Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Crying”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 559 records · Page 31Linked to original sources

Inhibition of KATP channel activity by troglitazone in CRI-G1 insulin-secreting cells.

Patch-clamp recording techniques were used to examine the effect of troglitazone on KATP channel activity in Cambridge rat insulinoma-G1 (CRI-G1) insulin-secreting cells. In both inside-out and outside-out patch recordings, bath application of troglitazone reduced KATP channel activity. This inhibition was independent of the membrane voltage and was poorly reversible. In whole-cell studies, troglitazone inhibited KATP channel currents with an IC50 of 697 +/- 92 nM and an associated Hill coefficient of 1.2 +/- 0.2. In current clamp recordings 10 microM troglitazone depolarised the CRI-G1 cell membrane by 36.8 +/- 3.9 mV with a concomitant decrease in membrane conductance. However, in contrast to the rapid depolarisation produced by tolbutamide, the effects of troglitazone developed more slowly, usually taking 15-20 min to develop.

Adenosine Triphosphate↗

Voltage-activated currents in the CRI-G1 rat insulin-secreting cell-line.

1. The whole-cell configuration of the patch-clamp recording technique was used to characterize the electrophysiological properties of CRI-G1 insulin-secreting cells. 2. Current-clamp recordings demonstrated the excitable nature of these cells. 3. Voltage-clamp recordings revealed the presence of an inward Na+ current, an inward Ca2+ current and a delayed outward K+ conductance. 4. The electrophysiological properties of CRI-G1 closely resemble those of pancreatic beta-cells, thereby rendering this cell-line as a useful alternative to freshly isolated cells for the study of pancreatic beta-cell electrophysiology and pharmacology.

Action Potentials↗

Structural implication of the induced immune response by Bacillus thuringiensis Cry proteins: role of the N-terminal region.

The potential role of the regions (carboxil and amino) of the Cry proteins in the ability of these proteins to elicit strong immune responses was investigated. Intraperitoneal immunization of mice with the homologous Cry1A protoxins (130-133 kDa), with the long C-terminal half gave rise mostly to similar, strong serum and mucosal IgG and IgM antibody response but a lower induction of these Ab by intranasal route. Remarkably, Cry3A protoxin, devoid of C-terminal half was able to induce a significant mucosal IgG, and IgM Ab as well as Cry1A protoxins, suggesting us that immunogenic abilities are not restricted to C-terminal half but N-terminal half itself could be involved. In fact, this assumption was strengthen by the strong immunogenic abilities of the Cry1A toxins, specially IgG and IgA Ab induced by both routes in different mucosal sites. These data indicate that immunogenic abilities of the Bt Cry proteins reside and depends of the N-terminal half.

Administration, Inhalation↗

Larvicidal Cry proteins from Bacillus thuringiensis are released in root exudates of transgenic B. thuringiensis corn, potato, and rice but not of B. thuringiensis canola, cotton, and tobacco.

Larvicidal proteins encoded by cry genes from Bacillus thuringiensis were released in root exudates from transgenic B. thuringiensis corn, rice, and potato but not from B. thuringiensis canola, cotton, and tobacco. Nonsterile soil and sterile hydroponic solution in which B. thuringiensis corn, rice, or potato had been grown were immunologically positive for the presence of the Cry proteins; from B. thuringiensis corn and rice, the soil and solution were toxic to the larva of the tobacco hornworm (Manduca sexta), and from potato, to the larva of the Colorado potato beetle (Leptinotarsa decemlineata), representative lepidoptera and coleoptera, respectively. No toxin was detected immunologically or by larvicidal assay in soil or hydroponic solution in which B. thuringiensis canola, cotton, or tobacco, as well as all near-isogenic non-B. thuringiensis plant counterparts or no plants, had been grown. All plant species had the cauliflower mosaic virus (CaMV) 35S promoter, except rice, which had the ubiquitin promoter from maize. The reasons for the differences between species in the exudation from roots of the toxins are not known. The released toxins persisted in soil as the result of their binding on surface-active particles (e.g. clay minerals, humic substances), which reduced their biodegradation. The release of the toxins in root exudates could enhance the control of target insect pests, constitute a hazard to nontarget organisms, and/or increase the selection of toxin-resistant target insects.

Bacterial Proteins↗

The oligomeric state of Bacillus thuringiensis Cry toxins in solution.

The molecular mass of different Cry toxins produced by Bacillus thuringiensis bacteria was estimated by size-exclusion chromatography and non-denaturing polyacrylamide gel electrophoresis at neutral and alkaline pH in order to assess the existence of oligomers in solution. We found that Cry1Aa, Cry1Ac, Cry1C, Cry1D and Cry3A toxins exist in solution as a mixture of monomer and high molecular mass aggregates with an apparent molecular mass greater than 600 kDa, that depend on the time elapsed between toxin activation and analysis. Aggregation of toxins by disulfide bonds is unlikely because aggregates are also observed in samples incubated with DTT. These data show that the Cry toxins studied do not form oligomers of less than ten subunits in solution and suggest that oligomer formation may occur after the toxin binds to the receptor and inserts into the membrane.

Bacillus thuringiensis↗

Chicken pineal Cry genes: light-dependent up-regulation of cCry1 and cCry2 transcripts.

Vertebrate cryptochrome homologs (CRYs) are negative regulators for the transcription/translation-based autoregulatory feedback loop of the circadian clock. In this study we identified two Cry genes in the chicken, cCry1 and cCry2, which are expressed in the pineal gland. Messenger RNA levels of both cCry1 and cCry2 displayed circadian oscillation in cultured pineal cells under light/dark and constant darkness conditions. Noticeably, their mRNA levels during the light period were significantly higher than those in the dark, indicating light-dependent up-regulation of the two Cry genes mediated by photoreceptor(s) intrinsic to the chick pineal cells. These cCRYs inhibited E-box element-dependent cBMAL1/2-cCLOCK-induced transcription, suggesting that the chick pineal circadian oscillator is composed of molecules that are functionally similar to those of mammals but are subject to light-regulation distinct from the mammalian clockwork.

Amino Acid Sequence↗

Effect of englitazone on KATP and calcium-activated non-selective cation channels in CRI-G1 insulin-secreting cells.

1. The effects of englitazone sodium, an antidiabetic agent, on ion channel activity in the CRI-G1 insulin secreting cell line was examined by use of the patch clamp technique. 2. Application of englitazone to the outside of CRI-G1 cells in the whole-cell recording configuration produced concentration-dependent inhibition of KATP currents with an IC50 value of 8 microM. The inhibition of the K+ current was not affected by the removal of Mg2+ ions from or the addition of trypsin to the solution bathing the intracellular surface of the cell membrane. 3. Englitazone also inhibited KATP channel activity in recordings from inside out excise membrane patches. The concentration-dependence of inhibition was identical to that observed in whole-cell recordings and was voltage-independent. Single channel recordings confirmed that neither the absence or presence of Mg2+ ions nor the addition of trypsin at the intracellular surface of the membrane influenced the inhibition of KATP channels by englitazone. 4. Englitazone also inhibited Ca(2+)-activated non-selective cation (NSCa) channels in inside-out patches in a concentration-dependent and voltage-independent manner with an IC50 value of 10 microM. In comparison, the non-sulphonylurea KATP channel blocker ciclazindol produced a slight voltage-dependent inhibition of the NSCa channel at a concentration of 20 microM. 5. In whole-cell recordings englitazone, at a relatively high concentration (50 microM) in comparison with that required to block KATP and NSCa channels, inhibited voltage-activated Ca2+ currents by 33% but did not inhibit voltage-activated K+ and Na+ currents. 6. It is concluded that englitazone is a novel blocker of NSCa and KATP channels. The inhibition of KATP channels occurs following procedures that dissociate sulphonylurea receptor coupling to the channel. The equipotent and voltage-independent inhibition of NSCa and KATP channels by englitazone may indicate a common mechanism of block.

Adenosine Triphosphate↗

Diazoxide- and leptin-activated K(ATP) currents exhibit differential sensitivity to englitazone and ciclazindol in the rat CRI-G1 insulin-secreting cell line.

1. The effects of the antidiabetic agent englitazone and the anorectic drug ciclazindol on ATP-sensitive K+ (K(ATP)) channels activated by diazoxide and leptin were examined in the CRI-G1 insulin-secreting cell line using whole cell and single channel recording techniques. 2. In whole cell current clamp mode, the hyperglycaemic agent diazoxide (200 microM) and the ob gene product leptin (10 nM) hyperpolarised CRI-G1 cells by activation of K(ATP) currents. K(ATP) currents activated by either agent were inhibited by tolbutamide, with an IC50 for leptin-activated currents of 9.0 microM. 3. Application of englitazone produced a concentration-dependent inhibition of K(ATP) currents activated by diazoxide (200 microM) with an IC50 value of 7.7 microM and a Hill coefficient of 0.87. In inside-out patches englitazone (30 microM) also inhibited K(ATP) channel currents activated by diazoxide by 90.8+/-4.1%. 4. In contrast, englitazone (1-30 microM) failed to inhibit K(ATP) channels activated by leptin, although higher concentrations (> 30 microM) did inhibit leptin actions. The englitazone concentration inhibition curve in the presence of leptin resulted in an IC50 value and Hill coefficient of 52 microM and 3.2, respectively. Similarly, in inside-out patches englitazone (30 microM) failed to inhibit the activity of K(ATP) channels in the presence of leptin. 5. Ciclazindol also inhibited K(ATP) currents activated by diazoxide (200 microM) in a concentration-dependent manner, with an IC50 and Hill coefficient of 127 nM and 0.33, respectively. Furthermore, application of ciclazindol (1 microM) to the intracellular surface of inside-out patches inhibited K(ATP) channel currents activated by diazoxide (200 microM) by 86.6+/-8.1%. 6. However, ciclazindol was much less effective at inhibiting KATP currents activated by leptin (10 nM). Ciclazindol (0.1-10 microM) had no effect on K(ATP) currents activated by leptin, whereas higher concentrations (> 10 microM) did cause inhibition with an IC50 value of 40 microM and an associated Hill coefficient of 2.7. Similarly, ciclazindol (1 microM) had no significant effect on K(ATP) channel activity following leptin addition in excised inside-out patches. 7. In conclusion, K(ATP) currents activated by diazoxide and leptin show different sensitivity to englitazone and ciclazindol. This may be due to differences in the mechanism of activation of K(ATP) channels by diazoxide and leptin.

Adenosine Triphosphate↗

The CRY box: a second APCcdh1-dependent degron in mammalian cdc20.

Cdc20 and cdh1 are coactivators of the anaphase-promoting complex (APC). APC(cdc20) is necessary for the metaphase-anaphase transition and, at the end of mitosis, vertebrate cdc20 itself becomes a target for degradation through KEN-box-dependent APC(cdh1) activity. By studying the degradation of fluorescent protein chimaeras in mammalian oocytes and early embryos, we found that cdc20 was degraded through two independent degradation signals (degrons), the KEN box and a newly described CRY box. In both oocytes and G1-stage embryos, the rate of degradation through the CRY box was greater than through the KEN box, although both were mediated by APC(cdh1). Thus, mammalian oocytes and embryos have the capacity to recognize two degrons in cdc20.

Anaphase-Promoting Complex-Cyclosome↗

Epitope specificity of IgE antibodies to a major allergen (Cry j 1) of Japanese cedar pollen in sera of humans and monkeys with pollinosis.

Japanese cedar (Cryptomeria japonica) pollinosis has been reported to occur naturally in Japanese monkeys (Macaca fuscata) as well as humans. Using monoclonal antibodies (mAb) specific to Cry j 1, a major allergen in Japanese cedar pollen, we identified five independent epitopes (EP-1 to EP-5) on the molecule. The epitopes recognized by IgE antibodies in the sera of humans and monkeys with the pollinosis were analysed by an IgE enzyme-linked immunosorbent assay inhibition method with these mAb. In human patients, the mAb to EP-1 strongly blocked the binding of IgE antibodies in all patients' sera to Cry j 1. The reaction patterns of IgE antibodies in monkeys, however, varied among the troops of monkeys. In some troops, the mAb to EP-1 showed a blocking pattern similar to that for human patients. In other troops, mAb to EP-4 and EP-5 blocked binding of IgE. These results indicate that some, but not all, monkeys have antibody responses to the major allergen similar to those of humans.

Allergens↗

Functional and structural analyses of cryptochrome. Vertebrate CRY regions responsible for interaction with the CLOCK:BMAL1 heterodimer and its nuclear localization.

Mouse mCRY1 and zebrafish zCRY1a and zCRY3 belong to the DNA photolyase/Cryptochrome family. mCRY1 and zCRY1a repress CLOCK:BMAL1-mediated transcription, whereas zCRY3 does not. Reciprocal chimeras between zCRY1a and zCRY3 were generated to determine the zCRY1a regions responsible for nuclear translocation, interaction with the CLOCK:BMAL1 heterodimer, and repression of CLOCK:BMAL1-mediated transcription. Three regions, RD-2a-(126-196), RD-1-(197-263), and RD-2b-(264-293), were identified. Proteins in this family consist of an N-terminal alpha/beta domain and a C-terminal helical domain connected by an interdomain loop. RD-2a is within this loop, RD-1 is at the N-terminal 50 amino acids, and RD-2b at the following 31 amino acid residues of the helical domain. Either RD-2a or RD-1 is required for interaction with the CLOCK: BMAL1 heterodimer, and either RD-1 or RD-2b is required for the nuclear translocation of CRY. Both of these functions are prerequisites for the transcriptional repressor activity. The functional nuclear localizing signal in the RD-2b region also was identified. The sequence is well conserved among repressor-type CRYs, including mCRY1. Mutations in the nuclear localizing signal of mCRY1 reduce the extent of its nuclear localization. These findings show that both nuclear localization and interaction with the CLOCK:BMAL heterodimer are essential for transcriptional repression by CRY.

Amino Acid Sequence↗

A new PCR-based approach to a fast search of a wide spectrum of cry genes from Bacillus thuringiensis strains.

A pair of highly degenerated primers was adapted to carry out a single-step PCR-detection of any known and probably unknown cry genes of classes cry1, cry4 and cry9 encoding for 130 kDa protein delta-endotoxins in the natural Bacillus thuringiensis (BT) strains. The Southern hybridization of the product has demonstrated that essentially remote cry-genes like cry1Aa and cry9A (cryIG) could be represented in the single amplificate if they are simultaneously present in the genome of the analyzed strain. Four genes were detected by the proposed scheme in the BT ssp. galleriae 11-67. One of them, gene cry1Ga1 was originally found and cloned using the PCR-amplification product obtained from the genomic DNA of this strain as a probe. The new gene was completely identical to one cloned by B. Lambert (unpublished, EMBL accession number Z22510) and essentially related to cryIM (EMBL accession number Y09326), renamed according to the new nomenclature as cry1Ga2.

Bacillus thuringiensis↗

Carbohydrate structures of the glycoprotein allergen Cry j I from Japanese cedar (Cryptomeria japonica) pollen.

The glycoprotein allergen Cry j I from Japanese cedar (Cryptomeria japonica) pollen was treated with pepsin and glycopeptidase A to release asparagine-linked oligosaccharides. The reducing ends of the oligosaccharides were aminated with the fluorescent reagent 2-aminopyridine. The oligosaccharide derivatives were purified by gel permeation chromatography and reversed-phase HPLC. Their structures were determined by sequential exoglycosidase digestion and 500 MHz 1H-NMR spectroscopy. Four oligosaccharide structures, A, B, C, and D, were identified as the xylose-containing complex-type. They were present at a molar ratio of 8:1:6:1. By amino acid sequence analyses of the tryptic peptides, Asn-170 and Asn-333 of Cry j I were found to carry asparagine-linked oligosaccharides. [formula: see text]

Allergens↗

Dissociation of KATP channel and sulphonylurea receptor in the rat clonal insulin-secreting cell line, CRI-D11.

It is generally considered that the sulphonylurea receptor is an integral part of the ATP-sensitive K+ channel. We have investigated this proposal by comparing the binding and functional characteristics of the sulphonylurea receptor and KATP channel by using two rat insulinoma cell lines (CRI-G1 and CRI-D11) of common origin. Insulin release was increased in both cell lines by a variety of metabolizable and non-metabolizable secretagogues but glibenclamide induced an increase in insulin release in G1 cells only. [3H]glibenclamide binding studies showed a substantial reduction in the number of glibenclamide binding sites (Bmax) in the D11 cells compared with G1 cells. Single-channel studies of these cell lines show that the KATP channel is generally unchanged in its biophysical properties and in the number of channels observed. Slight differences were apparent: the KATP channels in D11 cells were much less susceptible to rundown and were slightly less sensitive to block by ATP. However, one major distinction was the lack or much reduced sensitivity of the KATP channel in D11 cells to tolbutamide and glibenclamide. We conclude that the KATP channel can exist and function independently of the sulphonylurea receptor, and therefore it is unlikely that they exist as a single protein assembly.

1-Methyl-3-isobutylxanthine↗

Efficient expression of vip184DeltaP gene under the control of promoters plus Shine-Dalgarno (SD) sequences of cry genes from Bacillus thuringiensis.

AIMS: To compare vip184DeltaP gene expression time course and Vip184 protein yield under the control of promoters and Shine-Dalgarno (SD) sequences of vip184, cry3A and cry1A gene from Bacillus thuringiensis respectively. METHODS AND RESULTS: Derived from the shuttle vector pHT3101, recombinant plasmids pHPT3, pHTP3A(Delta)P and pHTP1A(Delta)P were constructed with the native vip184 gene and the vip184(Delta)P gene, either under the control of promoters and SD sequences of cry3A or cry1A genes. When the above plasmids were transformed into an acrystalliferous B. thuringiensis strain Cry(-)B, their expression time course were consistent with those of vip184, cry3A and cry1A gene respectively. The maximum yields of Vip184 protein were increased when under the control of promoters plus SD sequences of cry3A and cry1A gene. CONCLUSIONS: The results showed that both cry3A and cry1A promoter/SD sequence combinations were able to enhance synthesis of Vip184 and change its expression time course. SIGNIFICANCE AND IMPACT OF THE STUDY: Both cry3A and cry1A promoter/SD systems offer a method for improving the expression efficacy of the vip184 gene in B. thuringiensis and it is possible to co-express the vip184 gene and cry genes and accumulate Vip184 in the form of inclusion bodies by these systems in order to construct novel useful B. thuringiensis engineered strains.

Animals↗

"I hardly cried when I got my shot!" Influencing children's reports about a visit to their pediatrician.

We examined, in 2 phases, the influence of postevent suggestions on children's reports of their visits to a pediatrician. Phase 1 examined the effect of giving one of 3 types of feedback to 5-year-old children immediately following their Diphtheria Pertussis Tetanus (DPT) inoculation. Children were given pain-affirming feedback (the shot hurt), pain-denying feedback (the shot did not hurt), or neutral feedback (the shot is over). 1 week later, they did not differ in their reports concerning how much the shot hurt or how much they cried. In Phase 2, the same children were visited approximately 1 year after their inoculation. During 3 separate visits, they were either given additional pain-denying or neutral feedback. They were also given misleading or nonmisleading information about the actions of the pediatrician and the assistant. Children given pain-denying feedback reported that they cried less and that the shot hurt less than did children given neutral feedback. Those who were given misleading information about the actions of the assistant and the pediatrician made more false allegations about their actions than did children who were not given this information. These results challenge the view that suggestibility effects are confined to peripheral, nonaction events; in this study children's reports about salient actions involving their own bodies in stressful conditions were influenced.

Child↗

Leptin activates ATP-sensitive potassium channels in the rat insulin-secreting cell line, CRI-G1.

1. Whole-cell current-clamp recordings demonstrate that leptin (0.3-10 nm) hyperpolarizes CRI-G1 insulin-secreting cells. This effect is slow on onset and is not reversed on washout of the leptin. 2. Voltage-clamp recordings indicate that leptin activates a potassium conductance in the presence of intracellular ATP (5 mm), but has not effect in its absence. Following activation of ATP-sensitive K+ (KATP) current by diazoxide (0.2 mm), addition of leptin did not alter cell membrane potential or potassium current further. 3. The leptin-induced hyperpolarization and increased potassium conductance are completely inhibited by the application of the sulphonylureas tolbutamide (100 microM) and glibenclamide (0.5 microM). 4. Cell-attached and inside-out single-channel recordings indicate that leptin activates tolbutamide-sensitive KATP channels in CRI-G1 insulin-secreting cells.

Adenosine Triphosphate↗

Insulin occludes leptin activation of ATP-sensitive K+ channels in rat CRI-G1 insulin secreting cells.

1. Using whole-cell and cell-attached recording configurations, the effects of insulin on leptin activation of ATP-sensitive K+ (KATP) channels were examined in the CRI-G1 insulinoma cell line. 2. Whole-cell recordings demonstrated that the leptin-induced hyperpolarization and increased potassium conductance are completely occluded by prior exposure to insulin (1-50 nM). In cell-attached recordings, insulin prevented leptin activation of tolbutamide-sensitive KATP channels. Furthermore, insulin (50 nM) slowly and completely reversed the effects of leptin (10 nM), an action not attributable to direct inhibition of KATP channels per se. 3. Low concentrations of insulin-like growth factor-1 (IGF-1; 10-100 nM) failed to prevent leptin activation of KATP channels, although higher concentrations (1 microM) did inhibit leptin actions. 4. The action of insulin was specific for leptin, as the hyperglycaemic agent diazoxide activated KATP channels following prior exposure to insulin. 5. Wortmannin (1-10 nM) and LY 294002 (10 microM) prevented leptin activation of KATP channels, indicating an involvement of phosphoinositide 3-kinase (PI 3-kinase). 6. In conclusion, leptin activation of KATP channels is counter-regulated by insulin in the CRI-G1 insulinoma cell line. This feedback mechanism may be important in the local integration of hormonal signals which regulate insulin secretion and in alterations of metabolic homeostasis associated with obesity and non-insulin dependent diabetes mellitus (NIDDM).

Adenosine Triphosphate↗