root. Localizing value for radiofrequency thermorhizotomy.

In Sweet's description of RF-thermocoagulation for trigeminal neuralgia, the trigeminal nerve was stimulated at 50 c/s to evoke paraesthesias, in order to check the electrode location before the thermolesion is made. In 1979, we changed the frequency to 5 c/s, so as to produce in addition twitches in the masticatory muscles (in stead of the less detectable tetanization produced by 50 c/s stimulation). Since then, we started to observe, also, twitches in the muscles innervated by the facial nerve. These twitches were not always in the Orbicularis oculi (which corresponds to the classical blink reflex), but also in the lower facial muscles. Such clinically observable evoked motor responses (EMR)-which had not been reported before--were noticed in 44% of the 459 procedures performed from 1979 to 1988. When EMR were present, the threshold to evoke paraesthesias before thermolesion, and the duration of the thermolesion for obtaining a marked hypoaesthesia covering the entire painful territory, were significantly lower, respectively p < 0.01 and p < 0.001, than when EMR were absent. This indicates that the electrode was closer to the nerve when EMR were present. As a probable consequence, recurrence of pain was significantly lower in the EMR (+) group: 1.4%, than in the EMR (-) group: 5.8% (p < 0.05). The twitches corresponded to the territory of the evoked paraesthesias in 95%, and to the hypoaesthetic area created by the thermolesion in 96%. So, getting EMR in the territory of the pain can be a helpful indicator for an accurate location of the electrode in the trigeminal root, according to its somatotopic organization. These EMR are hypothesized to be due to a trigemino-facial reflex. A preliminary intra-operative EMG study clearly shows that for EMR in the upper part of the face we are dealing with blink-like reflexes, whilst for EMR in the lower face, mechanisms still remain unclear and need further study to be understood.

Adult

Carpal tunnel syndrome in Mucopolysaccharidoses. A report of four cases in child.

Carpal tunnel syndrome (CTS) is very uncommon in childhood. Sixty-five cases are reported in the literature, principally due to metabolic diseases. In Mucopolysaccharidoses, prospective studies (Wraith and Alani, 1990) found a bilateral CTS in about 90%. We report four cases of Mucopolysaccharidoses, diagnosed on clinical and biological data (two cases of Hurler disease, and two cases of Hunter disease), in children aged less than five years. Each child had claw hands, without thenar atrophy. Median nerve conduction studies and electromyography confirm the CTS. Motor and sensory nerve conductions are normal in other nerves. Concentric needle studies show in two cases, on abductor pollicis brevis, spontaneous activities as repetitive discharges, fasciculations and multiplets. Median nerve stimulations reveal responses with late potentials during 70 ms due to reinnervation. The physiopathology of those carpal tunnel syndromes is discussed.

Action Potentials

Functional domains on chemically modified tau protein.

1. Neurofibrillary tangles present in Alzheimer's disease and, in a lower proportion, in aged brains are formed mainly by paired helical filaments. The microtubule-associated protein tau is a major structural component of these filaments. In order to increase our understanding of the aberrant behaviour of tau protein leading to its assembly into paired helical filaments, studies were carried out using chemical modifications of brain tau protein. 2. Selective carbamoylation of tau with KCNO resulted in an irreversible modification of lysine residues on tau protein. The capacity of chemically modified tau protein to induce tubulin assembly, under standard in vitro microtubule polymerization conditions, decreased gradually in relation to the increase in concentration of the modifying reagent. 3. Interestingly, carbamoylated tau protein exhibited the capacity to self-assemble into polymeric structures resembling those of paired helical filaments, after incubating the modified protein at concentrations higher than 1.0 mg/ml, at 37 degrees C with KCNO. 4. The nature of polymers obtained from cabamoylated tau protein was analyzed by ultrastructural studies. The data provide new clues toward our understanding of the anomalous interactions of tau in Alzheimer's disease.

Acylation

A tau-like protein interacts with stress fibers and microtubules in human and rodent cultured cell lines.

The cytoskeletal integrity of human and rodent cell lines was analyzed using site-directed monoclonal antibodies prepared from hybridomas. Secreting hybridomas were produced by immunizing mice with synthetic peptides from the C-terminal domain of the beta II-tubulin isotype, beta II(422-434), YQQYQDATADEQG, and the first imperfect repeat from brain tau, Tau-I(187-204), VRSKIGSTENLKHQPGGG. Two hybridomas were selected for this work: MTB6.22, an anti-idiotypic monoclonal antibody, which was obtained from a mouse immunized with the beta II-peptide and recognizes specific tubulin-binding domains on MAP-2 and tau; and Tau-I/1, which recognizes the repetitive binding sequences on tau and MAP-2. Immunoblots of cytoskeletal protein preparations from the five different tumor cell lines studied, showed the interaction of the site-directed antibodies MTB6.22 and Tau-I/1 with a group of proteins that co-migrate with brain tau. Immunoreactive tau components were also identified using an anti-tau monoclonal antibody (clone Tau-2), and several polyclonal anti-tau antibodies that interact with tau epitopes, other than those of the tubulin-binding domains. These tau-like proteins bound to a calmodulin-Sepharose affinity column and were eluted using 2 mM EGTA. Interestingly, washing the extracted cytoskeleton pellet with 5 x 10(-3) M Ca2+ for short periods of time selectively released the tau-like protein components, whilst most of the other cytoskeletal proteins remained in the pellet. On the other hand, immunofluorescence microscopy of detergent-extracted cells showed immunostaining of MAP components that appear to be co-localized in a discrete dot-like distribution along the stress fibers, which were revealed using rhodamine-phallacidin. Further support for the specificity of tau interaction with sites on tubulin and actin polymers was obtained with double-immunofluorescence, using the MAP-reactive monoclonal antibody MTB6.22 and a polyclonal antibody to a tubulin peptide containing part of the tau-binding domain on tubulin. Considering the anti-idiotypic nature of the MTB6.22 monoclonal antibody, our studies indicate that, in all the cell lines analyzed, a tau-like protein component is involved in mediating the interaction of both actin and tubulin polymers.

Actins

[Neurological complications caused by gold salts. Nosologic report apropos of a case].

Gold therapy is responsible for many neurological complications. We report a case presenting with the clinical and electrophysiological characteristics of neuromyotonia, polyradiculoneuritis and Morvan's fibrillary chorea. The various neurological complications of gold therapy and the possible relationships between these different syndromes are discussed.

Antirheumatic Agents

[Paralysis of abdominal muscles caused by Lyme disease].

A 67-year old patient with meningoradiculitis due to Borrelia Burgdorferi presented with unilateral trunk dysesthesias and severe asymmetrical abdominal distension. The causes of abdominal wall paralysis are reviewed.

Abdominal Muscles

[Ataxic monoparesis of the upper limb and suspension of the tonus caused by parietal lesion].

A 58-year old right-handed man with chronic non valvular atrial fibrillation developed an acute left upper limb ataxia with transient numbness and mild motor impairement. Two weeks later, there was a severe degree of ataxia of the left upper limb and prominent asterixis of the left hand. CT scan and MRI showed a small parietal infarct. Initial median nerve somatosensory evoked potentials (SEPs) showed mild impairement of right parietal responses with absent right frontal SEPs P22 and N30. Two months later, parietal responses were normal but right frontal SEPs P22 and N30 remained abolished while ataxia of left upper limb persisted. Electromyographic activity recorded at the same time showed periodic involvement of the left hand distal tonus. These finding suggested that both ataxia and asterixis were due to a single postcentral infarct. Frontal SEP components are known to convey proprioceptive inputs which could be received by neocerebellar afferent pathways. Generators of these components are presumably located in premotor cortex and can be activated through parietofrontal connections. In our case it can be assumed that the parietal infarct involved these connections, which are mainly implied in the regulation of postural tonus of the distal upper limbs, and simultaneously impaired neocerebellar afferent pathways resulting in the emergence of parietal ataxia.

Arm