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Biomedical subjects

J Goyal

Publications and source records attributed to J Goyal.

At least 19 recordsLinked to original sources

CpG methylation as a basis for breast tumor-specific loss of NES1/kallikrein 10 expression.

The normal epithelial cell-specific-1 (NES1)/kallikrein 10 gene is expressed in normal mammary epithelial cells, but its expression is dramatically decreased in breast cancer cell lines. Now, we have cloned and characterized the active promoter region of NES1. Using a luciferase reporter system, we demonstrate that most tumor cell lines are able to support full or partial transcription from the NES1 promoter, suggesting a role for promoter-independent cis-acting mechanisms of loss of NES1 expression. We show that hypermethylation of the NES1 gene represents one such mechanism. Using methylation-specific PCR and sequence analysis of sodium bisulfite-treated genomic DNA, we demonstrate a strong correlation between exon 3 hypermethylation and loss of NES1 mRNA expression in a panel of breast cancer cell lines and in primary tumors. Treatment of NES1-nonexpressing cells with a demethylating agent led to reexpression of NES1, suggesting an important role of hypermethylation in the loss of NES1 expression. We suggest that hypermethylation is responsible for tumor-specific loss of NES1 gene expression. Our results also suggest that hypermethylation of the NES1 gene may serve as a potential marker for breast cancer.

Antimetabolites, Antineoplastic↗

Analysis of normal epithelial cell specific-1 (NES1)/kallikrein 10 mRNA expression by in situ hybridization, a novel marker for breast cancer.

PURPOSE: Normal epithelial cell specific-1 (NES1)/kallikrein 10 gene is expressed in normal mammary and prostate epithelial cells, but the expression of NES1 mRNA and protein is markedly reduced in established breast and prostate cancer cell lines although the NES1 gene is intact. Here, we wished to assess whether NES1 expression is down-regulated in primary breast cancers. EXPERIMENTAL DESIGN: We developed and used an in situ hybridization technique with an antisense NES1 probe to detect NES1 mRNA in sections of normal breast specimens, typical and atypical ductal hyperplasia, ductal carcinoma in situ, and infiltrating ductal carcinoma. RESULTS: All of the 30 normal breast specimens showed high NES1 expression. Notably, 18 (75%) of 24 typical and atypical breast hyperplasia specimens showed high NES1 expression, with weak-to-moderate expression in 6 (25%). Significantly, 13 (46%) of 28 ductal carcinoma in situ specimens lacked NES1 expression, and the remaining 15 (54%) showed weak-to-moderate expression. Finally, 29 of 30 (97%) infiltrating ductal carcinoma grades I-III samples lacked NES1 mRNA, with weak expression in the remaining one sample. CONCLUSIONS: Our results demonstrate that NES1 mRNA is expressed in normal breast tissue and benign lesions, with loss of NES1 expression during tumor progression. We suggest that NES1 expression may serve as a molecular tool in the study of breast cancer progression. Studies with larger series of specimens should help assess whether NES1 expression can be a diagnostic and/or prognostic marker in breast and other cancers.

Biomarkers, Tumor↗

Negative regulation of PYK2/related adhesion focal tyrosine kinase signal transduction by hematopoietic tyrosine phosphatase SHPTP1.

Related adhesion focal tyrosine kinase (RAFTK) (also known as PYK2) is a cytoplasmic tyrosine kinase related to the focal adhesion kinase (FAK) p125(FAK). RAFTK is rapidly phosphorylated on tyrosine residues in response to various stimuli, such as tumor necrosis factor-alpha, changes in osmolarity, elevation in intracellular calcium concentration, lysophosphatidic acid, and bradykinin. Overexpression of RAFTK induces activation of c-Jun amino-terminal kinase (also known as stress-activated protein kinase), mitogen-activated protein kinase (MAPK), and p38 MAPK. The present studies demonstrate that RAFTK binds constitutively to the protein tyrosine phosphatase SHPTP1. In contrast to PTP1B, overexpression of wild-type SHPTP1 blocks tyrosine phosphorylation of RAFTK. The results further demonstrate that RAFTK is a direct substrate of SHPTP1 in vitro. Moreover, treatment of PC12 cells with bradykinin is associated with inhibition in tyrosine phosphorylation of RAFTK in the presence of SHPTP1. Furthermore, in contrast to the phosphatase-dead SHPTP1 C453S mutant, overexpression of wild-type SHPTP1 blocks interaction of RAFTK with the SH2-domain of c-Src and inhibits RAFTK-mediated MAPK activation. Significantly, cotransfection of RAFTK with SHPTP1 did not inhibit RAFTK-mediated c-Jun amino-terminal kinase activation. Taken together, these findings suggest that SHPTP1 plays a negative role in PYK2/RAFTK signaling by dephosphorylating RAFTK.

Cell Adhesion Molecules↗

Role of lecithin-cholesterol acyltransferase in the metabolism of oxidized phospholipids in plasma: studies with platelet-activating factor-acetyl hydrolase-deficient plasma.

To determine the relative importance of platelet-activating factor-acetylhydrolase (PAF-AH) and lecithin-cholesterol acyltransferase (LCAT) in the hydrolysis of oxidized phosphatidylcholines (OXPCs) to lyso-phosphatidylcholine (lyso-PC), we studied the formation and metabolism of OXPCs in the plasma of normal and PAF-AH-deficient subjects. Whereas the loss of PC following oxidation was similar in the deficient and normal plasmas, the formation of lyso-PC was significantly lower, and the accumulation of OXPC was higher in the deficient plasma. Isolated LDL from the PAF-AH-deficient subjects was more susceptible to oxidation, and stimulated adhesion molecule synthesis in endothelial cells, more than the normal LDL. Oxidation of 16:0-[1-14C]-18:2 PC, equilibrated with plasma PC, resulted in the accumulation of labeled short- and long-chain OXPCs, in addition to the labeled aqueous products. The formation of the aqueous products decreased by 80%, and the accumulation of short-chain OXPC increased by 110% in the deficient plasma, compared to the normal plasma, showing that PAF-AH is predominantly involved in the hydrolysis of the truncated OXPCs. Labeled sn-2-acyl group from the long-chain OXPC was not only hydrolyzed to free fatty acid, but was preferentially transferred to diacylglycerol, in both the normal and deficient plasmas. In contrast, the acyl group from unoxidized PC was transferred only to cholesterol, showing that the specificity of LCAT is altered by OXPC. It is concluded that, while PAF-AH carries out the hydrolysis of mainly truncated OXPCs, LCAT hydrolyzes and transesterifies the long-chain OXPCs.

1-Alkyl-2-acetylglycerophosphocholine Esterase↗

Percutaneous suprapubic cystolithotripsy for vesical calculi in children.

BACKGROUND: The majority of vesical calculi in adults can now be treated per-urethrally with the use of ultrasonic or pneumatic lithotripsy. However, the use of these devices is restricted in pediatric patients by the narrow caliber of the urethra. A percutaneous suprapubic approach to the bladder circumvents the problem of urethral caliber in these situations. PATIENTS AND METHODS: Thirty-eight children presenting with bladder stones underwent percutaneous suprapubic cystolithotripsy (PCCL) between November 1989 and April 1996. The age ranged from 1.5 to 7 years. The stone size ranged from 0.8 to 2.4 cm. Seven of these were recurrent stones, and five of the patients were female. The procedure was done under general anesthesia, and the equipment was the same as for upper tract endourology. The bladder was distended with saline and a suprapubic puncture made. The nephroscope was introduced after tract dilation and the stone removed, intact if small or after fragmentation if >1 cm. The procedure was done without fluoroscopy. A suprapubic catheter was left in for 48 hours. RESULTS: All patients had an uneventful recovery following stone removal. The average hospital stage was 3 days. Here, the access provided by percutaneous suprapubic cystostomy has been combined with the experience gained in upper-tract endourology to perform procedures that would otherwise require open operation because of nonavailability of urethral access. CONCLUSION: Extension of endourologic procedures to the lower tract reduces morbidity and hospital stay and thus the cost of treatment. Percutaneous suprapubic cystolithotripsy, in our experience, is a safe and cost-effective alternative to open surgery in children.

Child↗

The role for NES1 serine protease as a novel tumor suppressor.

Previously (Liu et al, Cancer Res., 56: 3371-3379, 1996), we isolated a novel serine protease-like gene--Normal Epithelial Cell Specific-1 (NES1)--that is expressed in normal mammary epithelial cells but is down-regulated in most breast cancer cell lines. Here, we demonstrate that stable expression of NES1 in the NES1-negative MDA-MB-231 breast cancer cell line suppressed the oncogenicity as revealed by inhibition of the anchorage-independent growth and tumor formation in nude mice. Fluorescence in situ hybridization localized the NES1 gene to chromosome 19q13.3, a region that contains genes for related proteases (including the prostate-specific antigen) and is rearranged in human cancers. Similar to breast cancer cell lines, prostate cancer cell lines also lacked NES1 mRNA and protein expression. Together, these results strongly suggest a tumor-suppressor role for NES1 in breast and prostate cancer.

Animals↗

Novel function of lecithin-cholesterol acyltransferase. Hydrolysis of oxidized polar phospholipids generated during lipoprotein oxidation.

Although the major function of lecithin-cholesterol acyltransferase (LCAT) is cholesterol esterification, our previous studies showed that it can also hydrolyze platelet-activating factor (PAF). Because of the structural similarities between PAF and the truncated phosphatidylcholines (polar PCs) generated during lipoprotein oxidation, we investigated the possibility that LCAT may also hydrolyze polar PCs to lyso-PC during the oxidation of plasma. PAF acetylhydrolase (PAF-AH), which is known to hydrolyze polar PCs in human plasma, was completely inhibited by 0.2 mM p-aminoethyl benzenesulfonyl fluoride (Pefabloc), a new serine esterase inhibitor, which had no effect on LCAT at this concentration. On the other hand, 1 mM diisopropylfluorophosphate (DFP) completely inhibited LCAT but had no effect on PAF-AH. Polar PC accumulation during the oxidation of plasma increased by 44% in the presence of 0.2 mM Pefabloc and by 30% in the presence of 1 mM DFP. The formation of lyso-PC was concomitantly inhibited by both of the inhibitors. The combination of the two inhibitors resulted in the maximum accumulation of polar PCs, suggesting that both PAF-AH and LCAT are involved in their breakdown. Oxidation of chicken plasma, which has no PAF-AH activity, also resulted in the formation of lyso-PC from the hydrolysis of polar PC, which was inhibited by DFP. Polar PCs, either isolated from oxidized plasma or by oxidation of labeled synthetic PCs, were hydrolyzed by purified LCAT, which had no detectable PAF-AH activity. These results demonstrate a novel function for LCAT in the detoxification of polar PCs generated during lipoprotein oxidation, especially when the PAF-AH is absent or inactivated.

1-Alkyl-2-acetylglycerophosphocholine Esterase↗

Cell density modulates the decrease of cytosolic free Ca2+ induced by atrial natriuretic hormone, S-nitroso-N-acetylpenicillamine and 8-bromo cyclic GMP in cultured rat mesangial cells.

Cyclic GMP-elevating agents, including atrial natriuretic hormone and NO-generating vasodilators, decrease cytosolic free Ca2+ levels in mesangial cells. We have investigated the role of cell density as a modulator of the decrease in cytosolic free Ca2+ induced by the cyclic GMP (cGMP)-elevating vasodilators atrial natriuretic peptide (99-126) [ANP (99-126); 'atriopeptin 28'] and the NO-generating vasodilator S-nitroso-N-acetylpenicillamine (SNAP), in cultured rat mesangial cells. Increasing cell density was significantly correlated with the decrease in cytosolic free Ca2+ induced by ANP (99-126) or SNAP. Moreover, this effect was independent of the cells' proliferative status. ANP (99-126) and SNAP induced greater fold stimulation of cGMP accumulation in high-density cells, but the levels of cGMP elicited by high concentrations of ANP (99-126) or SNAP were similar in high- and low-density cells. 8-Bromo cGMP was more effective in decreasing cytosolic free Ca2+ in high- than in low-density cells, suggesting that the greater effectiveness of ANP (99-126) and SNAP was, in part, due to greater effectiveness of endogenous cGMP in high-density cells. The results document that cell density, but not proliferative status, plays an important role in the modulation of intracellular Ca2+ dynamics in rat mesangial cells by atriopeptins, NO-generating vasodilators and cGMP.

Animals↗

Role of calcium and calmodulin in Giardia lamblia-induced diarrhoea in mice.

The unidirectional fluxes of Na+, Cl- and Ca2+ across the small intestinal epithelium of normal and Giardia lamblia-infected mice were studied in vitro in short-circuited tissue. Net secretion of Na+ and Cl- was observed in infected animals, whereas in non-infected (control) animals there was net absorption of Na+ ions and marginal secretion of Cl- ions. In infected animals, net absorption of Ca2+ was observed as compared to little secretion observed in control animals. Although the presence of Ca(2+)-ionophore in the medium resulted in a net secretion of Na+ and Cl- in controls, it could not cause any change in the fluxes of these ions in infected animals. Verapamil, a calcium channel blocker, reversed the effects of infection and Ca(2+)-ionophore. Further W7 (n-(6-aminohexyl)-5 chloro-1-naphthalene sulphonamide), a calmodulin antagonist, also reversed the effects of infection. The addition of the neurotoxin, tetrodotoxin caused net absorption of Na+, Cl- and net secretion of Ca2+ in the control group, but it could not produce any effect on the fluxes of these ions in the infected group. These findings demonstrate that, in G. lamblia infection, the secretion of Na+ and Cl- is associated with an increase in absorption of Ca2+ and an increase in calmodulin activity in intestinal microvillar core. These findings further suggest that the enteric nervous system plays a marginal role in Giardia infection.

Animals↗

Differences between the mechanisms of action of heat-stable and heat-labile enterotoxins of Escherichia coli.

The mucosal-to-serosal and serosal-to-mucosal fluxes of Na+ and Cl- were measured in control mice and mice treated with heat-stable (ST) and heat-labile (LT) enterotoxins in the presence or absence of: Ca2(+)-ionophore A23187, an activator of Ca2(+)-calmodulin; or phorbol-12-myristate-13-acetate (PMA), an activator of protein kinase C(PKC); or 1-(5-isoquinolinyl sulphonyl)-2-methyl piperazine (H-7), an inhibitor of PKC. There was net secretion of Na+ and CL- in both experimental groups in contrast to net absorption in the control group. The addition of ionophore or PMA or ionophore + PMA resulted in net secretion of Na+ and Cl- in the control group and the effect of ionophore and pMA was found to be additive. The addition of ionophore did not cause any change in electrolyte fluxes in the ST toxin treated group, however, it increased the net secretion of Na+ and Cl- in the LT toxin treated group. PMA increased the net secretion of Na+ and Cl- in the St toxin treated group, however, it did not cause any change in Na+ and Cl- fluxes in the LT toxin treated group. H-7 did not reverse the effect of ST toxin, however, it reversed the effect of LT toxin.(ABSTRACT TRUNCATED AT 250 WORDS)

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Calcium calmodulin in altered NaCl transport by heat-labile enterotoxin of Escherichia coli.

The mucosal-to-serosal and serosal-to-mucosal fluxes of Na+ and Cl- were carried out in control and experimental groups treated with different doses of heat-labile enterotoxin in the presence or absence of Ca2+-ionophore, Ca2+ channel blocker and calmodulin inhibitor. There was net secretion of Na+ and Cl- in 16 and 32 units of heat-labile enterotoxin treated groups in comparison to net absorption in control group, however, in animals treated with 8 units of heat-labile enterotoxin, no change in Na+ and Cl- fluxes was found when compared to control. Ca2+- ionophore increased net secretion of Na+ and Cl- in 16 and 32 units of heat-labile enterotoxin treated groups and also caused secretion in control group instead of net absorption. Ca2+ channel blocker and calmodulin inhibitor partially reversed the effect of heat-labile enterotoxin. The effect of Ca2+-ionophore was more pronounced in the control group while that of Ca2+ channel blocker and calmodulin inhibitor was more pronounced in 16 and 32 units of heat-labile enterotoxin treated groups. The findings suggest the involvement of Ca2+ and calmodulin in the action of heat-labile enterotoxin of Escherichia coli in mice.

Animals↗

Effect of heat-stable and heat-labile enterotoxins of Escherichia coli on intestinal brush border membrane enzymes of mice.

The activities of intestinal brush border membrane (BBM) enzymes alkaline phosphatase, maltase, lactase, sucrase, gamma-glutamyl transpeptidase and leucine aminopeptidase were determined in intestinal homogenates and purified BBMs from control, heat-stable and heat-labile enterotoxin treated mice. The activities of all the enzymes except lactase were decreased significantly (p less than 0.01) in homogenates while increased significantly (p less than 0.001) in BBMs of experimental groups as compared to controls. Calmodulin activities were increased significantly (p less than 0.01) as compared to control in heat-stable enterotoxin treated mice but remained unaltered in heat-labile enterotoxin treated mice. DNA contents of intestinal homogenates were decreased in experimental groups demonstrating the decrease in cell number in these groups. The altered BBM enzyme activities could not be attributed to changes in calmodulin activities. The increase in enzyme activities in BBMs may reflect a compensatory phenomenon in the remaining cells.

Alkaline Phosphatase↗

Role of Ca2(+)-calmodulin and protein kinase C in the secretory action of heat-labile enterotoxin of Escherichia coli in mice.

The mucosal-to-serosal and serosal-to-mucosal fluxes of Na+ and Cl- were carried out in control and heat-labile enterotoxin treated mice in the presence or absence of Ca2(+)-ionophore A23187, the activator of Ca2(+)-calmodulin or Phorbol-12-myristate-13-acetate (PMA), the activator of Protein kinase C (PKC) or 1-(5-isoquinolinyl sulphonyl)-2-methyl piperazine (H-7), an inhibitor of PKC. There was net secretion of Na+ and Cl- in experimental group in comparison to net absorption in control group. The addition of ionophore or PMA resulted in net secretion of Na+ and Cl- in control group. In experimental group ionophore increased the net secretion of Na+ and Cl- while, PMA could not cause any change in Na+ and Cl- fluxes in experimental group. Calmodulin activity remained unaltered in heat-labile enterotoxin treated mice as compared to control. H-7, reversed the effects of PMA and heat-labile enterotoxin. These studies demonstrate that heat-labile enterotoxin primarily involves PKC in its action.

Animals↗

Physiological and histopathological changes in the intestines of mice challenged with S. typhi.

Transport of Na+, Cl-, Ca2+ and 3-0-methyl-D-glucose (a non-metabolizable analogue of D-glucose) was worked out in control, infected and immunized-infected animals along with histopathological studies of the intestines in these groups. There was significant decrease (p less than 0.01) in net absorption of Na+ and Cl- in the infected group as compared to that in the control group. There was also a significant decrease (p less than 0.01) in 3-0-methyl-D-glucose uptake in the infected group. However, no change was found in the immunized group in any of the electrolytes and non-metabolizable analogue of D-glucose. These findings correlated well with the histopathological studies as the infected intestines showed complete disorganization of mucosal tissues with loss of epithelial cells from the villi whereas the mucosal lining and epithelial cells from the intestines of immunized mice were normal looking.

3-O-Methylglucose↗

Effect of excretory-secretory products of Giardia lamblia on glucose and phenylalanine transport in the small intestine of Swiss albino mice.

The transport of D-glucose and L-phenylalanine was measured in intestinal brush border membrane (BBM) vesicles treated with Excretory-secretory (ES) products of Giardia lamblia. Uptake was found to be significantly lower (P/0.01) in the treated vesicles than in the controls. Exposure of intestinal tissue to ES products resulted in net secretion (P/0.01) of Na+, C1- and 3-O-methyl-D-glucose. Both observations indicate that alterations in the absorptive functions of the intestine might be attributed to interaction of ES products with the BBM.

Animals↗

Studies on the mechanism of Escherichia coli heat-stable enterotoxin-induced diarrhoea in mice.

The unidirectional fluxes of Na+, Cl- and Ca2+ and activities of calmodulin in the intestinal microvillar core were studied in Escherichia coli heat-stable enterotoxin-treated mice. There was net secretion of Na+ and Cl- in toxin-treated animals, while in control animals there was net absorption of these ions. In both control and experimental animals, there was net absorption of Ca2+; however, the absorption was significantly higher (P less than 0.01) in experimental animals when compared to controls. In the presence of Ca2+-ionophore, there was a net secretion of Na+ and Cl- in controls, while the Ca2+-ionophore could not cause any change in the fluxes of these ions in experimental animals. The activity of calmodulin was significantly higher (P less than 0.01) in experimental animals. Verapamil, a calcium channel blocker, and trifluoperazine, a calmodulin inhibitor, reversed the effects of Ca2+-ionophore and heat-stable enterotoxin. These studies demonstrate that the toxin acts through Ca2+-calmodulin, and secretion of Na+ and Cl- in experimental animals is due to an increase in calcium absorption and an increase in calmodulin activity in the intestinal microvillar core.

Animals↗

Role of Ca2+/calmodulin in the regulation of sugar uptake in Escherichia coli heat-stable enterotoxin induced diarrhoea in mice.

The mucosal-to-serosal fluxes of 3-O-methyl-D-glucose, a non-metabolizable analogue of D-glucose, were carried out in control and heat-stable enterotoxin treated mice in the presence or absence of Ca2+-ionophore, Ca2+-channel blocker, calmodulin inhibitor and Na+-K+-ATPase inhibitor. The transport of the sugar was significantly decreased (p less than 0.01) in the experimental animals. In the presence of Ca2+-ionophore, the uptake of the sugar decreased significantly (p less than 0.01) only in the control group while experimental group remained unaffected. Ca2+ channel blocker and calmodulin inhibitor significantly increased (p less than 0.01) the uptake of sugar in both the groups, however, the changes were more pronounced in the experimental group. Ouabain blocked the uptake of the sugar in both the groups. These studies indicated that heat-stable enterotoxin inhibit Na+-K+-ATPase by increasing Ca2+ uptake and calmodulin activity, thus resulting in decreased uptake of 3-O-methyl-D-glucose in heat-stable enterotoxin treated mice.

3-O-Methylglucose↗