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Biomedical subjects

A Andersson

Publications and source records attributed to A Andersson.

At least 109 records · Page 6Linked to original sources

Influence of age, hyperglycemia, leptin, and NPY on islet blood flow in obese-hyperglycemic mice.

This study aimed to elucidate possible age-related changes in islet blood perfusion in lean and obese C57BL/6 mice. Obese mice aged 1 mo were hyperglycemic and hyperinsulinemic and had an increased islet blood flow compared with age-matched lean mice. This augmented blood flow could be abolished by pretreatment with leptin. The islet blood perfusion was, in contrast to this, markedly decreased in obese 6- to 7-mo-old animals compared with age-matched lean mice. Reversal of hyperglycemia, but not hyperinsulinemia, in these obese mice with phlorizin normalized the islet blood flow. Spontaneous reversal of hyperglycemia, but not hyperinsulinemia, was seen in the 12-mo-old obese mice. Islet blood perfusion in obese mice at this age did not differ compared with lean mice. It is suggested that the initial increase in islet blood flow in obese mice is due to the leptin deficiency. The subsequent decrease in islet blood perfusion is probably caused by the chronic hyperglycemia. The described islet blood flow changes may be of importance for impairment of islet function in obese-hyperglycemic mice.

Aging↗

Patients with premenstrual syndrome have a different sensitivity to a neuroactive steroid during the menstrual cycle compared to control subjects.

We have evaluated the functional sensitivity to a neuroactive steroid in 12 women with and 12 women without premenstrual syndrome (PMS) at two stages of the menstrual cycle, by comparing the effects of three increasing doses of intravenous pregnanolone (3alpha-hydroxy-5beta-pregnan-20-one) on saccadic eye velocity (SEV) and self-rated sedation. Control subjects in the follicular and luteal phase showed a significant reduction in SEV after pregnanolone injections compared to vehicle. In PMS patients, pregnanolone injections induced a significant dose-related decrease in SEV compared to vehicle only in the follicular phase, not in the luteal phase. After pregnanolone injections, sedation scores increased significantly from vehicle among control subjects in the luteal phase but not among PMS patients in either cycle phase. High-severity PMS patients responded with less decrease in SEV and less increase in sedation scores following pregnanolone injections compared to low-severity patients. Control subjects increased their SEV response to pregnanolone in the luteal phase compared to the follicular phase, whereas PMS patients did not. These findings are compatible with a decreased GABAA-receptor sensitivity in brain areas controlling saccadic eye movements among PMS patients in the late luteal phase.

Adult↗

Domiciliary liquid oxygen versus concentrator treatment in chronic hypoxaemia: a cost-utility analysis.

Whether long-term oxygen therapy (LTOT) improves quality of life in chronic hypoxaemia has been questioned. LTOT with an oxygen concentrator (C/C) and gas cylinders for ambulation is considered cumbersome compared to mobile liquid oxygen equipment (L). The hypothesis for this study was that LTOT with liquid oxygen treatment (L) improves patients' health-related quality of life, but that it is also more expensive compared to concentrator (C/C) treatment. A prospective, randomized multicentre trial comparing C/C with L for LTOT was conducted during a six-month period. Fifty-one patients (29 on L and 22 on C/C) with chronic hypoxaemia, regularly active outside the home, participated in the study initially. Costs for oxygen were obtained from the pharmacies. Patient diaries and telephone contacts with members of the healthcare sector were used to estimate costs. Health-related quality of life was measured by the Sickness Impact Profile (SIP) and the EuroQol, instruments at the start and after 6 months. The average total cost per patient for group C/C for the six-month period was US$1,310, and for group L it was US$4,950. Health-related quality of life measured by the SIP instrument showed significant differences in favour of group L in the categories/dimensions of physical function, body care, ambulation, social interaction and total SIP score. In conclusion, liquid-oxygen treatment was more expensive compared to concentrator treatment. However, treatment effects showed that liquid oxygen had a better impact on quality of life.

Chronic Disease↗

Capillary blood pressure in syngeneic rat islets transplanted under the renal capsule is similar to that of the implantation organ.

The aim of the present study was to measure capillary blood pressure and interstitial pressure in transplanted pancreatic islets and to correlate these measurements to capillary and tubular pressures in the adjacent kidney. For this purpose, 250 syngeneic islets were implanted under the renal capsule of WF rats and studied 1, 2, or 6 months after transplantation. Some of the animals studied after 1 and 2 months were streptozotocin (STZ)-induced diabetic. Measurements were performed during basal conditions or after an acute glucose-stimulation of insulin release. The hydrostatic pressures were determined in vivo by direct micropuncture. The islet transplant capillary pressure in normoglycemic animals was 6.9 +/- 0.4 mmHg (n = 9), 10.0 +/- 0.8 mmHg (n = 7), and 12.4 +/- 0.8 mmHg (n = 7) when measured 1, 2, and 6 months after implantation, respectively. Previous data from our laboratory showed that the normal capillary pressure of native rat pancreatic islets is approximately 3 mmHg. The blood pressure in kidney peritubular capillaries was 10-12 mmHg in both transplanted and control animals. Islet transplant interstitial pressures were 4-6 mmHg in the normoglycemic recipients at 1, 2, and 6 months after transplantation. Acute glucose stimulation had no effect on islet transplant interstitial pressure or peritubular or transplant capillary blood pressures. Capillary pressures in the islet grafts were slightly increased 1 month after transplantation in STZ-induced diabetic rats, and this was associated with an increased blood perfusion of the transplants. However, 2 months after transplantation there were no differences in transplant capillary blood pressure between diabetic and normoglycemic animals. The graft interstitial pressure was, on the contrary, decreased in the diabetic animals 2 months after transplantation. We concluded that the capillary blood pressure in islets implanted under the renal capsule was similar to that of the implantation organ, which was three to four times higher than that normally found in native islets.

Animals↗

Measurements of oxygen tension in native and transplanted rat pancreatic islets.

This study was performed to measure the oxygen tension before and after revascularization of pancreatic islets transplanted beneath the renal capsule and to investigate to what extent this was affected by acute and chronic hyperglycemia. In addition, the oxygen tension in islets within the pancreas was determined. PO2 was measured with a modified Clark electrode (tip 2-6 microm o.d.). Within native pancreatic islets, the mean PO2 was higher (31-37 mmHg) than within the exocrine pancreas (20-23 mmHg). The mean oxygen tension in the transplanted islets the day after implantation was half of that recorded in native islets (14-19 mmHg) and did not differ between normoglycemic and diabetic recipients. At 1 month after transplantation, when revascularization had occurred, the mean PO2 in the islet grafts was 9-15 mmHgf in normoglycemic animals but was lower (6-8 mmHg) in diabetic animals, whereas the blood perfusion of the transplants, as measured with laser-Doppler flowmetry (probe diameter 0.45 mm), was similar in both groups. The mean oxygen tension in the superficial renal cortex surrounding the implanted islets was similar in all groups and remained stable at 13-21 mmHg. Intravenous administration of D-glucose (1 g/kg) did not affect the oxygen tension in any of the investigated tissues. We conclude that the mean PO2 in islets implanted under the renal capsule is markedly lower than in native islets, not only in the immediate posttransplantation period but also 1 month after implantation, i.e., when revascularization has occurred. Furthermore, persistent hyperglycemia in the recipient leads to a further decrease in graft oxygen tension. To what extent this may contribute to islet graft failure is at present unknown.

3-O-Methylglucose↗

The cell-damaging effects of low amounts of homocysteine and copper ions in human cell line cultures are caused by oxidative stress.

In the present study, we have investigated the increase of cell protein and the concentration of glutathione, cysteine and homocysteine in cell culture systems (HeLa cell line) after addition of low amounts (100-500 micromol/l) of homocysteine and/or copper. The thiols and cell protein were determined in cell cultures with daily additions of new medium with and without homocysteine and/or copper ions for 3 days. The present study shows that extracellularly added homocysteine (500 and 2000 micromol/l) resulted in signs of cell toxicity (decreased intracellular glutathione level and/or retarded cell growth). After the addition of copper ions (10, 50 or 100 micromol/l), complex changes in the concentrations of thiols in cell cultures occurred but cell growth was normal. After the addition of both homocysteine and copper ions, changes similar to those seen with the addition of copper ions and homocysteine alone were noted. However, synergistic features after addition of 500 micromol/l homocysteine and 10 or 50 micromol/l of copper ions were a significantly retarded cell growth and decreased concentration of cellular glutathione. In HeLa cell lines with initial low cell density and in an endothelial cell line (ECV 304), even the presence of 100 micromol/l of homocysteine and 10 micromol/l of copper ions inhibited cell growth and decreased the cellular level of glutathione. Whilst the level of homocysteine in our 3-day cell-culture experiments is higher than the mild hyperhomocysteinemia thought to be atherogenic in humans (20-30 micromol/l), it is conceivable that over a longer time course (several decades), this mild hyperhomocysteinemia could be sufficient to induce cellular effects similar to those found in the present study, eventually leading to atherosclerosis.

Cations, Divalent↗

Pancreatic beta cells are important targets for the diabetogenic effects of glucocorticoids.

Abnormalities contributing to the pathogenesis of non-insulin-dependent diabetes mellitus include impaired beta cell function, peripheral insulin resistance, and increased hepatic glucose production. Glucocorticoids are diabetogenic hormones because they decrease glucose uptake and increase hepatic glucose production. In addition, they may directly inhibit insulin release. To evaluate that possible role of glucocorticoids in beta cell function independent of their other effects, transgenic mice with an increased glucocorticoid sensitivity restricted to their beta cells were generated by overexpressing the glucocorticoid receptor (GR) under the control of the insulin promoter. Intravenous glucose tolerance tests showed that the GR transgenic mice had normal fasting and postabsorptive blood glucose levels but exhibited a reduced glucose tolerance compared with their control littermates. Measurement of plasma insulin levels 5 min after intravenous glucose load demonstrated a dramatic decrease in acute insulin response in the GR transgenic mice. These results show that glucocorticoids directly inhibit insulin release in vivo and identify the pancreatic beta cell as an important target for the diabetogenic action of glucocorticoids.

Animals↗

Progesterone, 5alpha-pregnane-3,20-dione and 3alpha-hydroxy-5alpha-pregnane-20-one in specific regions of the human female brain in different endocrine states.

Post-mortem concentrations of progesterone, 5alpha-pregnane-3,20-dione (5alpha-DHP) and 3alpha-hydroxy-5alpha-pregnane-20-one (allopregnanolone) were measured in 17 brain areas and serum in five fertile and five postmenopausal women. Steroid concentrations were measured with radioimmunoassay after extraction of brain tissue with ethanol and purification with celite chromatography. There were regional differences in brain concentrations of all three steroids. The highest progesterone levels were noted in the amygdala, cerebellum and hypothalamus and the highest levels of 5alpha-DHP and allopregnanolone were seen in the substantia nigra and basal hypothalamus. Brain concentrations of all three steroids were significantly higher in the fertile women in luteal phase compared to their postmenopausal controls (P < 0.01). In general, the study showed that there is a variation in brain concentrations depending on ovarian steroid production, indicating that the secretion pattern during the menstrual cycle is reflected in the brain. However, regional differences in brain steroid levels imply local mechanisms for steroid uptake and binding as well. Investigations of gonadal steroid distributions in the human brain might be of importance considering the actions of these steroids in the central nervous system. Such studies could provide information about physiological mechanisms, such as the ovulation, and also form a baseline for comparative studies of normal and pathological conditions involving steroids, for instance, catamenial epilepsy and the premenstrual tension syndrome.

5-alpha-Dihydroprogesterone↗

The effects of homocysteine and copper ions on the concentration and redox status of thiols in cell line cultures.

Different fractions (reduced and total) of thiols (homocysteine, cysteine and glutathione) were determined in HeLa cell cultures with and without addition of copper ions and/or homocysteine. In cell cultures without any addition the concentration of all intracellular thiols increased between 1 and 24 h of culture. Glutathione had the highest, whereas homocysteine showed the lowest, proportion of the reduced form. In the medium, there was a decrease of total cysteine during the incubation, but the amount of extracellular reduced cysteine increased. Both homocysteine and glutathione were released into the medium. The amount of exported homocysteine during the incubation exceeded several-fold the intracellular amount. There were no signs of cell toxicity induced by the high amounts of extracellularly added homocysteine (2000 mumol/l) in HeLa cell cultures, except a slight decrease in the concentration of intracellular glutathione. After the addition of copper ions (500 mumol/l) there was a retarded cell growth, decreased intracellular concentration of glutathione, increased release of glutathione into the medium and a lower proportion of all intra- and extracellular reduced thiols. After the addition of both copper ions and homocysteine to HeLa cell cultures, similar changes as with the addition of copper ions were noted except that the cell growth was still more retarded and that a very high level of intracellular homocysteine was noted at 1 h of incubation. N-acetylcysteine lowered, in these experiments, the intracellular accumulation of homocysteine and restored, to some extent, the cell growth. In an endothelial cell line even the presence of 500 mumol/l of homocysteine and 50 mumol/l of copper ions inhibited the cell growth and decreased the cellular level of glutathione. Whilst the levels of homocysteine in our short-time cell culture experiments are higher than the mild hyperhomocysteinemia thought to be atherogenic in humans (20-30 mumol/l), it is conceivable that over a longer time-course (several decades) these lower levels of homocysteine in the presence of copper ions could be sufficient to induce cellular effects similar to those found in the present study, eventually leading to atherosclerosis.

Acetylcysteine↗

Assessment of insulin secretion in vitro from microencapsulated fetal porcine islet-like cell clusters and rat, mouse, and human pancreatic islets.

BACKGROUND: The possibility of transplanting microencapsulated pancreatic islets into patients with insulin-dependent diabetes mellitus, either as allografts or xenografts, has attracted great interest. A critical evaluation of the results obtained reveals that the success has been very limited. The aim of the present study was to compare the in vitro function of microencapsulated islets obtained from adult humans, adult mice, adult rats, and fetal pigs. METHODS: Human pancreatic islets were isolated at beta-Cell Transplant in Brussels, Belgium, and sent to the Department of Medical Cell Biology, Uppsala University in Uppsala, Sweden. Rat and mouse pancreatic islets and fetal porcine islet-like cell clusters (ICC) were prepared in Uppsala. All groups of islets were subsequently sent to the Department of Biotechnology, Norwegian Institute of Biotechnology, University of Trondheim, Trondheim, Norway. After 1 day in tissue culture, the islets were microencapsulated in alginate then cultured and sent back to Uppsala the next day. After either overnight culture (day 1) or 6 days of culture (day 6), the microencapsulated islets were examined for their insulin content and insulin release. Nonencapsulated islets from the same isolations were used as controls. RESULTS: The insulin content of rodent and human islets was not affected by microencapsulation, whereas porcine ICC showed a diminished insulin content. Microencapsulated porcine ICC also had a marked reduction in their insulin secretion in response to stimulation with glucose or glucose + theophylline both on days 1 and 6 in tissue culture. Mouse islets showed a reduced insulin response at both time points. Rat islets exhibited an inhibition of insulin secretion on day 1, but this had been restored by day 6. Human islets had well-preserved insulin secretion after both days 1 and 6. Microencapsulated human islets showed a normal morphology 3-4 weeks after intraperitoneal transplantation to nude mice. CONCLUSIONS: Pancreatic islets isolated from human, rat, and mouse donors show a glucose-stimulated insulin release in vitro after microencapsulation and repeated transports between laboratories. The insulin secretory capacity of microencapsulated human and rat islets was preserved best, whereas mouse islets and particularly fetal porcine ICC were impaired by microencapsulation.

Adult↗

Lineage relationships and differentiation of natural killer (NK) T cells: intrathymic selection and interleukin (IL)-4 production in the absence of NKR-P1 and Ly49 molecules.

In this report, we have assessed the lineage relationships and cytokine dependency of natural killer (NK) T cells compared with mainstream TCR-alphabeta T cells and NK cells. For this purpose, we studied common gamma chain (gamma c)-deficient mice, which demonstrate a selective defect in CD3- NK cell development relative to conventional TCR-alphabeta T cells. NK thymocytes differentiate in gamma c- mice as shown by the normal percentage of TCR Vbeta8+ CD4-CD8- cells and the normal quantity of thymic Va14-Jalpha281 mRNA that characterize the NK T repertoire. However, gamma c-deficient NK thymocytes fail to coexpress the NK-associated markers NKR-P1 or Ly49, yet retain characteristic expression of the cytokine receptors interleukin (IL)-7R alpha and IL-2Rbeta. Despite these phenotypic abnormalities, gamma c- NK thymocytes could produce normal amounts of IL-4. These results define a maturational progression of NK thymocyte differentiation where intrathymic selection and IL-4-producing capacity can be clearly dissociated from the acquisition of the NK phenotype. Moreover, these data suggest a closer ontogenic relationship of NK T cells to TCR-alphabeta T cells than to NK cells with respect to cytokine dependency. We also failed to detect peripheral NK T cells in these mice, demonstrating that gamma c-dependent interactions are required for export and/or survival of NK T cells from the thymus. These results suggest a stepwise pattern of differentiation for thymically derived NK T cells: primary selection via their invariant TCR to confer the IL-4-producing phenotype, followed by acquisition of NK-associated markers and maturation/export to the periphery.

Animals↗

Successful retransplantation of mouse-to-rat cardiac xenografts under immunosuppressive monotherapy with cyclosporine.

The present study was undertaken to investigate whether retransplantation with a second xenograft, from the same species as the primary graft, is possible to achieve using only moderate immunosuppression. Heterotopic mouse-to-rat cardiac transplantations were performed, and the recipients were treated with 15-deoxyspergualin (DSG) and cyclosporine (CsA) at high doses for days -1 to 4 and at moderate doses for days 5 to 28. From day 29 and onward, the immunosuppressive protocol consisted of daily oral administration of CsA 10 mg/kg as monotherapy. Animals that had beating grafts when DSG treatment was stopped were retransplanted 56-154 days after the primary transplantation, either with a vascularized graft (heart) or with nonvascularized graft (pancreatic islets), under continued therapy with CsA. Six of 10 secondary cardiac xenografts functioned for more than 50 days and were harvested beating after 60-100 days. In contrast, nonimmunosuppressed or DSG-treated rats are known to reject a second cardiac mouse graft hyperacutely. The unresponsiveness was confined to cardiac tissue, as the pancreatic islets, transplanted under the kidney capsule, were totally rejected after 14 days. Long-term functioning cardiac xenografts, primary and secondary, had a well-preserved morphology, and infiltrating mononuclear cells were found just in the periphery of the grafts. A majority of these cells were macrophages expressing the ED1, but not the ED2, antigen. No deposition of IgG or complement was seen in any of the graft vessels, whereas a slight deposition of IgM was observed in some vessels of both primary and secondary grafts. In conclusion, we have demonstrated that unresponsiveness can be induced by effective immunosuppression of the recipient at the time of the initial transplantation, so that retransplantation with a second xenograft can be performed successfully under single-drug immunosuppressive therapy with CsA.

Animals↗

Copper ions differ from other thiol reactive metal ions in their effects on the concentration and redox status of thiols in HeLa cell cultures.

Ions of metals such as copper, mercury, silver and cadmium are known to exhibit a high affinity for thiol groups and may therefore severely disturb many metabolic functions in the cell. Copper ions are also known to catalyse the formation of toxic oxygen species through a series of redox reactions. In the present study, we have determined the concentration of reduced and total glutathione, cysteine and homocysteine in a cell culture system (HeLa cell line) after addition of these metal ions. The main findings of the metal ion effect on the total thiol concentrations are that all metal ions increased the release of glutathione into the medium. Since the intracellular concentration of glutathione did not decrease under these conditions, the synthesis of glutathione must have been increased. In contrast to the other metal ions, copper ions also increased the release of homocysteine into the medium, possibly through interaction with S-adenosylhomocysteine hydrolase. The main findings of metal ion effects on reduced thiol are that, at concentrations not interfering with cell growth, mercury, silver and cadmium ions increased the concentration of extracellular reduced glutathione, possibly reflecting the increase of total glutathione in the medium. In contrast to the other metal ions, the addition of even very low amounts of copper ions (1 mumol/l) decreased the concentration of intra- and extracellular reduced thiols indicating oxidative stress.

Animals↗

Trihydroxynaphthalene reductase from Magnaporthe grisea: realization of an active center inhibitor and elucidation of the kinetic mechanism.

Active trihydroxynaphthalene reductase (3HNR) is essential for the biosynthesis of fungal melanin by Magnaporthe grisea and is a focus of inhibitor design studies directed toward control of blast disease in rice. Tricyclazole, a preventative fungicide against rice blast, has been previously characterized as inhibiting 3HNR noncompetitively [Viviani, F., Vors, J. P., Gaudry, M., & Marquet, A. (1993) Bull. Soc. Chem. Fr. 136, 395-404] with respect to its naphthol substrate. Our steady-state kinetic and fluorescence titration studies show that instead the inhibitor binds competitively with respect to the naphthol substrate and that it binds to 3HNR forms with the preferences 3HNR.NADPH > 3HNR.NADP+ > 3HNR (unliganded): Kt = 15 nM, 0.56 microM, and Kd = 8.5 microM, respectively. Analysis of the frontier molecular orbitals of tricyclazole and NADP(H) provides a basis for the affinity differences of tricyclazole for 3HNR.NADP(H) enzyme forms. Fluorescence titrations show that NADPH and naphthol substrates form binary complexes with 3HNR [Kd(NADP+) = 38 microM and Kd(U7278, an alternate naphthol-like substrate) = 220 microM]. However, the overwhelmingly preferred order of productive binding is NADPH followed by naphthol substrate, as shown by the uncompetitive inhibition of 3HNR by tricyclazole with respect to NADPH. Consistent with this mechanism, the K(m)'s for the naphthol substrates U7278 and scytalone (5 and 6 microM, respectively) are much lower than the Kd's of the binary complexes. The partition ratio of U7278 and a physiological substrate (scytalone) was 95:1 and unchanged on varying 3HNR.NADP+/3HNR(unliganded), which is also consistent with the ordered mechanism. The pH dependence of the hydride transfer rate from U7278 to NADP+ was measured, as was the pH dependence of Kcat/K(m)(NADP+). Hydride transfer had a pH dependence which suggests a single deprotonated residue (pKa = 6.0) is required for catalysis. Khyd, the rate constant for hydride transfer, was 9-fold larger than Kcat with U7278 as a substrate. A burst in the pre-steady-state suggests that release of one or both of the products is rate limiting to Kcat at pH 7.0. The pH dependence of Kcat/K(m)(NADP+) indicates a requirement for a single deprotonated group and this ionization is assigned to the 2' phosphate of NADP+. 3HNR was found to be 800-fold more specific for NADP+ relative to NAD+. Analysis of sequence and structure [Anderson, A., Jordan, D. B., Schneider. G., & Lindqvist. Y. (1996) Structure 4, 1161-1170] reveals that 3HNR is a member of the short-chain dehydrogenase superfamily of enzymes.

Antifungal Agents↗

Effects of vascular endothelial growth factor on pancreatic duct cell replication and the insulin production of fetal islet-like cell clusters in vitro.

We have previously shown that the tyrosine kinase receptor Flk-1 and its ligand, vascular endothelial growth factor (VEGF), may play a role in the development of fetal rat islet-like structures in vitro, possibly by stimulating the maturation of endocrine precursor cells in the pancreatic ductal epithelium. In order to further assess this, adult rat pancreatic ducts and fetal porcine islet-like cell clusters (ICC) were cultured in the presence of VEGF. In ducts, VEGF stimulated the mitogenesis in the epithelium. Culture of ICC in the presence of VEGF significantly enhanced their insulin content, but decreased the insulin accumulation to the culture medium. Glucose-stimulated acute insulin release was not affected by VEGF. Northern blot analysis after partial pancreatectomy in adult rats revealed induction of VEGF mRNA 3 days after the operation. Immunohistochemistry of fetal rat pancreas showed staining mainly in the islets of Langerhans. We conclude that VEGF directly stimulates the replication of the ductal epithelium, a possible prerequisite for beta-cell formation. This could require local production of VEGF, which may alter in response to physiological demands.

Animals↗

A flexible lid controls access to the active site in 1,3,8-trihydroxynaphthalene reductase.

The crystal structures of apo-1,3,8-trihydroxynaphthalene reductase from Magnaporthe grisea and a binary complex of the enzyme with NADPH have been determined to 2.8 A resolution. In both cases, the overall structure is preserved compared to the structure of the ternary complex of the enzyme with NADPH and an active site inhibitor. No electron density for the helix-loop-helix region comprising residues 214-244 is observed indicating structural disorder in this part of the apoenzyme and the binary complex. In the ternary complex, this region is in contact with NADPH and the inhibitor and closes off the active site. The observed increase in flexibility in the absence of the inhibitor indicates that this region acts as a lid which closes the active site upon binding of the inhibitor and, possibly the substrate, 1,3,8-trihydroxynaphthalene.

Ascomycota↗

Deregulated TCR alpha beta T cell population provokes extramedullary hematopoiesis in mice deficient in the common gamma chain.

Deficiency of the cytokine receptor common gamma chain (gamma c) results in abnormal lymphoid development and a severe immunodeficiency disease due to the combined loss of the receptors for interleukins (IL)-2, -4, -7, -9, and -15. We have observed the development of secondary hematopoiesis with circulating hematopoietic progenitor cells in adult mice harboring a null mutation in gamma c. These extramedullary changes were not secondary to bone marrow failure or to an inability to maintain circulating blood counts. These results suggested that gamma c-dependent cytokine signaling pathways modulate hematopoietic development. An intrinsic defect in gamma c- hematopoietic stem cell commitment appeared unlikely, as fetal liver hematopoiesis was unaltered in gamma c- embryos. Furthermore, the absence of natural killer cells in gamma c- mice was not responsible for the observed hematopoietic changes. Peripheral TCR alpha beta T cells from gamma c- mice were characterized by an activated phenotype (CD62Llo, CD44hi, CD69hi) and showed increased levels of transcripts for hematopoietic stimulating cytokines, including IL-3 and granulocyte/macrophage-colony-stimulating factor. A predominance of these cells was detected in the bone marrow, suggesting a role for residual T cells in the enhanced hematopoiesis. Strikingly, the elimination of residual T cells from gamma c- mice reduced splenic and circulating hematopoietic precursor frequencies to normal levels. These results clearly implicate a deregulated TCR alpha beta T cell population in the observed hematopoietic changes in gamma c- mice, and emphasize the importance of gamma c-dependent cytokine interactions in modulating mature T cell responses.

Animals↗

Mouse macrophage development in the absence of the common gamma chain: defining receptor complexes responsible for IL-4 and IL-13 signaling.

The common gamma chain (gamma c) forms a critical component of the receptors for interleukins (IL)-2, IL-4, IL-7, IL-9, and IL-15. We analyzed gamma c-deficient mice to define a role for gamma c signaling in the development and function of the macrophage lineage. No major differences in absolute cell numbers, cell surface phenotype, or in vitro function of gamma c- compared to gamma c+ macrophages were observed. We therefore conclude that signaling through the gamma c chain is not essential for the differentiation of mouse macrophages. Although B and T cells require gamma c for IL-4 responses, IL-4 up-regulated major histocompatibility class II molecules and inhibited nitric oxide production from gamma c- macrophages following stimulation with lipopolysaccharide and interferon-gamma. gamma c- macrophages could also respond to IL-13, consistent with the model of a type II IL-4 receptor alpha/IL-13R which can function in the absence of gamma c. Both IL-4 and IL-13 responses could be completely inhibited with the mouse IL-4 antagonist OY, suggesting that all of the observed IL-13 responses pass through the type II receptor, making it the primary signaling receptor complex for IL-13 in mouse macrophages.

Animals↗