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Biomedical subjects

A Sobel

Publications and source records attributed to A Sobel.

At least 19 recordsLinked to original sources

The protein kinase C inhibitor H7 blocks phosphorylation of stathmin during TPA-induced growth inhibition of human pre-B leukemia REH6 cells.

The human pre-B acute lymphoblastic leukemia cell line REH6 was used to analyze the regulation of a ubiquitous intracellular phosphoprotein stathmin (Mr 19,000, pl = 5.6-6.2). We demonstrated by 32P-labeling that the short (1 h) treatment of the REH6 cells with the tumor promoting phorbol ester, 12-O-tetradecanoylphorbol-13-acetate (TPA), resulted in a rapid phosphorylation of at least three (P1, P2 and P3) stathmin isoforms without an alteration of stathmin isoform expression. Furthermore, Western blot analysis with specific antiserum showed that the prolonged period (48 h) of TPA treatment partially reduced protein levels particularly of two (N2 and P2) stathmin isoforms. The potent and relatively specific protein kinase C (PKC) inhibitor, 1,(5-isoquinolinesulphonyl)2methylpiperasine dihydrochloride (H7), partially inhibited these TPA effects, whereas the specific calmodulin inhibitor R24571 (calmidazolium) had no effect upon these events. Our findings suggest that stathmin phosphorylation in REH6 cells could be in part mediated by PKC activation.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine

[Some aspects of epidemiology in insulin-dependent diabetes mellitus (IDDM) (I)].

Epidemiological studies based on registries from many centers in the world revealed geographical variation of IDDM, with the highest incidence in Scandinavian countries. There is a gradient north to south in occurrence of IDDM, and differences in incidence between urban and rural populations. Poland is a country with a rather low incidence of IDDM, not exceeding 6/100,000 in the population 0-29 years of age until 1992. Generally a higher incidence of IDDM has been observed in Whites, there are differences between migrating populations ethnically homogenous. The highest incidence occurs in 10-14 age group, with male sex predominance.

Adolescent

[Some aspects of epidemiology in insulin-dependent diabetes mellitus (IDDM) (II)].

Seasonality is a characteristic feature of IDDM incidence. The lowest incidence is observed in summer, whereas the highest in winter/autumn. The risk of IDDM increases in children with independently: breast feeding shorter then 3 months, feeding with cow's milk instead of breast feeding, early introducing of solid diet in babies, or high consumption of cow's milk in later years. Children with new onset IDDM have elevated levels of the antibodies against cow's milk proteins and beta-lactoglobulin. It has been proved that there is a connection with HLA DQalfaArg52 i DQbeta-Asp57 and polymorphic region of insulin gene, and the IDDM susceptibility.

Animals

Expression of transfected stathmin cDNA reveals novel phosphorylated forms associated with developmental and functional cell regulation.

Stathmin is a ubiquitous, highly conserved phosphoprotein, which most likely acts as an intracellular relay integrating various transduction pathways triggered by extracellular signals. Two post-translational isoforms (alpha and beta) have been previously identified whose increasingly phosphorylated forms migrate as a set of isoelectric variant spots (molecular mass 19 kDa; pI 6.2-5.6) on two-dimensional electrophoretic gels. In parallel with the phosphorylation of these forms of stathmin, two sets of three proteins migrating with slightly higher apparent molecular masses (21 and 23 kDa respectively) also incorporated radioactive phosphate in response to cell regulation through various transduction pathways. These phosphoproteins, previously referred to as proteins '16' and '17', share several biochemical properties with stathmin and are recognized by antibodies directed to stathmin or to stathmin peptides. Furthermore, when rat stathmin cDNA was transfected into mouse myogenic C2 cells, it directed the expression of protein sets 16 and 17 together with the 19 kDa forms of stathmin, as detected with a species-specific anti-stathmin antiserum. Proteins 16 and 17 are thus novel phosphorylated derivatives of stathmin, encoded by the same cDNA as its previously identified 19 kDa forms. These results increase the known complexity and diversity of stathmin patterns, which may yield the molecular support for its proposed role as a relay integrating various signals which regulate the proliferation, differentiation and functions of cells during development and adult life.

Animals

High expression of stathmin in multipotential teratocarcinoma and normal embryonic cells versus their early differentiated derivatives.

Stathmin is a ubiquitous cytoplasmic protein, phosphorylated in response to agents regulating the proliferation, the differentiation and the specialized functions of cells, in a way possibly integrating the actions of diverse concomitant regulatory signals. Its expression is also regulated in relation with cell proliferation and differentiation and reaches a peak at the neonatal stage. To assess the possible role of stathmin at earlier stages of development, we examined its expression and regulation in embryonal carcinoma (EC) and derived cell lines as well as in the early mouse embryo. Interestingly, stathmin is highly abundant in the undifferentiated, multipotential cells of the F9, 1003 and 1009 EC cell lines. Its high expression markedly decreased, both at the protein and mRNA levels, when F9 cells were induced to differentiate into endodermal-like cells with retinoic acid and dibutyryl-cAMP. Stathmin was also much less abundant in differentiated cell lines such as the trophectodermal line TDM-1, as well as in several F9- and 1003-derived cell lines committed to differentiate towards the mesodermal and neuroectodermal lineages but still proliferating. Therefore, the observed decrease of stathmin expression is not related to the reduced proliferation rate but rather to the differentiation of the multipotential EC cells. The immunocytochemical pattern of stathmin expression during early mouse development indicated that stathmin is also highly abundant in the multipotential cells of the inner cell mass of the blastula, whereas it is much lower in the differentiated trophectodermal cells. These results confirm the physiological relevance of the observations with EC cells, and suggest that stathmin, in addition to its high expression at later stages of development and in the adult nervous system, may be considered as a new marker of the multipotential cells of the early mouse embryo.

Animals

Stathmin phosphorylation is regulated in striatal neurons by vasoactive intestinal peptide and monoamines via multiple intracellular pathways.

Stathmin is a ubiquitous soluble protein whose phosphorylation is associated with the intracellular mechanisms involved in the regulations of cell proliferation, differentiation, and functions by extracellular effectors. It is present in the various tissues and cell types as at least two distinct isoforms in their unphosphorylated (Mr approximately 19,000; pI approximately 6.2-6.0) and increasingly phosphorylated forms. Stathmin is particularly abundant in brain, mostly because of its high concentration in neurons, where the protein is a major phosphorylation substrate. In intact striatal neurons grown in primary culture, the cyclic AMP-increasing drug forskolin and the protein kinase C-activating agent 12-O-tetradecanoylphorbol 13-acetate (TPA) induced a potent phosphorylation of stathmin. Their actions were at least partially additive, appearing actually most likely "sequential" on various phosphorylated states of stathmin. Vasoactive intestinal peptide (VIP) reproduced the forskolin-like stimulation but stimulated also other, TPA, and/or Ca2(+)-like protein phosphorylations. These actions of VIP were already maximal after 5 min and were long lasting, still important after 2 h. In addition, concentrations as low as 1 nM were enough to obtain a significant effect, on both cyclic AMP-dependent and independent phosphorylations. Dopamine and the beta-adrenergic agonist isoproterenol were also able to stimulate stathmin phosphorylation, but only with a forskolin-like pattern. Their actions were not additive to those of VIP, confirming previous results on the colocalization of both dopamine D1 and noradrenaline beta 1 receptors with VIP receptors on striatal neurons.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Didanosine pharmacokinetics in patients with normal and impaired renal function: influence of hemodialysis.

The pharmacokinetics of didanosine were investigated following oral administration of a single 375-mg dose to eight human immunodeficiency virus-seropositive patients with normal renal function and eight human immunodeficiency virus-seropositive uremic patients. In uremic patients, the plasma half-life was longer than that in control patients (respectively, 4.5 +/- 2.2 and 1.6 +/- 0.4 h). The ratio of total plasma clearance to absolute bioavailability was four- to fivefold lower in uremic patients than in patients with normal renal function (respectively, 491 +/- 181 and 2,277 +/- 738 ml/min). Because of the decrease in elimination, concentrations in plasma were higher for uremic patients than for control patients; the maximum concentrations of drug in plasma were, respectively, 3,978 +/- 1,607 and 1,948 +/- 994 ng/ml; the areas under the concentration-time curve were, respectively, 14,050 +/- 4,262 and 3,000 +/- 956 ng.h/ml. Didanosine was removed by hemodialysis with an extraction ratio of 53% +/- 8%, a hemodialysis clearance value of 107 +/- 21 ml/min, and a fractional drug removal during a 4-h dialysis of 20% +/- 8% of the dose. Dosage adjustments are necessary in uremic patients.

Administration, Oral

[AIDS-related progressive multifocal leukoencephalopathy limited to U fibers, responsible for subacute encephalopathy with normal CT scan findings].

A 41-year-old male homosexual with AIDS was hospitalized for temperature elevation to 40 degrees C with confusion. Neurologic evaluation found psychomotor slowing and temporospatial disorientation with no focal signs. The CD4 count was 100/mm3. CSF analysis and the CT scan were normal. Despite antiviral treatment the patient died fifteen days after admission. Gross appearance of the brain was normal. Histologic examination disclosed multiple, small foci of demyelination characteristic of progressive multifocal leukoencephalopathy. These foci were disseminated among the U fibers. In situ hybridization and immunocytochemical studies demonstrated papovavirus particles in oligodendrocytes and a few astrocytes. This case shows that papovavirus infection in AIDS patients may be responsible for a diffuse febrile encephalopathy with normal CT scan findings and a rapidly progressive course.

AIDS-Related Opportunistic Infections

[Private practice-hospital network for the management of HIV infected patients. An initial survey in the Val de Marne region].

A transmissible disease, necessitating medical, social and preventive management, AIDS implicates the involvement of diverse parts of the social and health care systems. The private health sector (general practitioners and specialists, nurses, physical therapists, dentists) must assure part of this management throughout the evolution of the disease. Discussions on how to handle the transference of the responsibility from the hospital to the private health sector have given rise to the network concept. Prior to establishing such a network, an inquiry was carried out to determine the practitioner's level of theoretical knowledge of AIDS and their involvement with infected patients. Mastery of theoretical elements varied, but better scores were obtained on questions dealing with diagnosis and treatment. As regards private practice (care, follow-up, prevention), responses indicated that, in the region around Créteil, experience was moderate, not exceeding 300 acts per year. Thirty doctors had more than a passing acquaintance with the disease and this activity had increased slightly from 1989 to 1990. As most patients were simultaneously followed by a staff physician, private practitioners preferred an annual update to long-term study leading to specialization. Thus the private sector, which is far from being saturated, has sufficient knowledge available and dispenses care ethically in agreement with institutional recommendations. The high number of responses (356 for 1,353 questionnaires) indicates the credibility of the inquiring organizations and the extreme sensitivity of the medical profession to AIDS.

Acquired Immunodeficiency Syndrome

Stathmin phosphorylation patterns discriminate between distinct transduction pathways of human T lymphocyte activation through CD2 triggering.

CD2 triggering of human T lymphocyte activation has been associated with the activation of different interacting protein kinases, including protein kinase C (PKC). However the precise roles of its phosphorylated substrates are still unknown. We show here that PKC-dependent and -independent pathways are responsible for the CD2-induced phosphorylation of stathmin, a ubiquitous soluble phosphoprotein, most likely acting as a general intracellular relay integrating various second messenger pathways. The phosphorylated variants of stathmin provide a fingerprint reflecting the second messenger pathway(s) stimulated. The respective roles of both PKC and stathmin in the regulation of T lymphocyte proliferation are discussed.

Antigens, Differentiation, T-Lymphocyte

Stathmin: a relay phosphoprotein for multiple signal transduction?

Stathmin is a ubiquitous, phylogenetically conserved protein present in the cytoplasm of cells in a variety of unphosphorylated and phosphorylated forms. Its expression and phosphorylation are regulated throughout development and in response to extracellular signals regulating cell proliferation, differentiation and functions. The overall pattern of its molecular forms reflects the activation of corresponding second messenger pathways. This phosphoprotein is therefore a good candidate as a general relay in signal transduction, possibly integrating diverse signals of the cell's environment.

Amino Acid Sequence

Phosphorylation of stathmin and other proteins related to nerve growth factor-induced regulation of PC12 cells.

We previously identified a set of soluble proteins whose phosphorylation could be originally related to the multihormonal regulations of anterior pituitary cells. Among these proteins, stathmin (proteins 7 and 8) was found to be ubiquitous and mostly abundant in neurons. Interestingly, stathmin and some other phosphoproteins of the same set could be identified also in PC12 cells in culture. Their phosphorylation was stimulated in these cells by nerve growth factor (NGF) in a way associated with its short term actions, probably corresponding to the early steps of its neuronal differentiating activity. In addition, the same proteins had their phosphorylation stimulated in the presence of fibroblast growth factor, known to stimulate PC12 cell differentiation in a way similar to NGF. A pharmacological analysis allowed us to distinguish three characteristic subsets of phosphoproteins, respectively, affected by cAMP-dependent agents, by cAMP-independent ones, or by both types of agents. Moreover, phosphorylation of stathmin and some other proteins was additive in the presence of NGF and of the cAMP-promoting agent forskolin. Altogether, the present results unravel some intracellular mechanisms related to the regulation of PC12 cells by extracellular effectors. They extend to the regulation of cell differentiation in our recent model for stathmin (Sobel, A., Boutterin, M-C., Beretta, L., Chneiweiss, H., Doye, V., and Peyro-Saint-Paul, H. (1989) J. Biol. Chem. 264, 3765-3772) as an ubiquitous intracellular relay possibly integrating the actions of diverse second messenger pathways involved in cell regulations.

Adenosine

A single amino acid difference distinguishes the human and the rat sequences of stathmin, a ubiquitous intracellular phosphoprotein associated with cell regulations.

Stathmin is a ubiquitous phosphoprotein proposed to play a general role as an intracellular relay integrating diverse regulatory signals of the cell's environment. We used a rat stathmin probe to isolate two classes of cDNAs coding for the human protein and corresponding to the usage of different polyadenylation sites. Compared to the rat sequences, they displayed a very high conservation both at the nucleic acid and the deduced protein sequence levels, with a single conservative amino acid difference. Further analysis of the protein sequence revealed novel putative phosphorylation sites, as well as internal repeated sequences which might reflect structural features involved in the molecular mechanisms by which stathmin fulfills its biological functions. The extreme conservation of the entire stathmin sequence further stresses the essential and general role of stathmin in cell regulations.

Amino Acid Sequence

Developmental tissue expression and phylogenetic conservation of stathmin, a phosphoprotein associated with cell regulations.

Stathmin is a 19-kDa phosphoprotein presumably involved in regulations of cell proliferation, differentiation, and functions as an intracellular relay for extracellular signals activating diverse second messenger pathways. Antisera prepared against the whole protein or against two peptides (residues 15-27 and 134-149) recognized the two isoforms (alpha and beta) of stathmin in their different phosphorylated states on immunoblots. Also, the possible existence of a family of stathmin-related proteins is suggested by the detection with some sera of proteins of 17, 21, and 60 kDa in brain. Stathmin and its diverse molecular forms were detected in all mouse tissues tested, in varying concentrations. Depending on the tissue, it is 2-100 times more abundant in the neonate than in the adult. It is most abundant in brain at both developmental stages, the protein levels being paralleled by the expression of the corresponding mRNA as detected with a specific cDNA probe. Antibodies directed against the rat protein also reacted with stathmin-like proteins in the brain of other mammals, birds, reptiles, amphibians, and some fish species, and the various isoforms could be recognized on immunoblots. In conclusion, our results suggest that stathmin is most likely involved in two distinct types of regulations: 1) "developmental" regulations, related to cell proliferation, differentiation, and maturation, and 2) "functional" regulations mostly at the adult stage, and typically in the nervous system. In addition, stathmin is also phylogenetically well conserved at least in vertebrates. Together, these observations support the proposed ubiquitous nature and general importance of stathmin in biological regulations.

Aging