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C Diaconescu

Publications and source records attributed to C Diaconescu.

At least 19 recordsLinked to original sources

Shortened insulin with enhanced in vitro potency.

After it has been shown that removal of residues B26-B30 leaves insulin with full biological activity, provided the new C-terminus is amidated (Fischer et al. (1985) Biol. Chem. Hoppe-Seyler 366, 521-525), it is demonstrated here that it does not even preclude enhancement of potency. 7 analogues of des-(B26-B30)-insulin-B25-amide were prepared by trypsin-mediated semisynthesis, the replacements being D-PheB24; HisB25, D-PheB25, TrpB25, TyrB25; D-PheB24,B25 and D-PheB24, TyrB25. Mere conversion of the configuration of B25-phenylalanine reduces in vitro potency to 0.5%. If B25-phenylalanine is, however, substituted by histidine or tyrosine activity is increased to 310 or 230, respectively. According to the features common to these two side chains, the favourable effect should be due to their ring structure with balanced aromatic and polar or H-bonding properties, respectively. The results indicate that in the complete insulin molecule the C-terminal pentapeptide modulates the subtle role that residues B24 and/or B25 play in receptor binding and activity; its presence may have a positive or negative effect. The drastic differences in activity between the shortened analogues are in no ways reflected in the CD spectra which are very similar, though clearly different from that of native insulin.

Adipose Tissue

Recognition of covalent insulin-receptor complexes on viable adipocytes by anti-insulin antibodies.

Isolated rat adipocytes were photo-affinity-labelled with B2-(4-azido-2-nitrophenylacetyl)-des-PheB1-insulin or B29-(4-azido-2-nitrophenylacetyl)insulin. Four anti-insulin antibodies (3 monoclonal, 1 polyclonal) were tested for their ability to inhibit the persistent stimulation of lipogenesis caused by the covalently bound insulin [Brandenburg et al. (1980) Nature (London) 286, 821-822]. The polyclonal and 2 monoclonal antibodies, directed against the C-terminus of the B-chain, gave a significant depression, while one antibody, directed against the region A(8-10), was without effect. Under reversible conditions, without irradiation, all antibodies completely inhibited lipogenesis. For the polyclonal antibody this is shown in a dose-dependent way. It is concluded that the effective antibodies can recognize their epitope because it is accessible on the surface of the complex and does not represent part of the receptor-binding surface of insulin. This binding leads to interference with the generation and/or transmittance of the biological signal.

Adipose Tissue

Structure-function relationships of shortened [LeuB25]insulins, semisynthetic analogues of a mutant human insulin.

Replacement of B25-phenylalanine by leucine in the insulin sequence causes marked inactivation. The effect of this sequence variation was studied here in des-(B26-30)-insulin. [LeuB25]des-(B26-30)-insulin and its B25-amide were prepared by trypsin-mediated semisynthesis from N-terminally protected des-(B23-30)-insulin and synthetic tripeptides. The relative lipogenic potency in isolated rat adipocytes was 8.0% for the truncated analogue with a free B25-carboxyl function, and 18.1% for the amidated analogue. Binding to cultured human IM-9 lymphocytes was 4% and 9%, respectively. Thus, both shortened insulins are markedly more active than [LeuB25]insulin. The PheB25----LeuB25 substitution in both the shortened and the full sequence has a moderate effect on the CD spectrum, indicating that the gross main chain conformation is largely retained in both molecules. Independent of the substitution an absolute increase of the circular dichroism is observed upon amidation of the B25-carboxyl group.

Adipose Tissue

Time-dependence of biological activity induced by covalent insulin-receptor complexes in rat adipocytes.

Lipogenesis in isolated adipocyte preparations is stimulated when photosensitive insulin derivatives are attached covalently to specific receptors. This response was compared quantitatively with that to reversibly associated insulin, and it was shown that both covalent and reversible insulin-receptor complexes behave very similarly. The extent of stimulation of lipogenesis was studied as a function of time. Cells were incubated in buffer for various times before addition to vials containing 0 (basal) or 10 ng of monocomponent insulin/ml (maximal) and [U-3H]glucose. After 60 min, the toluene-soluble [3H]lipids were measured. The maximal stimulation induced by reversibly bound insulin was virtually constant over a period of 4 h. In contrast, adipocytes to which N alpha B2-(2-nitro-4-azidophenylacetyl)-des-PheB1-insulin had been covalently attached at the start of the experiment showed a loss of stimulation with time when incubated at 37 degrees C. This loss was decreased in the presence of lysosomotropic agents such as chloroquine at concentrations (approx. 200 microM) that had very little or no effect on the basal and maximal lipogenesis rates. A simple method was used to transform the measured rate of loss of stimulation into a rate of loss of effective units. A half-time of 80 min was calculated for the effective covalent insulin-receptor units in adipocytes at 37 degrees C at pH 7.4. This is very close to values reported by others for the internalization of covalent complexes in these cells, suggesting that this may be the causative event for the deactivation of the insulin-receptor unit. The inhibitory effect of chloroquine on the deactivation may indicate that the insulin-receptor complex can function even after internalization.

Adipose Tissue

[LeuB24]- and [LeuB25]insulins are not antagonists of lipogenesis in adipocytes.

Semisynthetic human [LeuB24]-and [LeuB25]insulins were investigated to determine whether they show antagonistic properties towards insulin-stimulated lipogenesis in isolated fat cells. In contrast to other reports, we could detect only an additive agonistic effect when constant concentrations (e.g. 0.3 ng/ml) of the analogues were mixed with varying concentrations of insulin, or when constant concentrations (e.g. 0.3 ng/ml, 0.6 ng/ml) of insulin were mixed with varying concentrations of the analogues. Similar results were obtained with mixtures of insulin and NA2-acetyl- or NA2-propionyl-des-GlyA1-insulins. These results do not support the contention that a diabetic state could be caused by either of these mutant human insulins.

Adipose Tissue

Covalent linking of photoreactive insulin to adipocytes produces a prolonged signal.

The first step of insulin's many cellular functions is specific binding to receptors on the plasma membrane of target cells. The subsequent molecular basis of insulin action, particularly the coupling mechanism(s) involved in transmitting the biological message, remains largely unknown. Our approach to the problem centres on the application of a series of well characterized photo-insulins carrying an aryl-azido or nitro-aryl-azido group in positions A1, B1, B2 or B29 (refs 2--4). Specific binding to membrane components could be demonstrated with B1-, B29- (ref. 5) and A1-photo-insulins as well as a B2-derivative. We now report that lipogenesis is increased to, and maintained at, near-maximal levels for several hours after photoinduced covalent binding of B2- (2-nitro,4-azidophenylacetyl)-des-PheB1-insulin (Napa-DP-insulin) to living adipocytes.

Adipose Tissue

Biotinylinsulins as potential tools for receptor studies.

The preparation of affinity columns that contain insulin attached to Sepharose in a targeted manner by way of biotin-avidin noncovalent bonds is described. Insulin was acylated selectively at the amino terminus of the B chain with the N-hydroxysuccinimido ester of biotin to form N(alpha,B1)-biotinylinsulin. The ability of this modified insulin to stimulate rat epididymal adipocytes was (mean +/- SD) 94 +/- 9.6% (P, 0.05) that of the control insulin. N(alpha,B1)-Biotinylinsulin displaced 4-hydroxyazobenzene-2'-carboxylic acid from avidin, demonstrating affinity for this protein. The formation of the N(alpha,B1)-biotinylinsulin-avidin complex was visualized by cellulose acetate electrophoresis at pH 4. N(alpha,B1)-Biotinylinsulin combined with avidin attached to Sepharose to form affinity columns in which the hormone was attached to the support by strong noncovalent bonds. The determination of the loading of avidin-Sepharose columns with biotinylinsulin was greatly facilitated by the attached biotin which provided a marker whose concentration could be assessed accurately by titration with avidin. Biotinylinsulin attached to avidin-Sepharose beads retained the ability to stimulate rat epididymal adipocytes. The activity of several samples of these beads was about 15% that of free biotinylinsulin, based on the amount of biotinylinsulin anchored to the support. The advantages of biotinylated hormones for the targeted attachment of hormones to solid supports are discussed.

Adipose Tissue

Biological action and fate of photoaffinity-labelled insulin-receptor complexes.

Covalent linking of two photoactivatable insulin derivatives, B2-(2-nitro,4-azidophenylacetyl)-des-PheB1-insulin and B29-(2-nitro,4-azidophenylacetyl)-insulin to viable rat adipocytes gives a system, which contains a fixed stoichiometry between hormone and receptor. The biological signal of prolonged lipogenesis has been used to study several aspects of insulin binding and action: the role of the site of the crosslink between insulin and receptor, recognition of bound photoinsulin by anti-insulin antibodies, the half-life of the biologically active complex, the pH-dependence of the biological signal, and the possible role of internalization. Furthermore, the effect of trypsin on the insulin receptor, as well as the insulin-receptor complex, has been investigated and a refined model of the receptor is presented.

Adipose Tissue

[Acute rhinopharyngitis, acute interstitial pneumonia and parieto-frontal brain abscess with H. influenzae type B].

The paper deals with a parietal frontal cerebral abscess caused by HITB biotype I in a girl aged 8 months. First a meningitis is suspected, then a tuberculous meningitis unsuccessfully treated with ampicillin, biseptol, respectively INH, rifampicin, pyrazinamide, prednisone, phenobarbital and chloramphenicol. The patient died through a central respiratory standstill on the 17th day of disease. The anatomopathological examinations revealed a giant parietal frontal cerebral abscess. H.influenzae, (serum type B, biotype I) resistant to ampicillin, chloramphenicol, Kanamycin, rifampicin and tetracycline but sensitive to erythromycin and neomycin was also found. A pharyngeal infection with HITB was presumably the origin of the abscess.

Acute Disease

[The comparative testing of the tuberculostatic sensitivity of M. tuberculosis strains in 2 diagnostic centers in Romania].

The study of sensibility was carried out on 152 strains of M. tuberculosis by the method of absolute concentrations in two laboratories in Romania. The results obtained show an agreement in 71.05% of the cases. The high proportion of the disagreeing results shows the role of subjective and objective factors. The paper shows the possible modalities for correcting these factors.

Anti-Bacterial Agents