Search PubMed⌕ Search

Biomedical subjects

G Kaur

Publications and source records attributed to G Kaur.

At least 55 records · Page 3Linked to original sources

Different early effets of tyrphostin AG957 and geldanamycins on mitogen-activated protein kinase and p120cbl phosphorylation in anti CD-3-stimulated T-lymphoblasts.

AG957, a tyrphostin tyrosine kinase inhibitor, has been shown previously to inhibit p210(bcr-abl) phosphorylation with concurrent inhibition of p210(bcr-abl)-expressing K562 cell growth (Kaur G and Sausville EA, Anticancer Drugs 7: 815-824, 1996). To assess the specificity of the action of AG957, we have examined its effect in another tyrosine kinase-mediated system, anti CD-3-stimulated Jurkat T Acute Lymphoblastic Leukemia cells. We also compared the effects of AG957 with those of geldanamycin, which can disrupt tyrosine kinase signaling through binding to heat shock protein (hsp90), and two geldanamycin analogs, 17-amino-17-demethoxygeldanamycin (17AG) and 17-allylamino-17-demethoxygeldanamycin (17AAG). At concentrations found to produce 90% inhibition of Jurkat T-cell growth, AG957 within 4 hr of addition inhibited mitogen-activated protein (MAP) kinase activation and activity, as shown by a decreased anti CD-3-stimulated erk-2 mobility shift in lysates of treated cells and a decrease in the stimulated myelin basic protein peptide kinase activity in erk-2 immunoprecipitates, respectively. AG957 did not inhibit this activity when added directly to immunoprecipitates. Effects in cells were found to be accompanied by a decrease in the anti CD-3-stimulated phosphorylation of p120cbl. Under conditions of a similar degree of growth inhibition, geldanamycin initially did not inhibit MAP kinase activation. Geldanamycin analogs did not decrease anti CD-3-induced cbl phosphorylation, but did reduce basal p120cbl tyrosine phosphorylation. The action of AG957 occurred with an apparent shift of several tyrosine-phosphorylated proteins to apparent higher molecular weights, which also did not occur with the geldanamycins. These results suggest that growth inhibition by AG957 can alter tyrosine kinase signaling systems unrelated to p210(bcr-abl) with a prominent early effect on MAP kinase activation in T-lymphoblasts. AG957 and geldanamycin affect tyrosine kinase signaling by distinct mechanisms.

Antibodies↗

Effect of diabetes on calcium/calmodulin dependent protein kinase-II from rat brain.

Changes in the protein levels and activity of Ca2+/Calmodulin dependent protein kinase II (CaM kinase II) level were studied in cytosolic and particulate fractions from cerebral hemisphere, cerebellum, brain stem, thalamus and hypothalamus regions of rat brain after 4 and 12 weeks of induction of diabetes. Streptozotocin induced diabetes, resulted in pronounced increase of CaM kinase II activity as determined by the kinase activity assay. The total amount of enzyme protein (alpha-subunit specific) also showed increase as revealed by western blotting. Parallel studies were also made in age matched control rats and insulin treated diabetic rats. The increase in CaM kinase II activity was more pronounced in the 12 weeks diabetic group. Insulin treatment of diabetic rats, resulted in recovery of enzyme activity near to control values from majority of the brain regions studied. The expression of alpha-subunit specific CaM kinase II correlates with the enzyme activity in the diabetic rat brain.

Animals↗

Impact of diabetes on CNS: role of signal transduction cascade.

Diabetic neuropathy is the most common secondary complication of diabetes mellitus. Several pathogenetic factors have been proposed for diabetic neuropathy. The present investigation was undertaken to study different components of signal transduction from discrete brain regions from streptozotocin-induced diabetic rats. Rats were sacrificed after 1 and 3 months of induction of diabetes, and a control group was also studied in parallel to ascertain the specificity of diabetes-associated changes. Blood glucose level and protein content of discrete brain regions were also estimated. Signal transduction cascade components like protein kinase A, protein kinase C, cAMP, phospholipase C, phospholipase A2, diacylglycerol and inositol phosphate levels were assayed in control and diabetic groups of rats. Significant attenuation in phosphoinositide metabolism along with activation of protein kinase activities were observed. These findings provide evidence to suggest a mechanism linking changes in signal transduction cascade, which is observed in 1- and 3-month diabetic rats, which ultimately leads to development of diabetic neuropathy.

Animals↗

Expression of growth factor ligand and receptor genes in preimplantation stage water buffalo (Bubalus bubalis) embryos and oviduct epithelial cells.

The temporal pattern of expression of genes for several growth factor ligands and receptors was examined in preimplantation water buffalo embryos and oviduct epithelial cells using RT-PCR. The identity of the resulting PCR products was confirmed by their expected size, restriction analysis, Southern blot hybridization and nucleotide sequence analysis. Preimplantation stage embryos from the one-cell to the blastocyst stage were derived after maturation, fertilization and culture of oocytes in vitro. Expression of members of the insulin-like growth factor (IGF) family was observed predominantly in preimplantation stage embryos and oviduct epithelial cells. Similarly, transcripts encoding insulin and IGF-I receptors were detected at each stage of embryonic development. The mRNA transcript of the IGF-I receptor was not detected in oviduct epithelial cells, but a prominent band corresponding to the insulin receptor was observed. Insulin and IGF-II mRNA were expressed as maternal transcripts that were not detected at the two- to four-cell stage but were present as zygotic transcripts at the eight-cell stage. Transcripts encoding IGF-I were detected in oviduct epithelial cells, but were not observed in any of the preimplantation stage embryos. Transforming growth factor (TGF) alpha and beta and epidermal growth factor mRNA transcripts were not detected in any of the preimplantation stage embryos. These results indicate that IGF-I acts via a paracrine mechanism to promote growth and development of preimplantation water buffalo embryos. Similarly, IGF-II appears to act through a heterologous autocrine mechanism via the IGF-I or the insulin receptor. Furthermore, the presence of TGF-alpha in oviduct epithelial cells indicates that it may have a critical role during development.

Amino Acid Sequence↗

Lymphoproliferative responses of leprosy patients and healthy controls to nitrocellulose-bound M. leprae antigens.

The lymphoproliferative responses of 51 leprosy patients and 11 healthy contacts were analyzed using the nitrocellulose-bound specific antigen fractions from the cell-free extract of Mycobacterium leprae. The main proliferation-inducing fraction for peripheral blood mononuclear cells of the healthy contacts was found to be the Fraction II, bearing antigens in the range of 66-45 kDa. However, this fraction failed to induce lymphoproliferation in the leprosy patients, unlike healthy contacts (p < 0.032). The number of responders as well as the strength of the responses to 66-45 kDa proteins were found to be low in the leprosy patients compared to the healthy contacts. Further, preliminary analysis with the subfractions of Fraction II produced a similar pattern, suggesting that the immune response to the antigens in the range of 66-45 kDa M. leprae proteins remains suppressed in subjects with clinical signs and symptoms of the disease.

Antigens, Bacterial↗

Levels of glutathione reductase and glutathione peroxidase of human platelets in unstable angina and myocardial infarction.

Levels of glutathione peroxidase and glutathione reductase were measured in the platelets of 30 patients, 10 of them affected by unstable angina, 10 of them reperfused after myocardial infarction and 10 matched healthy controls. The specific activities of both the enzymes were lowered in both group of patients. Glutathione reductase activity resulted markedly lowered.

Angina, Unstable↗

Response to exercise and ambulatory blood pressure monitoring in essential hypertension.

To evaluate the relationship of ambulatory blood pressure (ABP) recording and blood pressure response to exercise, 58 essential hypertensive patients, not taking any drugs, had symptom-limited treadmill stress test (TST) within 48-96 hours of ABP, TST time, blood pressure increase, decrease, mode of increase and decrease, were independent of ABP systolic (SBP) and diastolic blood pressure (DBP) over 24 hours, day time and night time (p = ns). SBP decrease immediately after exercise were independent of ABP data. TST achieved heart rate was related to both 24 hours SBP (r = -0.64, p = 0.00005) and DBP (r = -0.55, p = 0.00001) in both day (r = -0.64, p = 0.00001 and r = -0.54, p = 0.002) and night (r = -0.52, p = 0.0001 and r = -0.46, p = 0.003) time periods. Therefore patients with achieved heart rate < 100% (n = 18) had higher 24 hour SBP (148 vs 132 +/- 2 mm Hg, p = 0.0006) and DBP (92.4 +/- 6.4 vs 84 +/- 6.2 mm Hg, P = 0.006) day and night. It is concluded that there is no overlap of diagnostic information using blood pressure. Values in TST or ABP although achieved heart rate in exercise is inversely related to severity of hypertension.

Adult↗

Sigma (sigma1) receptor mediated anti-depressant-like effects of neurosteroids in the Porsolt forced swim test.

This study examined the effects of neurosteroids dehydroepiandrosterone sulfate (DHEAS) and pregnenolone sulfate (PS) and progesterone on the Porsolt forced swim test of depression in mice, and investigated the possible involvement of delta receptors. The immobility time in the mouse forced swimming test was significantly reduced by DHEAS (5 and 20 mg/kg, s.c.) and PS (5 mg/kg) without accompanying changes in the ambulatory or open-field activity. Pretreatment with DHEAS (10 mg/kg) or PS (10 and 20 mg/kg), however, failed to modify the immobility. The relief of behavioral despair in the immobility test by DHEAS (5 and 20 mg/kg) was dose-dependently blocked by preadministration of NE-100 (N,N-dipropyl-2-[4-methoxy-3-(2-phenylethoxy)phenyl-ethylamine monohydrochloride; 0.5 and 1 mg/kg), a putative delta1 receptor antagonist, or progesterone (10 mg/kg), a delta receptor antagonistic neurosteroid. On the other hand, PS (5 mg/kg)-induced decrease in the immobility was significantly blocked by NE-100(0.5 mg/kg), but not by progesterone (10 mg/kg). Neither NE-100 nor progesterone influenced the immobility alone. These data suggest a role for central delta receptor in the antidepressant-like effects of neurosteroids, and reinforced their potential therapeutic use in depression.

Animals↗

Role of opioidergic and monoaminergic neurotransmission in the GnRH release mechanism of EBP-primed OVX rats.

We examined the effect of intracerebroventricular (i.c.v.) administration of mu-opioid agonist, morphine, and its antagonist naloxone followed by morphine on the activities of monoamine-metabolizing enzymes, namely tyrosine hydroxylase (TH) and monoamine oxidase (MAO) along with adenosinetriphosphatase (Na+, K+ -ATPase), the enzyme responsible for the maintenance of ionic gradients across the membrane, in seven discrete regions of brain from estrogen- and progesterone-primed ovariectomized rats. TH activity decreased after morphine treatment in some areas such as the median eminence-arcuate region (ME-ARC), the amygdala, and the thalamus, showing statistically significant change. MAO activity increased in all the areas studied, but more appreciable change was observed in medial preoptic area (mPOA), the ME-ARC region, and the cortex. Pronounced increase in Na+, K+ -ATPase enzyme activity was observed after the drug treatment. Naloxone given prior to morphine injection resulted in recovery of the enzyme activities in most of the areas studied. Our study may provide insights into the precise opioidergic modulation of gonadotropin releasing hormone (GnRH) release mechanisms through the involvement of monoaminergic system, elucidating the basis of various neuronal dysfunctions and their management in opioid addicts.

Analgesics, Opioid↗

Early induction of apoptosis in hematopoietic cell lines after exposure to flavopiridol.

Flavopiridol (NSC 649890; Behringwerke L86-8275, Marburg, Germany), is a potent inhibitor of cyclin dependent kinases (CDKs) 1, 2, and 4. It has potent antiproliferative effects in vitro and is active in tumor models in vivo. While surveying the effect of flavopiridol on cell cycle progression in different cell types, we discovered that hematopoietic cell lines, including SUDHL4, SUDHL6 (B-cell lines), Jurkat, and MOLT4 (T-cell lines), and HL60 (myeloid), displayed notable sensitivity to flavopiridol-induced apoptosis. For example, after 100 nmol/L for 12 hours, SUDHL4 cells displayed a similar degree of DNA fragmentation to that shown by the apoptosis-resistant PC3 prostate carcinoma cells only after 3,000 nmol/L for 48 hours. After exposure to 1,000 nmol/L flavopiridol for 12 hours, typical apoptotic morphology was observed in SUDHL4 cells, but not in PC3 prostate carcinoma cells despite comparable potency (SUDHL4: 120 nmol/L; PC3: 203 nmol/L) in causing growth inhibition by 50% (IC50). Flavopiridol did not induce topoisomerase I or II cleavable complex activity. A relation of p53, bcl2, or bax protein levels to apoptosis in SUDHL4 was not appreciated. While flavopiridol caused cell cycle arrest with decline in CDK1 activity in PC3 cells, apoptosis of SUDHL4 cells occurred without evidence of cell cycle arrest. These results suggest that antiproliferative activity of flavopiridol (manifest by cell cycle arrest) may be separated in different cell types from a capacity to induce apoptosis. Cells from hematopoietic neoplasms appear in this limited sample to be very susceptible to flavopiridol-induced apoptosis and therefore clinical trials in hematopoietic neoplasms should be of high priority.

Apoptosis↗

A critical evaluation of copper metabolism in Indian Wilson's disease children with special reference to their phenotypes and relatives.

Wilson's disease is an autosomal recessive disorder of copper accumulation in various organs, with most common clinical manifestations such as hepatic, neurological, and renal dysfunctions. Serum copper and ceruloplasmin in Wilson's disease were significantly lower as compared to normals, controls, and relatives of Wilson's disease patients, whereas marked hypercupriuria (145+/-7 microg/24 h) was observed in Wilson's children only. A good correlation (r=0.92) was found between non-ceruloplasmin-bound copper and 24-h urinary copper excretion in Wilson's disease patients. Further, copper studies among the different phenotypes of Wilson's disease revealed substantially low serum ceruloplasmin and a marked hypercupriuria in Wilson's disease children associated with renal tubular acidosis as compared to the patients with either hepatological or neurological manifestations. Serum ceruloplasmin levels in 14 patients of Wilson's disease were between 14 and 20 mg/dL. These patients of Wilson's disease were confirmed by measuring liver biopsy copper, which was about nine times higher than normal hepatic copper content. During the family screening by copper studies, four asymptomatic siblings were diagnosed for Wilson's disease. These subjects were then started on D-penicillamine therapy because presymptomatic treatment prevents progression of the disease complications.

Adolescent↗

Identification of a novel copper-binding protein from the liver of Indian childhood cirrhosis: purification and physicochemical characterization [corrected].

A novel copper-binding protein was identified in the liver supernatant (100,000 x g) of Indian childhood cirrhosis (ICC), purified to apparent homogeneity and characterized [corrected]. Purified major copper-binding protein (MCuBP) is solely responsible for binding about 35% of the total supernatant copper. Elution profile of ICC liver supernatant on Sephadex G-75 column chromatography showed three peaks. About 60% of the total supernatant copper was resolved in peak II, whereas zinc content was insignificant in this peak. But peak II was almost missing in a gel elution profile of control liver supernatant. The control group included cases of various liver diseases viz. neonatal hepatitis, septicemia, and mixed nodular cirrhosis. Copper-binding proteins of peak II further purified on ion-exchange chromatography and elution profile showed that peak II was a MCuBP with high copper-binding capacity (10 g atoms/mol of native protein). SDS-PAGE of this protein also revealed the existence of a single band with molecular mass of about 50 kD. UV spectra of MCuBP showed the maximal absorbance at 254 nm. Unlike the classical metallothionein, the amino acid composition of MCuBP revealed the presence of aromatic amino acids and higher content of glutamic acid and aspartic acid followed by glycine and serine. The ratio (0.3) of basic amino acids to acidic amino acids strongly indicates that it is an acidic protein. The cysteine content in this protein was insignificant, which further corroborates the possibility that the acidic amino acids might be prominent candidates for binding copper. Thus, the 50-kD MCuBP apparently makes a major contribution to the total copper-binding activity in ICC liver cytosol and may play a significant role in hepatic intracellular copper accumulation.

Amino Acids↗

Expression and stable germline transmission of neomycin-resistance gene in transgenic mice.

Transgenic mice were produced to study the expression of amino-3' glycosyl phosphotransferase gene (neomycin resistance gene) in the embryonic fibroblast cells. A 1.9 Kb linear fragment of neomycin resistance gene under the control of pPGK promoter was microinjected into the pronucleus of mouse embryos. Out of 64 potential founders born, 5 were identified to be transgenic by the polymerase chain reaction (PCR) and southern hybridization. Multiple mice from first and second generation from two transgenic founders (N-10 and N-32) were analysed to determine the germline transmission. It was found to be 24.6 and 71.4% in first and second generation respectively. Results were also further confirmed by RT-PCR, sequencing and in vitro bioassays.

Animals↗

Prevalence of anemia among urban school children of Punjab.

OBJECTIVE: To assess the prevalence of anemia among urban school children of Punjab. DESIGN: Cross sectional study. SETTING: Urban schools of Ludhiana, Punjab. SUBJECTS: Two thousand school children of 5-15 years age. METHODS: Relevant history was taken and a complete physical examination done in all the children. Hemoglobin was estimated using cynmethemoglobin method and peripheral blood smears were also examined. Anemia was diagnosed when hemoglobin was less than 11 g/dl for children of 5-6 years age and 12 g/dl for more than 6 years age. RESULTS: Overall prevalence of anemia was 51.5%. Girls had a significantly higher prevalence of anemia except at 5 years and 10-12 years age. More menarcheal girls were anemic as compared to non-menarcheal ones. The prevalence of anemia was high (38%) even in higher socioeconomic groups. Nearly half (47.6%) of well nourished children were anemic. The mean Hb also was lower than expected normal values in both nutritional groups. Compared to non-vegetarians (38%), more vegetarians (65.9%) were anemic. The commonest blood picture seen was microcytic hypochromic (55.4%). CONCLUSIONS: The present study revealed a high prevalence of anemia among healthy urban school children of higher socio-economic classes. Vegetarians and girls, especially after menarche were more at risk to develop anemia.

Adolescent↗

Angiosarcoma of the breast complicating pregnancy.

A 32-year-old pregnant lady presented with a rapidly enlarging right breast mass. A fine needle aspiration was suggestive of a malignant phylloides tumour. However histopathological examination after mastectomy revealed a moderately differentiated angiosarcoma. The histopathological and cytological features of this rare tumour together with the diagnostic pitfalls are discussed.

Adult↗

High frequency of genetic instability of microsatellites in human prostatic adenocarcinoma.

In order to investigate the genomic instability associated with prostate cancer, 36 microsatellite marker loci on chromosomes 1p, 3p, 5q, 8p, 8q, 9p, 11q and 13q were analyzed using microdissected samples from prostate cancer and adjoining microscopically normal tissues from the same slide. DNA was extracted from the normal and tumor cells of 40 microdissected prostate-cancer samples, amplified by PCR, and analyzed for microsatellite instability (MSI) using 36 different polymorphic DNA markers. In the present study, we have utilized a highly refined technique of PCR product separation on a sequencing gel, developed in our laboratory, which clearly shows high-quality results for the microsatellite instability in prostate cancer. The results of this study suggest that 45% (18 out of 40) showed genomic instability at a minimum of 1 locus; 4 cases each showed MSI at one and 2 loci, 4 cases had MSI at 3 loci, 3 cases showed MSI at 5 loci, while one case each showed MSI at 7, 8 and 15 loci. There was no significant correlation between the MSI and stage or grade of the tumors. This extensive study on genomic instability in prostate cancer found the occurrence of MSI to be very high, which suggests a role of MSI in the pathophysiology of prostate cancer.

Adenocarcinoma↗

Deletion of chromosome 11p15, p12, q22, q23-24 loci in human prostate cancer.

Loss of heterozygosity (LOH) on chromosome 11 is frequently altered in various epithelial cancers. The present study was designed to investigate LOH on chromosome 11 in microdissected samples of normal prostatic epithelium and invasive carcinoma from the same patients. For this purpose, DNA was extracted from the microdissected normal and tumor cells of 38 prostate cancers, amplified by polymerase chain reaction PCR and analyzed for LOH on chromosome 11 using 9 different polymorphic DNA markers (D11S1307, D11S989, D11S1313, D11S898, D11S940, D11S1818, D11S924, D11S1336 and D11S912). LOH on chromosome 11 was identified in 30 of 38 cases (78%) with at least one marker. Four distinct regions of loss detected were: 1) at 11p15, at loci between D11S1307 and D11S989; 2) at 11p12, on locus D11S131 (11p12); 3) at 11q22, on loci D11S898, D11S940 and D11S1818; and 4) at 11q23-24, on loci between D11S1336 and D11S912. We found 25% of the tumors with LOH at 11p15; 39% had LOH at 11p12; 66% had LOH at 11q22; and 47% had LOH at 11q23-24. These deletions at 11p15, 11p12, 11q22 and 11q23-24 loci were not related to the stage or grade of the tumor.

Alleles↗