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Biomedical subjects

P C Sen

Publications and source records attributed to P C Sen.

At least 19 recordsLinked to original sources

Purification and functional characterization of a low-molecular-mass Ca2+,Mg2+- and Ca2+-ATPase modulator protein from rat brain cytosol.

A low-molecular-mass modulator protein having a molecular mass of about 12 kDa has been purified from rat brain cytosol following gel filtration and FPLC/Mono Q anion-exchange chromatographic separation. A number of protein fractions were obtained from an FPLC column when eluted with a 0.1 M NaCl hold gradient. One fraction (peak no. 5) was found to stimulate Ca2+,Mg2+-ATPase but inhibit Ca2+-ATPase isolated from goat spermatozoa. The S50 (concentration producing 50% stimulation) and I50 were found to be in the nanomolar range. The modulator seems to bind to Ca2+, Mg2+- or Ca2+-ATPase at a site distal from the ATP binding site. The binding to both the ATPases is reversible and non-competitive in nature. The inhibitory activity is found to depend significantly on -SH or -NH2 group(s) of the modulator, whereas no appreciable dependency of the stimulatory effect was apparent. The study indicates that the modulator is not a glycoprotein. CD analysis suggests that the protein exists as an unordered secondary structure. An immuno-cross-reactivity study with specific antibody and inhibition by thapsigargin suggests that the Ca2+,Mg2+- and Ca2+-ATPases from goat testes microsomal membranes are two isoforms of the sarcoplasmic/endoplasmic-reticulum Ca2+-ATPase (SERCA) family. The modulator does not contain any Trp molecules, as evident from Trp fluorescence analysis. Amino acid analysis shows that glycine, serine, derivatives of tyrosine and phenylalanine are the predominant amino acids. The data suggest that the modulator is a negatively charged protein and is a good tool for distinguishing the regulation of Ca2+,Mg2+- and Ca2+-ATPase activities.

Animals

Mimosa pudica apyrase requires polysaccharide and Ca2+ for the activity.

Mimosa pudica Linn leaves with pulvini contain unique isoforms (I and II) of Apyrase enzyme (EC 3.6.1.5). The activity of isoform I depends on divalent cation Mn2+. This isoform is associated noncovalently with the polysaccharide, containing mainly of galactose and arabinose sugars. The apparent molecular mass of these 2 isoforms are 36 and 34 Kd respectively. The association of the polysaccharide with the isoform I has been found to be Ca2+ dependent which is endogenously present in this isoform. Removal of Ca2+ and polysaccharide from the enzyme (isoform I) leads to an inactivation. The enzyme activity can be restored when both Ca2+ and endogenous polysaccharide fraction were added at an optimal molar ratio of Ca2+:protein of 7:1. The endogenous polysaccharide can be replaced by the standard arabinogalactan. No other sugar or polysaccharide except the arabinogalactan can restore the apyrase activity. Calcium mediates a conformational change in the protein which helps in association of polysaccharide as evidenced from fluorometric and far UV-CD studies to restore the enzymic activity. Neither any interaction of the polysaccharide with the protein is detected in absence of Ca2+ nor the enzyme activity could be recovered under such condition.

Amylases

Purification and functional characterization of a low-molecular-mass Na+, K+-ATPase inhibitor protein from rat brain cytosol.

A number of low-molecular mass (12-13 kDa) Na+, K+-ATPase inhibitor proteins have been purified from rat brain cytosol by gel filtration followed by FPLC fractionation on a Mono Q anion-exchange column. Eight peaks were obtained using 0.1 M NaCl eluent of which one peak was found to be the most potent inhibitor of Na+, K+-ATPase. The molcular mass of the inhibitor was about 13 kDa on 16.5% SDS/PAGE. The concentration at which 50% inhibition (I50) was found was in the nanomolar range. The inhibitor seems to bind to Na+, K+-ATPase at a site distal from the ATP-binding site. The binding to the ATPase is non-competitive. The CD analysis suggests an unordered secondary structural element. It also inhibits p-nitrophenyl phosphatase activity from rat brain with comparable I50 value to that for Na+, K+-ATPase. The protein does not contain any Trp as evident from Trp fluorescence and amino acid analysis. Amino acid analysis shows that glycine and serine, derivatives of tyrosine and phenylalanine are the predominant amino acids. The data suggests that it is a negatively charged protein in which the contribution of the hydrophobic part is 27%.

Amino Acids

Na(+)-K(+)-ATPase activity of different regions of rat brain in response to immunization and bone marrow cytokine treatment.

The bone marrow cytokine (Bio-Immuno Modulator, BIM or BM-Fr1) has been suggested to correct immunoincompetence by modulating brain Na(+)-K(+)-ATPase. The brain region affected and mechanism of action of BM-Fr1 are unknown, however. Here we report that immunization of immunocompetent rats indirectly inhibited Na(+)-K(+)-ATPase activity (59%) in the left cerebral lobe (LC) and irrespective of BM-Fr1 treatment, stimulation of the enzyme was observed in the LC at the peak of immune response. BM-Fr1 treatment, which corrected immunoincompetence in malnourished rats, also modulated a different LC Na(+)-K(+)-ATPase profile to that seen in immunocompetent animals. Immunogen and BM-Fr1 seem to exert their influence in brain via a cytosolic inhibitor protein of Na(+)-K(+)-ATPase. Thus we suggest that (1) BM-Fr1 plays an important role in immune homeostatasis by modulating Na(+)-K(+)-ATPase activity of LC and (2) Na(+)-K(+)-ATPase is not the receptor for either immunogen or BM-Fr1.

Adjuvants, Immunologic

Alteration of the microenvironment in plasma membranes of rat enterocytes after Escherichia coli heat stable enterotoxin treatment: effect on protein kinase C activity.

Plasma membranes isolated from Escherichia coli heat stable enterotoxin (STa) treated rat enterocytes were studied in respect to protein kinase C activity and fluidity change. Pretreatment of enterocytes with STa increased the membrane bound protein kinase C activity about 5 fold as compared to control. STa treatment made the membrane more fluid as evident from a higher phospholipid/cholesterol ratio and greater unsaturated fatty acid levels. Moreover, the phase transition temperature of the STa treated membrane appeared to be significantly lower than that of the corresponding control membrane, thereby further indicating a rise in fluidity of the membrane in the former case. Our results, therefore, suggested that following STa enterotoxin treatment an appropriate fluid environment in the rat intestinal cell membrane was essential for the activation of protein kinase C.

Animals

An Na+/K(+)-ATPase inhibitor protein from rat brain cytosol.

A protein isolated from rat brain cytosol is found to inhibit Na+/K(+)-ATPase in rat brain and kidney and H+/K(+)-ATPase from toad gastric mucosa, but has no effect on Ca2+,Mg(2+)-ATPase and Ca(2+)-ATPase isolated either from rat testis or goat spermatozoa. The inhibitor has been partially purified by ammonium sulphate precipitation followed by gel-filtration through Sephadex G-100. The inhibitor seems to bind at or close to the ATP binding site of Na+/K(+)-ATPase, such that the binding of the inhibitor to ATPase is reversible and competitive in nature with respect to the substrate. Optimum inhibition is observed at around the phase transition temperature of brain Na+/K(+)-ATPase and the inhibitory activity is only partially dependent on -SH or -NH2 group(s) of the inhibitor protein.

Animals

Evidence for protein kinase C stimulation in rat enterocytes pretreated with heat stable enterotoxin of Escherichia coli.

Rat intestinal epithelial cells were isolated and the activity of the calcium- and phospholipid-dependent protein kinase C (PKC) was investigated. The stimulation of activity by Escherichia coli heat stable enterotoxin (STa) was about 5-fold compared to control activity (16.91 +/- 1.69 vs 93.56 +/- 10.40 nmol/mg protein/min) and was dose dependent. Maximum enzyme activity was observed after incubation for 1 min with 6 ng of purified STa. The synergistic effects of calcium, phosphatidylserine and diolein on the enzyme activity were noted both in control and STa-treated cells. Staurosporine, a potent PKC inhibitor, significantly reduced the enzyme activity. Autoradiographic analysis of polyacrylamide gel electrophoresis revealed that pretreatment of the cells with STa also resulted in the phosphorylation of specific membrane proteins each with a molecular mass of 37 kDa, 100 kDa and 140 kDa. However, STa had no direct role on the enzyme activity. Our results, therefore, provide evidence for the involvement of PKC in STa-induced signal transduction in rat enterocytes.

Alkaloids

Enteropathogenic bacteria in river Ganges in Varanasi.

A bacteriological study of the river Ganges in Varanasi was carried out from December 1985 to November 1987. In all 407 water samples were collected, 335 from bathing ghats and 72 from sewage openings and were examined for the presence of enteropathogenic bacteria. Vibrio cholerae 0-1 (1.72%), Non 0-1 Vibrio cholera (3.69%), Vibrio fluvialis (0.74%), Aeromonas sp. (0.49%), Plesiomonas sp. (0.25%), Salmonella sp. (0.98%) and Shigella sp. (1.23%) were isolated from both ghats and sewage openings along with Pseudomonas sp., Proteus sp., E. coli., etc. This indicates that water of the river Ganges is potentially hazardous to the health of the bathers and is not suitable for drinking. The discharge of raw sewage into the river and its diversion beyond the city, downstream, by installation of pumps have failed to improve the quality of water.

Enterobacteriaceae

In vitro effect of 5-hydroxytryptamine on concanavalin-A agglutinability and multiplication of Entamoeba histolytica.

Six isolates of E. histolytica isolated and maintained by serial passage in modified Boeck and Drbohlav's medium were used in this study. When five of the isolates were grown in the above medium with 5-hydroxytryptamine (5-HT) added to the overlay, the agglutinability of the amoebae by concanavalin- A (con-A) was significantly increased compared to corresponding control cultures. Four isolates of E. histolytica grown with 5-HT had 1.5 to 2 times higher counts than the control cultures. Similarly the con-A agglutinability and counts of cultures of NIH-200 (an axenic strain of E.histolytica) were enhanced when grown in association with 5-HT.

Agglutination

The in vivo inhibition of transport enzyme activities by chloroquine in different organs of rat is reversible.

The antimalarial drug chloroquine is found to inhibit Na+, K(+)-ATPase, Ca2+, Mg(2+)-ATPase, Ca(2+)-ATPase, pNPPase and acetylcholinesterase activities in different organs of rat in vivo when injected for a certain periods of time. The inhibition seems to be due to the changes in the level of phospholipid, cholesterol and the fatty acid of the lipid and the alteration of the fluidity of the microsomal membranes. However, the enzyme activities return to the normal level in about 2-3 weeks after the discontinuation of the drug suggesting that the drug effect is reversible.

4-Nitrophenylphosphatase

Phosphorylation of tau protein by purified p34cdc28 and a related protein kinase from neurofilaments.

It has been suggested that hyperphosphorylation of the tau protein in neurofibrillary tangles may be relevant to the etiology of Alzheimer's disease and that at least one of the hyperphosphorylated sites lies within a consensus sequence for the p34cdc2/cdc28 family of kinases. We describe a new method for large-scale purification of p34cdc28 kinase from Saccharomyces cerevisiae and show that the purified enzyme can phosphorylate bovine and human tau. Phosphorylation was greatly enhanced by the addition of basic and acidic substrate modulators. The effect of the substrate modulators differed both with the structures of the substrates and the modulators. Similar results were obtained with a kinase that could be purified from neurofilaments by p13suc1 affinity chromatography, a hallmark of p34cdc2/cdc28-type kinases. These results are consistent with the hypothesis that a kinase of this type is involved in tau phosphorylation in vivo and open the possibility that hyperphosphorylation in Alzheimer's disease may be controlled by substrate modulators.

Animals

A correlative study of serum zinc and in vivo cell mediated immune status in rheumatic heart disease.

This study was conducted to determine the zinc status and assess relationship between serum zinc and in vivo cell mediated immunity (CMI) in patients with rheumatic heart disease (RHD). The study comprised 22 patients with active rheumatic heart disease (ARHD), 15 patients with chronic rheumatic heart disease without activity (CRHD) (selection based on Jone's Criteria--Revised), and 15 age and sex matched healthy control. Zinc estimation was done by atomic absorption spectrophotometer. To assess CMI in vivo, phytohaemagglutinin skin test and skin window test were done. Serum zinc and in vivo CMI in patients with ARHD and CRHD compared with controls. Mean serum zinc was significantly decreased in patients with ARHD and CRHD, more pronounced in the former (P less than 0.001); and mean 24 h urinary zinc was significantly increased in patients with ARHD (P less than 0.001) as compared to controls. A significant depression in CMI in vivo was observed in patients with ARHD and CRHD (P less than 0.001). A significant positive correlation was seen among serum zinc and markers of in vivo CMI (P less than 0.001). In conclusion, depletion of zinc, observed in RHD, probably causes immune alterations and suggest role of zinc in immunopathogenesis of RHD. Zinc supplementation may alter the course of rheumatic fever and RHD.

Adolescent

Biochemical characterization of a calcium ion stimulated-ATPase from goat spermatozoa.

The goat spermatozoa membranes isolated after treatment with octa (ethylene glycol) mono n-dodecyl ether (C12E8) followed by discontinuous sucrose density gradient centrifugation have been found to contain an ATPase that is stimulated by externally added Ca2+ only. The membrane fraction has also found to contain Mg(2+)-dependent Ca(2+)-ATPase activity, however the former activity is about 2 fold higher than the latter. The molecular weight of the enzyme is found to be about 97,000 on SDS-polyacrylamide gel. The optimum concentration of Ca2+ required for maximum activity is 3 mM for both Mg(2+)-dependent and Mg(2+)-independent Ca(2+)-ATPase. Histidine and imidazole buffers are found to be the most suitable for dependent and independent enzyme activities respectively. ATP with an optimum concentration of 4 mM is observed to be the best substrate than any other nucleotides. The inhibitors like trifluoperazine and vanadate and group specific probes e.g. DTNB and TNBS inhibit these two enzymes but at different rates. Ca(2+)-uptake study shows that the uptake in the presence of Ca2+ and ATP is higher than in the presence of Mg2+, Ca2+ and ATP. The findings lead us to believe that the Mg(2+)-independent Ca(2+)-ATPase has some role in Ca2+ transport like Mg(2+)-dependent enzyme.

Adenosine Triphosphate

The in vivo inhibition of transport enzyme activities in different organs of rat by chlorpromazine is reversible.

Chlorpromazine, an antipsychotic drug is found to inhibit Na+K(+)-ATPase, Ca(2+)-ATPase and acetylcholinesterase activities in the microsomal membranes of rat in vivo, when the drug is injected for certain periods of time. The inhibition seems to be due to the changes in fatty acid composition of lipid and microviscosity of the membranes. However, once the drug has been withdrawn, the enzyme activities are found to return to the normal level in three to five weeks, suggesting that the drug effect is reversible.

Acetylcholinesterase

Circulating immune complexes and complement in bancroftian filariasis.

Sixty filarial cases, 30 endemic normal individuals and 10 non endemic subjects were investigated for the presence of Circulating Immune Complexes (CICs) and Complement Component C3. Using Polyethylene Glycol precipitation and Polyethylene Glycol precipitation-Complement Consumption methods, it was observed that CICs were raised significantly in chronic lymphatic filariasis and Tropical Pulmonary Eosinophilia (TPE) groups. The results observed by both the techniques for detection of CICs were comparable. Low levels of C3 were detected in chronic lymphatic filariasis cases by single radial immunodiffusion method, suggesting the utilization of complement by immune complexes.

Animals