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Biomedical subjects

S Lissitzky

Publications and source records attributed to S Lissitzky.

At least 73 records · Page 4Linked to original sources

Polypeptide chains of 19-S thyroglobulin from several mammalian species and of porcine 27-S iodoprotein.

Undegraded 19-S thyroglobulin was purified from hog, ox, man, dog, sheep and rat thyroid glands. Sodium dodecylsulfate/ polyacrylamide gel electrophoresis of the reduced proteins showed that all are formed of peptide chains of molecular weight about 330000. Carboxypeptidase A digestion of porcine 19-S thyroglobulin released consecutively two moles of leucine and then two moles of serine, thus offering strong evidence in favour of the idea that the protein is formed of two identical chains. The same C-terminal amino acids were detected in sheep, ox, dog and man thyroglobulins. No N-terminal amino acid was found by appropriate chemical and enzymatic techniques. Porcine 27-S iodoprotein was shown by carboxypeptidase A analysis to be formed of four single-stranded 330000-Mr subunits identical to those constituting the 19-S protein. Identity, both qualitatively and quantitatively, of the peptides obtained by CNBr cleavage of the two proteins as shown by sodium dodecylsulfate/polyacrylamide gel electrophoresis has confirmed this conclusion. Since 19-S and 27-S thyroid iodoproteins are formed of two and four probably identical chains, they must be termed 19-S and 27-S thyroglobulins or alternatively thyroglobulin dimer and tetramer, respectively.

Amino Acids↗

Thyrotropin binding to and adenylate cyclase activity of porcine thyroid plasma membranes.

Plasma membranes have been purified from porcine thyroid gland homogenate by discontinuous sucrose gradient centrifugation. The preparations contained specific binding sites for thyrotropin but not for luteinizing hormone or the beta subunits of thyrotropin and luteinizing hormone. Optimum conditions of 125I-labeled thyrotropin binding were pH 6.0-6.5 and 37 degrees C. Thyrotropin binding was reduced by divalent (Ca2+, Mg2+) and monovalent cations (Na+, K+, Li+), 50% inhibition being obtained at 10 mM and 50 mM respectively. Displacement curves of 125I-labeled bovine or porcine thyrotropin by the unlabeled hormone from three species was in the order of increasing concentrations (bovine greater than porcine greater than human) which is the order of decreasing biological activity of these hormone preparations in the assay in vivo in the mouse. The validity of the results was established by controlling that porcine membranes bound the native and the 125I-labeled hormones with equal affinity. A single type of high-affinity (Kd = 0.28 nM) binding sites was detected for bovine and porcine thyrotropins. In contrast, porcine plasma membranes bound human thyrotropin with a lower affinity (Kd = 70 nM). A good correlation was found at equilibrium and in the conditions of the cyclase assay, between receptor occupancy and adenylate cyclase activation for the three hormones.

4-Nitrophenylphosphatase↗

Thyrotropin-induced plasma membrane protein modifications in porcine thyroid cells.

Highly purified plasma membranes were obtained from isolated porcine thyroid cells maintained in conditions of culture in the presence of thyrotropin (stimulated cells) or in their absence (non-stimulated cells). Analyses of both types of membranes by high-resolution sodium dodecylsulfate-polyacrylamide slab gel electrophoresis showed reproducible quantitative differences in protein bands of apparent molecular weight 38,000, 36,000 and inconstantly 96,000. Phosphorylation of membranes by [gamma-32P]ATP was 2-3 times higher in membranes from thyrotropin-stimulated than in membranes from non-stimulated cells. About 20 32P-labeled bands were detected by slab gel electrophoresis in denaturing conditions, among which the catalytic subunit of Na+, K+ ATPase was characterized. In addition, plasma membranes from thyrotropin-stimulated cells contained a firmly bound [14C]glucosamine-containing glycoprotein probably related to an aggregation-promoting factor. 125I-labeled thyroglobulin and components of unknown nature were associated with plasma membranes from thyrotropin-stimulated cells. Whether they participate in the structure and function(s) of the plasma membrane or represent contaminants of the preparation is not clear at the present time.

Animals↗

Thyrotropin-specific binding to human peripheral blood monocytes and polymorphonuclear leukocytes.

[125I]Labeled thyrotropin binding to leukocytes has been studied using lymphocyte-, monocyte- and polymorphonuclear leukocytes-enriched preparations obtained by centrifugation of Ficoll-Angiocontrix gradients and Sephadex G-10 adherence. From the relation between thyrotropin binding and phagocytosis as shown by latex beads ingestion, it is concluded that the hormone binds essentially to monocytes and polymorphonuclear leukocytes. Equilibrium association constants of the high-affinity, low-capacity sites (1 nM-1) are similar to those found in isolated thyroid cells or in thyroid plasma membranes. The role of thyrotropin in the regulation of phagocytosis by leukocytes is discussed.

Animals↗

Binding of 3,5-diiodotyrosine to serum proteins.

The reversible binding of 3,5-diiodotyrosine (DIT) to human and bovine serum protein and to purified human serum prealbumin and human and bovine albumin has been studied by equilibrium dialysis. Maximum binding occurred at pH 8.6-9.0. Human serum bound DIT less than did bovine serum. Adult ox and fetal calf sera showed similar binding. The main DIT-binding protein of human serum was prealbumin. It showed a single affinity site with a Ka of 0.85 X 10(6) M-1 at pH 8.6 and 0.40 X 10(6) M-1 at pH 7.4. The affinity constant of serum albumin for DIT was 2.8 X 10(3) M-1 at pH 8.6. The elevated binding of DIT to bovine serum is essentially due to albumin whose affinity constant for DIT is 16-times higher than that of human serum albumin. Fetuin was not responsible for any noticeable DIT binding in fetal calf serum.

Binding Sites↗

Stimulation of sodium and calcium uptake by scorpion toxin in chick embryo heart cells.

Scorpion toxins, the basic miniproteins of scorpion venom, stimulated the passive uptake of Na+ and Ca2+ in chick embryo heart cells. Half-maximum stimulation was obtained for 20-30 nM Na+ and 40-50 nM Ca2+. Scorpion toxin-activated Na+ and Ca2+ uptakes were fully inhibited by tetrodotoxin, a specific inhibitor of the action potential Na+ ionophore in excitable membranes. Half-maximum inhibition was obtained with the same concentration of tetrodotoxin (10 nM) for both Na+ and Ca2+. Scorpion toxin-stimulated Ca2+ uptake was dependent on extracellular Na+ concentration and was not inhibited by Ca2+ channel blocking drugs which are inactive on heart cell action potential. Thus, in heart cells scorpion toxin affects the passive Ca2+ transport, which is coupled to passive Na+ ionphore. Other results suggest that (1) tetrodotoxin and scorpion toxin bind to different sites of the sarcolemma and (2) binding of scorpion toxin to its specific sites may unmask latent tetrodotoxin - sensitive fast channels.

Animals↗

Endogenous proteolytic activity and constituent polypeptide chains of sheep and pig 19 S thyroglobulin.

Porcine and ovine 19-S thyroglobulins prepared from frozen glands in several buffers using slice extraction or homogenization, ammonium sulfate precipitation and DEAE-cellulose chromatography or Sepharose 6B gel filtration were contaminated with protease activity of pH optima 4.5 and 8.6, as shown by sodium dodecyl sulfate polyacrylamide gel electrophoresis. Optimum temperatures of autodigestion were 37 degrees C at pH 4.5 and 25 degrees C at pH 8.6. Thyroglobulins prepared from unfrozen glands pH 7.2 in 0.1 M sodium phosphate using slice extraction, ammonium sulfate precipitation and Sepharose 6B gel filtration were devoid of acid proteolytic activity but still underwent autodigestion at pH 8.6. Diisopropylfluorophosphate was a potent inhibitor of the alkaline protease activity of ovine thyroglobulin preparations. In contrast to thyroglobulin obtained from frozen glands the proteins purified from fresh unfrozen glands at pH 7.2 only showed the 19-S and the 12-S species by electrophoresis in sodium dodecyl sulfate polyacrylamide gels. Very few bands migrating faster than 12-S were visible. After full reduction and S-alkylation of porcine and ovine thyroglobulins, no qualitative changes were observed in the gel electrophoresis pattern as compared to the unmodified proteins. Species of apparent mol. wt. corresponding to the native 12 S were the major component, strongly suggesting a mol. wt. of about 330 000 for the elementary peptide chains of pig and sheep thyroglobulins.

Animals↗

Synthesis of apamin, a neurotoxic peptide from bee venom.

The apamin sequence has been synthesized by the solid-phase procedure. The synthetic peptide showed the same physiochemical and chemical properties as natural apamin in the following tests: paper electrophoresis, amino acid analyses after acid and enzymatic hydrolyses, sequence analysis, electrophoreses after tryptic and chymotryptic digestions. Synthetic apamin was as active as natural apamin in the neurotoxic assay in mice (LD50, after subcutaneous injection, for the 20-g mouse: 58 mug).

Amino Acid Sequence↗

Phosphorylation of purified thyroid plasma membranes incubated with [32-P]ATP.

Plasma membranes have been prepared from porcine thyroid glands using sucrose gradients. The fractions having a density in sucrose of 1.18 g/ml mainly contained plasma membranes and were moderately contaminated with other subcellular components as shown by marker enzyme data. Purified plasma membranes incubated in the presence of [32-P]gamma ATP incorporated 32-P. Kinetics of incorporation of 32-P into endogenous substrates studied in various buffers and with increasing ATP concentration suggest a phosphodephosphorylating system related to cAMP-dependent protein kinase and phosphoprotein phosphatase activities. The two enzymatic activities associated with plasma membranes have been demonstrated using exogenous substrates. cAMP increases and fluoride ions decrease the extent of membrane phosphorylation. The specific activity of protein kinase was 10-12 times higher than in the initial homogenate and was only slightly enhanced in the presence of 0.5% Nonidet as compared to microsomal fraction. cAMP binding to membrane proteins was 3 times higher than to the other particulate fractions. TSH present in the incubating medium or added after 5 min of 32-P labelling induced a rapid stimulation of endogenous phosphorylation followed by a rapid decrease. Phosphorylated membrane substrates were analyzed: high voltage paper electrophoresis after partial hydrolysis indicated that [32-P]phosphate is incorporated into serine and threonine residues as o-phosphate derivatives. SDS-polyacrylamide gel electrophoresis showed several 32--labelled fractions. When enhanced by cAMP, no specific phosphorylation of protein components was observed.

Adenosine Triphosphate↗