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Biomedical subjects

A Light

Publications and source records attributed to A Light.

At least 37 records · Page 2Linked to original sources

Independent refolding of domains in the pancreatic serine proteinases.

Ser-neotrypsinogen and Val-neotrypsinogen are two-chain modifications of bovine trypsinogen produced on limited proteolysis with trypsin. Ser-neotrypsinogen has Lys131-Ser132 cleaved in the connecting peptide (the autolysis loop) linking the amino- and carboxyl-terminal domains. Val-neotrypsinogen has Arg105-Val106 cleaved which is located within the amino-terminal domain. The mixed disulfide derivative of Ser-neotrypsinogen was successfully refolded. A functional molecule was regenerated from the polypeptide fragments with the correct molecular weight of neotrypsinogen in an overall yield of 7%. Val-Neotrypsinogen could not be refolded. The first-order rate constants for the regeneration of Ser-neotrypsinogen were determined from the formation of active enzyme molecules as a function of time and from the regain of the correct molecular weight. Both kinetic values were the same indicating that refolding of the polypeptide chains first forms globular domain structures. The two domains then associate and the disulfide bonds between the domains and the correct geometry of the active site residues are formed last. The same kinetic results were also found in refolding Thr-neochymotrypsinogen (Duda, C. T., and Light, A. (1982) J. Biol. Chem. 257, 9866-9871) where peptide bond cleavage also occurred in the connecting peptide. These observations support the hypothesis that the pathway of folding of serine proteinases proceeds with the independent refolding of domains.

Animals↗

Refolding of serine proteinases.

Bovine trypsinogen and chymotrypsinogen were successfully refolded as the mixed disulfide of glutathione using cysteine as the disulfide interchange catalyst. The native structures were regenerated with yields of 40%-50% at pH 8.6 and 4 degrees C, and the half-time for the refolding was approximately 60-75 min. We then refolded threonine-neochymotrypsinogen, which is a two-chain structure held together by disulfide bonds and produced on cleavage of Tyr 146-Thr 147 in native chymotrypsinogen [Duda CT, Light A, J Biol Chem 257 9866-9871, 1982]. Neochymotrypsinogen was denatured and fully reduced, and the thiols were converted to the mixed disulfide of glutathione. The two polypeptide fragments, representing the amino- and carboxyl-terminal domains, were separated on Sephadex G-75. Mixtures of the polypeptide fragments varying in the ratio of their concentration from 1:5 to 5:1 were refolded with yields of 21-28%. The lack of dependence on the concentration of either fragment and the relatively high yields suggest independent folding of the amino- and carboxyl-terminal domains. When the globular structures of the domains formed, they then interacted with one another and produced the native intermolecular disulfide bridge and the proper geometry of the active site.

Animals↗

Frequency of pericardial effusion as determined by M-mode echocardiography in acute myocardial infarction.

A pericardial friction rub occurs in 6 to 16% of patients after acute myocardial infarction (AMI), but the incidence of pericardial effusion (PE) is not known. M-mode echocardiography was done 1, 3 and 5 days after AMI in 43 consecutive patients admitted within 24 hours of AMI, and PE was detected in 16 (37%). The PE was small in 7 patients, moderate in 6 and large in 3. A pericardial friction rub developed in 8 (19%), of whom only 4 had PE. Pleuritic chest pain diminished by sitting up and relieved by antiinflammatory agents developed in 12 (28%), of whom only 5 had PE. The peak creatine kinase level was significantly higher in patients with PE (1,769 +/- 1,003 U) than in those without (1,181 +/- 838 units). More patients with PE were in Killip classification II, III or IV (11 of 16 [69%] vs 9 of 27 [33%]). The presence of PE was not associated with age, site of AMI, development of Q waves, use of heparin or previous AMI. In conclusion, PE as detected by M-mode echocardiography is frequently present after AMI, and its presence is not closely associated with the occurrence of a pericardial friction rub or typical pericardial pain.

Aged↗

The identification of neotrypsinogens in samples of bovine trypsinogen.

Isoelectric focusing of commercial samples of bovine trypsinogen detected a component with a lower isoelectric pH than that of trypsinogen. The isoelectric pH was 8.75 compared to 9.3 for trypsinogen, and the amount of the component varied from 16 to 41% of the total protein. The protein (24,000 Da) was converted to fragments of 13,800 and 10,500 Da on reduction with dithioerythritol, showing that the component was a modified form of trypsinogen containing a cleaved peptide bond. The cleavage site was established from the study of four polypeptide fragments which were isolated from the fully reduced and S-carboxymethylated trypsinogen. The molecular weights, amino acid compositions, and amino-terminal sequences of these fragments identified a cleavage of Lys 131-Ser 132, namely from a Ser-neotrypsinogen, or at Arg 105-Val 106, from a Val-neotrypsinogen. Val-neotrypsinogen was the more abundant of the two and was approximately 71% of the total neotrypsinogen in the trypsinogen sample. Both neotrypsinogens were converted to active trypsin molecules in high yields, showing that the zymogens closely resembled the conformation of intact trypsinogen. Presumably, the neotrypsinogens were produced during the isolation of the zymogen when pancreatic tissue was partly autolyzed and active trypsin was present.

Amino Acid Sequence↗

The preparation and properties of the catalytic subunit of bovine enterokinase.

A limited reduction of the disulfide bonds of bovine enterokinase (enteropeptidase, EC 3.4.21.9) was accomplished with 50 mM dithioerythritol, at pH 9.0, and at 4 degrees C. The conditions separated the heavy and light subunits quantitatively with improved reliability when compared to the conditions used previously (Savithri, H. S., and Light, A. (1980) Biochim. Biophys. Res. Commun, 94, 360-365). Pancreatic trypsin inhibitor was added to the reaction to ensure that the yield of the heavy subunit was equal to that of the catalytic subunit (light subunit). Otherwise the heavy subunit was subject to extensive degradation. The subunits were alkylated with iodoacetate and then resolved on Sephadex G-150. Amino acid analyses and the incorporation of [14C]carboxymethyl groups showed that 3.1 carboxymethylcysteine residues were in the catalytic subunit and 8.9 in the heavy subunit. The catalytic subunit had normal catalytic activity toward N-benzoyl-L-arginine ethyl ester, enhanced activity toward N-tosyl-L-arginine methyl ester and N-tosyl-L-lysine methyl ester, and lower activity toward N-benzoyl-DL-arginine p-nitroanilide. The catalytic subunit retained the restricted specificity of intact enterokinase, but the rate of activation of trypsinogen was much slower. It is likely that the limited reduction of the disulfide bonds of the catalytic subunit altered the interaction of protein substrates with the specificity site.

Animals↗

Arborizations of single corticofugal axons in the feline cuneate nucleus stained by iontophoretic injection of horseradish peroxidase.

Terminal aborizations and synaptic boutons of cortical afferents to the cuneate nucleus were examined by light and electromicroscopy following intra-axonal staining with HRP. Two populations of afferents are described: (1) direct corticocuneate fibers, and (2) fibers destined for the spinal cord which issue collateral branches to the cuneate nucleus. Corticocuneate terminals primarily contact fine dendrites located in the ventral parts of the nucleus. These results are discussed in relation to previous anatomical findings and to new concepts of cuneate nucleus organization.

Animals↗

Effect of corynetoxin isolated from parasitized annual ryegrass on albumin and transferrin synthesis and secretion by cultured fetal rat hepatocytes.

A group of glycolipid toxins, corynetoxin (CT), isolated from parasitized annual ryegrass, was shown to suppress the synthesis of both albumin and transferrin by cultured fetal rat hepatocytes. Based on [3H]leucine incorporation, inhibition of transferrin synthesis was greater than that of both albumin and total protein synthesis. As a result, the secretion of albumin and transferrin was decreased. The incorporation of [3H]N-AcGlc into cellular glycoproteins was only marginally affected by CT, although a dramatic reduction was observed with respect to the secreted proteins. Transferrin secreted into the culture medium was substantially non-glycosylated, judging by the absence of [3H]N-AcGlc. These studies suggested that the toxin preferentially affects the synthesis, and hence the secretion of glycoproteins, although it did not block the secretion of the proteins albumin and transferrin, as these did not accumulate intercellularly. Since transferrin labelled with [3H]leucine but not [3H]N-AcGlc is detected in the culture medium of hepatocytes exposed to CT, it was concluded that glycosylation of the protein is not required for secretion. This study shows that the effects of CT on protein synthesis and secretion in cultured hepatocytes are similar to those reported for tunicamycin (TM).

Albumins↗

The purification and characterization of bovine enterokinase from membrane fragments in the duodenal mucosal fluid.

Bovine enterokinase has been purified from the mucosal fluid adhering to the intestinal wall. Enterokinase is predominantly present as membrane fragments which must be treated with Triton X-100 to release the enzyme. The purification resulted in a higher yield of enzyme in fewer steps and in less time than when mucosal cells were used. The properties of the enzyme in the fluid are identical with those found previously with the mucosal cell preparation (Liepnieks, J. J., and Light, A. (1979) J. Biol. Chem. 254, 1677-1683), but differ in the size of the subunits and in amino acid composition from the enzyme purified from intestinal contents (Anderson, L. E. Walsh, K. A., and Neurath, H. (1977) Biochemistry 16, 3354-3360). It is highly unlikely that the existence of isoenzymes could explain these differences. It is more likely that the enzyme isolated from the intestinal contents represents an extensively degraded form with retention of enzymatic activity.

Animals↗

Incorporation of bovine enterokinase in reconstituted soybean phospholipid vesicles.

Bovine enterokinase was incorporated into vesicles reconstituted from a soybean phospholipid mixture. A thin film hydration procedure (MacDonald, R. I., and MacDonald, R. C. (1975) J. Biol. Chem. 250, 9206-9214) produced vesicles with 40% of the enterokinase activity bound in the membrane. The highest incorporation was observed when cholesterol or dimyristoylphosphatidylethanolamine was added to the soybean phospholipids. Crude and highly purified enterokinase preparations were incorporated to the same extent suggesting that other membrane components were not required for a successful reconstitution. The properties of enterokinase in phospholipid vesicles were compared with those of alkaline phosphatase, which was also added to the reconstitution system, and with the enzyme activities present in vesicles prepared from brush-border membranes. The enzyme activities were not released by solutions of high ionic strength and remained associated with the phospholipid vesicles on gel filtration, ultracentrifugation, and sucrose density centrifugation. Enterokinase and alkaline phosphatase had their active sites exposed to substrate in the brush-border membrane vesicles. In soybean phospholipid vesicles half of the active sites of both enzymes were on the outside, since release of the enzyme with Triton X-100 almost doubled the units of enzyme present. Incubation of the soybean phospholipid and brush-border membrane vesicles with papain released the exposed molecules of enterokinase. The released enzyme molecules were fully active but could not be reincorporated into phospholipid vesicles. This suggests that the structure imbedded in the lipid bilayer was essential for a successful reconstitution. We conclude that the reconstituted soybean phospholipid vesicles are a suitable membrane system for the further study of membrane-bound enterokinase.

Alkaline Phosphatase↗

Refolding of bovine threonine-neochymotrypsinogen.

The mixed disulfide derivative of fully reduced neochymotrypsinogen was refolded at pH 9.2 and 4 degrees C with 4 mM cysteine as the disulfide interchange catalyst. The yield of regenerated neochymotrypsinogen was 25%; the corresponding yield of refolded chymotrypsinogen was 50%. The refolded neochymotrypsinogen exhibited the characteristics of the native molecule as determined from polyacrylamide gel electrophoresis and the enzymatic properties of the activated zymogen. The rate of refolding of neochymotrypsinogen was approximately the same as that found for chymotrypsinogen. These studies show that two separate fully reduced polypeptide chains were capable of refolding, associating with one another, and regenerating a native structure with full biological activity.

Chymotrypsin↗

Transferrin endocytosis in reticulocytes: an electron microscope study using colloidal gold.

The endocytosis of transferrin by rabbit reticulocytes was investigated by electron microscopy using transferrin labelled with colloidal gold. This complex was shown to bind and donate its iron to the cells in a manner comparable to native iron-transferrin. After incubation at 37 degrees C approximately 70% of the transferrin-gold particles were located within endocytotic vesicles. Treatment of the cells with pronase, EDTA, metabolic inhibitors and heating to 46 degrees C inhibited the endocytosis. The uptake of colloidal gold complexes of albumin and concanavalin A were compared with that of transferrin. Little endocytosis of these proteins was observed. It is concluded that colloidal gold is a suitable label for the investigation of transferrin endocytosis and that the endocytosis is specific for transferrin and sensitive to the action of reagents which damage membrane receptors, alter membrane function or impair cell metabolism.

Albumins↗

Sensory experiences in man evoked by intraneural electrical stimulation of intact cutaneous afferent fibers.

The response of slowly conducting myelinated and unmyelinated afferent units to natural types of cutaneous stimuli was recorded extracellularly with tungsten microelectrodes from intact human skin nerves. Seven fibers had characteristics of C-polymodal units (conduction velocity: 0.75-1.2 m/s) and two fit descriptions of myelinated high- threshold mechanoreceptors (conduction velocity of one: 19 m/s). Attempts were made to evoke a sensation in a subject by stimulating the impaled fascicles directly with electrical pulses of controlled amplitude, duration and frequency so as to try to correlate responsive properties of the sensory units and sensory experience. The subjective sensations evoked by natural stimuli to the skin surface were used as criteria for comparison.

Afferent Pathways↗

Effect of cleaving interchain disulfide bridges on the radius of gyration and maximum length of anti-poly(D-alanyl) antibodies before and after reaction with tetraalanine hapten.

The small-angle x-ray scattering of solutions of rabbits IgG antibodies and their derivatives has been investigated. The reduction and alkylation of the native antibody cause a small increase of the molecular parameters, indicating a limited expansion of the molecule. Binding of native antipoly(D-alanyl) antibodies with hapten (80% saturation) causes a significant change of the quaternary structure, expressed by a decrease in the maximum diameter of about 2 nm, of the radius of gyration by 5.5%, and of the volume. The same antibodies, in which the single inter-heavy-chain disulfide bridge was opened by reduction and carboxamidomethylation, do not show any significant decrease in the overall molecular parameters upon reaction with hapten, except for a local structural change in a part of the molecule. These data lend further support to the notion that binding of hapten induces a conformational transition in its specific antibodies and suggest that the opening of the interchain disulfide bridges affects that transition. The dimensions of the intact antibodies calculated from measurements of small-angle x-ray scattering at low concentrations agree closely with those obtained from crystallographic studies.

Alanine↗