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Biomedical subjects

G Colonna

Publications and source records attributed to G Colonna.

At least 37 records · Page 2Linked to original sources

Effect of galactose on alpha-crystallin.

Chromatographic separation of alpha-crystallin incubated with [3H]-labelled galactose showed the radioactivity to be concentrated in the low molecular mass subunits (20 and 40 kDa). The effect of glycation on the structural organization of alpha-crystallin was evaluated by FPLC analysis of native (pH 6.8 and 8.2) and glycated protein in dissociating conditions. Results suggest that the glycation acts on the protein surface by altering its charge distribution.

Animals↗

Molecular properties of glutamate dehydrogenase from the extreme thermophilic archaebacterium Sulfolobus solfataricus.

This study is concerned with the structural characterization in solution of the glutamate dehydrogenase from the Archaeon Sulfolobus solfataricus. At neutral pH both alpha-helix and beta-sheet constitute the secondary structure of this enzyme, on the basis of circular dichroism. A complex, temperature dependent self-association equilibrium regulates the formation of the enzyme quaternary structure, which seems to be accompanied by a reversible structural change. At 25 degrees C the enzyme is mostly represented by monomeric subunits at concentrations lower than 0.02 mg/ml, while oligomers are predominant at concentrations higher than 0.12 mg/ml. The mid-point of the association curve shifts from 0.05 mg/ml at 25 degrees C to about 0.1 mg/ml at 45 degrees C. Only the oligomeric form appears to be temperature resistant. Monomeric and oligomeric enzyme show distinct behaviour on guanidine hydrochloride perturbation at neutral pH. The monomer denaturation, although complex, is reversible. Two fluorescent tryptophan classes are detectable in the monomer, monitoring the independent unfolding of two regions through a multistate transition. Instead, the oligomeric protein shows a complex denaturation pattern with the tendency to aggregate irreversibly at high denaturant concentration.

Circular Dichroism↗

Circadian variation of ischemic threshold in syndrome X.

To evaluate whether the ischemic threshold has a circadian rhythm in patients with syndrome X, we analyzed 90 episodes of ST depression detected on 24-hour Holter recordings of 12 such patients. Ischemic threshold was considered as heart rate (HR) at 1 mm ST depression. To correct for differences in basal HR among patients, however, the ischemic threshold was also calculated as a normalized index of HR at 1 mm ST depression: [(HR at 1 mm ST-24-hour modal HR)/24-hour modal HR]-100. Mean hourly values of both absolute and normalized HRs at 1 mm ST depression were obtained by grouping and averaging respective values of all episodes detected in every hour of the day in all patients. Chronobiologic analysis was performed by single cosinor method. A significant circadian rhythm was found for HR (mesor 76 beats/min, amplitude 10 beats/min, acrophase at 2:16 P.M., p < 0.001), number of episodes of ST depression (mesor 3.75, amplitude 2.9, acrophase at 2:45 P.M., p < 0.001) and cumulative time of ischemia, with a high correlation of distributions. Episodes of ST depression showed a double peak initially in the morning, and again in the afternoon. Both raw and normalized values of HR at 1 mm ST depression also had a significant circadian variation in ischemic threshold, which was lower in the night and early morning hours, progressively increased until the first afternoon hours, and subsequently decreased in the evening.(ABSTRACT TRUNCATED AT 250 WORDS)

Analysis of Variance↗

Specific interaction between cyclophilin and cyclic peptides.

Cyclophilin A, a peptidyl-prolyl cis-trans is isomerase that catalyzes the otherwise slow isomerization of Xaa-Pro imidic bond, specifically binds the immunosuppressant cyclosporin A. Herein we report evidence on binding of cyclolinopeptide A and its synthetic analogue, [Aib5,6-D-Ala8]cyclolinopeptide, to bovine cyclophilin A. Binding experiments were monitored by fluorescence, CD, and second-derivative spectroscopies, evidencing no remarkable rearrangement of protein structure organization. The possibility that cyclolinopeptide A could act as a substitute of cyclosporin A in the immunosuppression modulation is also briefly discussed.

Amino Acid Isomerases↗

[Conservative surgical treatment of rheumatic mitral stenosis].

We prospectively evaluated 50 patients with mitral stenosis (43 women and 7 men; mean age 45 years) to assess the results of surgical reconstruction of the mitral valve. All patients underwent a complete echocardiographic examination before and after operation. Surgical reconstruction was extensive, and included commissurotomy, thinning of the valvular leaflets, calcification removal, splitting of subvalvular apparatus, and posterior annuloplasty. Surgical reconstruction resulted in increasing mitral functional area from 0.89 +/- 0.23 to 2.07 +/- 0.42 cm2. NYHA functional class decreased from 2.76 +/- 0.55 to 1.52 +/- 0.71. Before discharging, 10% of patients had moderate mitral insufficiency. All patients were followed at 6-month intervals in our clinic. Mean follow-up was 37 +/- 18 months. During follow-up 5 patients (10%) developed severe mitral incompetence, which required mitral valve replacement. Chi-square and Student t-test were used to analyze the correlation between variables and outcome. The occurrence of severe mitral incompetence was correlated with: the degree of enlarged left atrium; chronic atrial fibrillation; postoperative more than mild mitral regurgitation. No correlation was found with anatomical parameters detected by echocardiography, or intraoperative anatomy. In conclusion, surgical reconstruction of mitral stenosis provides satisfactory short-term results. We believe that the low mortality rate and the low incidence of complications justify an effort to save the native mitral valve before considering prosthetic replacement. More attention to the development of residual mitral incompetence with intraoperative control may improve long-term results.

Adult↗

Spectrin Anastasia (alpha I/78): a new spectrin variant (alpha 45 Arg-->Thr) with moderate elliptocytogenic potential.

We describe a white Italian kindred in which hereditary elliptocytosis (HE) is associated with abnormal level of alpha I/78 peptide in spectrin digest. Clinical phenotype varied among the family members ranging from asymptomatic to mild haemolytic HE. The original mutation responsible is a G-C substitution of the spectrin alpha-gene: alpha 45 Arg-->Thr (AGG-->ACG). The corresponding spectrin is designated spectrin Anastasia. Utilizing a secondary structure predictive method we suggest that this mutation has a poor capability to induce conformational changes of the tetramerization site and thus shows a moderate elliptocytogenic potential.

Adult↗

Determination of hydrophobic hydration in protein unfolding by an intrinsic reference state.

This paper describes a method for the evaluation of the unfolding heat capacity change of proteins by their amino-acid composition. The method hinges on a set of hydration heat capacity changes of amino acids extracted from the Protein Data Bank of crystallographic structures (Oobatake, M. and Ooi, T. (1988) J. Biochem. (Tokyo) 104, 433-439). This avoids problems linked to the choice of an arbitrary reference state. The published values have been normalized with respect to the total surface area of each amino-acid residue and related to the non-polar surface. The relationship found for amino acids allows a straightforward estimate of the unfolding heat capacity change of globular proteins. Predicted values for a large set of proteins fall within the experimental error. The devised algorithm shows that the unfolding heat capacity change depends on chain length and provides an explanation for the physical limits imposed upon this quantity.

Amino Acids↗

Rat protein SV-IV (seminal vesicle protein No. 4) accelerates human blood coagulation in vitro by selective inhibition of antithrombin III.

The seminal vesicle protein No. 4 (SV-IV) secreted from the rat seminal vesicle epithelium, possesses immunosuppressive and anti-inflammatory properties and it is a potent inhibitor of platelet aggregation both in vivo and in vitro. This research aimed to investigate the possible effect of SV-IV on the process of human blood coagulation. Preliminary experiments showed that the recalcification time (RT) of platelet-poor plasma (PPP) samples, obtained from both normal subjects and patients affected by some hemorrhagic disorders, was found to be markedly reduced in the presence of micromolar amounts of SV-IV. It was demonstrated that the concentration of free antithrombin III (AT III) occurring in blood sera obtained from PPP samples recalcified in the presence of SV-IV was significantly decreased in comparison with sera obtained from PPP recalcified in the absence of SV-IV. It was also shown that PPP treatment with SV-IV significantly reduced the concentration of free AT III without affecting the levels of other plasma serine protease inhibitors, such as alpha 2-macroglobulin, alpha 1-antitrypsin and C1-inhibitor. In addition, the RT of PPP treated with a specific rabbit anti-AT III polyclonal antiserum (anti-AT III treated PPP) was not modified by SV-IV. These findings were confirmed by the observation that the addition of SV-IV into an in vitro coagulation system, containing pure fibrinogen, alpha-thrombin and AT-III, resulted in complex suppression of thrombin inhibition by AT III. No other steps of the blood clotting process (prothrombinase complex, factor XIII, fibrinogen concentration) were affected by SV-IV.

Animals↗

Enthalpy-entropy balance and convergence temperatures in protein unfolding.

We find that isoenthalpic and isoentropic temperatures characterizing the unfolding of small globular proteins are linked by a simple relationship, which takes into account the occurrence of common values of specific unfolding enthalpy and entropy changes. The difference between these temperatures implies that the hydration effect favors protein folding over a quite large range of temperatures.

Models, Theoretical↗

Referee bias.

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Peer Review, Research↗

In vitro cross-linking of calf lens alpha-crystallin by malondialdehyde.

The effect of malondialdehyde on structural features of bovine alpha-crystallin has been investigated by absorption and fluorescence spectroscopy as well as by far-UV circular dichroism. Experimental evidence suggests the occurrence of intermolecular cross-linking induced by malondialdehyde. This cross-linking does not seem to affect the tryptophan environment, as suggested by intrinsic protein fluorescence. On the contrary, the time dependence of far-UV dichroic activity indicates that the cross-linking is accompanied by a secondary structure change. The formation of high molecular mass aggregates, evidence by electrophoresis in denaturing conditions, leads to irreversible alpha-crystallin aggregation due to extensive intermolecular cross-linking. Since malondialdehyde is produced in vivo as a breakdown product of lipid peroxidation the possible involvement of this molecule in the pathological mechanism of cataract formation has been briefly discussed.

Animals↗

[Neurovegetative changes before and during episodes of silent ischemia in variant angina].

In order to evaluate whether variations in autonomic nervous tone have a significant role in the induction of coronary arterial spasm in variant angina, we analyzed the changes in heart rate variability (HRV) related to spontaneous episodes of ST-segment elevation, recorded during 24-hour ambulatory ECG monitoring, in 13 patients with variant angina (9 men and 4 women, aged 63 +/- 12 years). In order to obtain an accurate analysis of HRV changes, we only included ischemic episodes characterized by silent ST-segment elevation, lasting at least 3 min and without any ST change in the previous 30 min. HRV indexes in the time domain (RR interval, standard deviation of RR intervals [SD], pNN50, r-MSSD) and in the frequency domain (LF = 0.04-0.15 Hz, HF = 0.15-0.40 HZ, LF/HF ratio) were calculated on 2 min intervals, centered at 15 min before (15B), 5 min before ed 1 min before (1B) the appearance of ST elevation, as well as at peak of ST-segment elevation. Of 161 ischemic episodes found on 24-hour Holter recordings, 60 (37%) fulfilled the inclusion criteria for analysis (4.6 +/- 3.5 episodes/patient, range 1-12). The duration of the selected episodes was 6 +/- 2.5 min and ST elevation was 2.2 +/- 1.0 mm. Heart rate (HR) did not have any change before ST elevation, whereas it showed a small, but significant increase at peak ST (73 +/- 12 versus 67 +/- 11 b/min at 15B, p < 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Inhibition of interleukin-1 release and activity by the rat seminal vesicle protein SV-IV.

SV-IV, a 9.8-kd protein isolated from rat seminal vesicle secretion, has been shown to have strong non-species-specific immunosuppressive, anti-inflammatory, antithrombotic, and antiphospholipase A2 properties. The present investigation was undertaken to determine the mechanism of action of its immunosuppressive effects. It was found that SV-IV is a potent inhibitor of interleukin-1 (IL-1) release from lipopolysaccharide (LPS)-activated human adherent monocytes and an effective inhibitor of IL-1-induced thymocyte proliferation. The ability of SV-IV to form a noncovalent dimeric association with IL-1 alpha but not with IL-1 beta, its ability to induce a marked decrease of IL-1 binding to its own receptors on the thymocyte surface, and its capacity to bind specifically to the macrophage plasma membrane might play an important role in the molecular mechanism of these inhibitory effects.

Animals↗

Structural organization and stability of a thermoresistant domain generated by in vivo hydrolysis of the alpha-crystallin B chain from calf lens.

A protein fragment (M(r) approximately 9000) isolated from the cortex of nonpathological calf lenses has been structurally characterized. The polypeptide structure was well organized (39% alpha-helix, 33% beta-structure, and 28% remainder) according to the far-ultraviolet circular dichroism. The fluorescence was heterogeneous for the presence of two tryptophan classes. Structure perturbation by pH and denaturant revealed cooperative structural transitions which are characteristics of a globular organization. A single-step unfolding curve induced by Gdn-HCl (midpoint = 1.38 M Gdn-HCl) was monitored by emission maximum shift as well as by far-ultraviolet circular dichroism. This transition was analyzed as a two-state process. The standard free energy of unfolding in the absence of the denaturant, delta Go (H2O), was found to be 10.80 +/- 0.25 kJ/mol at 20 degrees C and pH 7.4. The fragment also shows an unusual thermal resistance. Its structure was unperturbed up to 90 degrees C according to the fluorescence and dichroism. This last property, its peculiar amino acid composition, and the sequence of a small segment are shared, among crystallins, only with the N-terminal region of the alpha-crystallin B chain. A search for proteolysis sites along the alpha-crystallin B chain sequence revealed that it possesses specific points for proteinase attack. These sites are particularly exposed and clustered in a very flexible region in the middle of the protein sequence. They are also well represented in the C-terminal extension of the molecule while a few are buried in the N-terminal region.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of temperature on the propylamine transferase from Sulfolobus solfataricus, an extreme thermophilic archaebacterium. 1. Conformational behavior of the oligomeric enzyme in solution.

The effect of temperature on the molecular structure of propylamine transferase from Sulfolobus solfataricus has been investigated. Sulfolobus solfataricus is an extreme thermophilic archaebacterium with an optimum living condition at 90 degrees C. The enzyme is an oligomeric (trimer) protein of molecular mass 112 kDa. The frictional ratio for the native protein suggests an irregularly shaped compact globular structure. The protein matrix is well organized as suggested by far ultraviolet circular dichroism at 25 degrees C (18% alpha helix, 43% beta structure, 19% beta bends and 20% unordered: root mean square = 7). Structural effects of temperature were investigated over 25-85 degrees C. The protein retains its quaternary structure in this temperature range. A highly reversible subtle conformational transition was detected by numerous structure-dependent techniques over 40-50 degrees C, with a midpoint centered at 45 degrees C. Functional data also support this view. In fact, two enzyme forms, characterized by different catalytic properties, are present in solution. The Arrhenius plot suggests the occurrence of two different activation-energy-dependent processes, one at a temperature higher and one at a temperature lower than 45 degrees C. The transition has been considered as a molecular switch between two protein populations at equilibrium with different functional and structural properties, temperature modulated. A physiological role for the molecular switch has also been postulated. The protein also shows some subtle and reversible spectroscopic changes around 75 degrees C. The molecular basis of the thermophilic nature of this enzyme seems to reside in its capability to dynamically couple catalytic and structural events to the thermal properties of the ambient medium.

Amino Acids↗

Effect of temperature on the propylamine transferase from Sulfolobus solfataricus, an extreme thermophilic archaebacterium. 2. Denaturation and structural stability.

The thermal stability of propylamine transferase from Sulfolobus solfataricus, an extreme thermophilic archaebacterium, has been characterized thermodynamically by a Van't Hoff analysis. Conformational transitions induced by guanidine hydrochloride, as well as by temperature, have been linked together in a scheme involving six equilibria, which arise from both dissociation and unfolding. The mechanism by which the protein achieves thermal stabilization is quite unusual. It is driven by a conformational equilibrium between two forms of different stability. The stability of each form towards denaturation is characterized by a specific temperature dependence. The low-temperature form, indicated as 'form A', is stable over 12-89 degrees C. Its stability maximum is 36.8 kJ/mol at 50 degrees C. 'Form B', which is populated at higher temperature, spans the interval 28-146 degrees C. Its stability maximum is 71.6 kJ/mol at 87 degrees C. A possible explanation for the mechanism underlying this behaviour is discussed assuming that two major terms contribute to stability, i.e. hydrophobic interactions arising from burying of the accessible surface residues as well as conformational entropy. The thermal stabilization of the enzyme seems to depend on effects related to both an overall increase of flexibility and a concomitant decrease of the area buried upon folding. In this regard proteins from extreme thermophilic organisms appear to be a useful model to shed new light on the general problem of protein stability.

Enzyme Stability↗