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R G Hopkins

Publications and source records attributed to R G Hopkins.

9 recordsLinked to original sources

Transcriptional regulation of interleukin-2 gene expression is impaired by copper deficiency in Jurkat human T lymphocytes.

Copper deficiency reduces secretion of the cytokine interleukin-2 (IL-2) by activated rodent splenocytes, human peripheral blood mononuclear cells and Jurkat cells, a human T lymphocyte cell line. Previous studies showed that low Cu status also decreased the level of IL-2 mRNA in activated Jurkat cells by 50%. Synthesis of this cytokine is regulated by alterations in transcription of the IL-2 gene and the stability of IL-2 mRNA. To determine if Cu status influenced promoter activity of the IL-2 gene, Jurkat cells were transfected with a luciferase reporter gene construct containing the entire 300 bp human IL-2 promoter/enhancer sequence. Cu deficiency was induced by incubating stably transfected cells with the Cu chelator 2,3,2-tetraamine for 35 h prior to activating cells with phytohemagglutinin-P and phorbol myristate acetate. Luciferase activity in lysates of Cu-deficient cells was approximately 50% lower in several multiclonal and clonal cell lines of stably transfected cells than in replicate cultures that were not exposed to chelator. The relative levels of endogenous IL-2 bioactivity and luciferase activity were highly correlated in the transfected cell lines. The chelator-mediated reduction in reporter gene activity was dose-dependent at levels of 5-40 micromol 2,3,2-tetraamine/L. The addition of a slight molar excess of Cu, but not Zn or Fe, to medium containing 2,3,2-tetraamine prevented the decline in luciferase activity. IL-2 mRNA stability in parental Jurkat cells was independent of Cu status. These data indicate that decreased cellular Cu attenuates IL-2 synthesis in T lymphocytes by inhibiting transcription of the IL-2 gene.

Chelating Agents↗

Hepatocyte-specific localization and copper-dependent trafficking of the Wilson's disease protein in the liver.

Wilson's disease is an inherited disorder of copper metabolism characterized by hepatic cirrhosis and neuronal degeneration. In this current study, a polyclonal antiserum specific for the Wilson's disease ATPase was used to examine the hepatic expression of this protein. Immunoblot analysis of lysates from human and rat liver detected a single 165-kDa protein, which by immunofluorescence was present only in hepatocytes and localized predominantly to the trans-Golgi network and exclusively in this compartment under low hepatic copper concentrations. Although hepatic copper concentration had no effect on the steady-state levels of the Wilson's disease protein, copper administration in vivo resulted in redistribution of this protein to a cytoplasmic vesicular compartment localized toward the hepatocyte canalicular membrane. The relative abundance of the Wilson's disease protein in the liver was found to be greatest in the fetus before the onset of biliary copper excretion. Taken together, these studies reveal a novel posttranslational mechanism of copper homeostasis in vivo consistent with the proposed function of the Wilson's disease protein in holoceruloplasmin biosynthesis and biliary copper excretion and of relevance to the broad clinical heterogeneity observed in this disease.

Adenosine Triphosphatases↗

Copper deficiency reduces interleukin-2 (IL-2) production and IL-2 mRNA in human T-lymphocytes.

Although dietary copper (Cu) deficiency has been associated with decreased production of interleukin-2 (IL-2) by activated splenic mononuclear cells in rodent models, the basis for this relationship and its relevance for humans remain unknown. To address these matters, we have developed an in vitro model of cellular copper deficiency by treating Jurkat, a human T-lymphocyte cell line, with low concentrations of 2,3,2-tetraamine (2,3,2-tet), a high affinity copper chelator. Exposure to 5-20 micromol/L 2,3,2-tet for 35 h decreased cell copper and the activity of Cu,Zn-superoxide dismutase (Cu,Zn-SOD) by 30-40% and IL-2 production by 60-70% in cultures activated with phytohemagglutinin and phorbol myristate acetate. Similarly, IL-2 mRNA levels were 40-70% lower in chelator-treated cells than in untreated cells at 3-12 h after activation. In contrast, chelator treatment had no significant effect on cell viability, growth, protein synthesis or mitochondrial activity. The presence of a slight molar excess of copper, but not zinc or iron, during exposure to 2,3,2-tet prevented the chelator-induced decrease in Cu,Zn-SOD activity and the reductions in IL-2 mRNA and bioactivity. Moreover, binding of diferric transferrin (Tf) and cellular uptake of Tf-59Fe by Jurkat cells were not increased by 2,3,2-tet, indicating that chelator-treated cells were not iron deficient. Finally, incubation of human peripheral blood mononuclear cells (PBMC) with 2,3,2-tet decreased mitogen-induced IL-2 production by 50% compared with untreated controls. These data indicate that a decline in copper status decreases IL-2 production by activated human T-cells due to reduced synthesis and/or stability of IL-2 mRNA.

Blotting, Northern↗

Chronic intake of a marginally low copper diet impairs in vitro activities of lymphocytes and neutrophils from male rats despite minimal impact on conventional indicators of copper status.

We investigated the impact of chronic intake of a diet marginally low in Cu on traditional indicators of Cu status and in vitro activities of splenic mononuclear cells and neutrophils. Pregnant Sprague-Dawley rats were fed diets containing either 2.8 (LCu) or 6.7 [adequate (ACu)]mg Cu/kg from midgestation through lactation. Weaned male and female offspring were fed the same diets as their dams until 6 months of age. Dietary Cu level did not alter growth, heart weight, the concentrations of Cu or the activities of cuproenzymes in serum and most tissues. In contrast, splenic mononuclear cells (MNC) from males, but not females, fed the LCu diet were less responsive to in vitro mitogenic activation and generated less interleukin-2 bioactivity than cultures prepared from males fed the ACu diet. Repletion with the ACu diet for 2 wk restored in vitro activities of splenic MNC to control levels. The phorbol myristate acetate-induced generation of superoxide anion by elicited neutrophils from male rodents fed the LCu diet was only 60% that of cells from the ACu diet group. Brain Cu in adult rats fed LCu diet was irreversibly decreased compared with those fed ACu diet. These data show that the in vitro activities of T lymphocytes and neutrophils isolated from adult male rats chronically fed a diet marginally low in Cu were significantly suppressed without marked alterations in the traditional indicators of Cu status.

Animals↗

Associations of cardiovascular disease risk factors with measures of energy expenditure and caloric intake in a farm population.

The purpose of this study was to examine the relationships of several cardiovascular disease risk factors [blood pressure (BP), total cholesterol (TC), high-density-lipoprotein cholesterol (HDL-C), and the HDL-C:TC ratio], as well as the body mass index (BMI) and percent body fat with daily energy intake (EI) and daily energy expenditure (EE) of North Carolina farmers and their wives. Data were collected from 195 subjects. Daily EI and EE were estimated from 4-day food and 4-day activity records, respectively, collected on the same days. Pearson correlation coefficients for chronic disease risk factors with both EI and EE were generally low. When compared to EI, EE was more highly correlated with both lean body mass (r = 0.88) and BMI (r = 0.73), and was less time consuming and easier for the subjects to use. EE obtained from a reliable activity record may be a more practical tool for assessing the possible relationship(s) of energy metabolism to chronic disease risk factors.

Adult↗

Chronic disease risk factors in vitamin/mineral supplement users and nonusers in a farm population.

Dietary, anthropometric, and chronic disease risk factors (CDRF) in vitamin/mineral supplement users (U) and non-users (NU) were measured in a farm population consisting of 162 subjects (46% females and 54% males; 20-79 years of age, mean age: 52 years). Subjects were white, except for two black males. Supplements were used by 62 subjects (38%); 47% of females and 31% of males used supplements; 43% of subjects over 50 years of age and 32% of subjects age 50 or under used supplements. Both dietary intake and energy expenditure were measured using 4-day records. Indices of adiposity included body weight, BMI, and estimated body fat. Total cholesterol (TC), high-density-lipoprotein cholesterol (HDL-C), serum ferritin, hemoglobin, hematocrit, zinc, copper, and vitamin C were based on 12-hr fasting blood samples. Dietary intake (excluding supplements) for vitamin/mineral U was greater than NU for vitamin C (p = 0.006), thiamin (p = 0.01), riboflavin (p = 0.03), niacin (p = 0.02), folic acid (p = 0.001), vitamin B6 (p = 0.01), and magnesium (p = 0.019). Vitamin C levels were significantly higher and the sum of four skinfolds was significantly lower among U than NU. In this population, 24% of males and 18% of females had TC levels over 240 mg%; 8% of both males and females had blood pressures (BP) greater than 140/90 mm Hg, while 49% of males and 46% of females had BP between 120/80 and 140/90; and 71% of males were more than 25% fat, and 56% of females were more than 35% fat. Despite the high prevalence of CDRF, there were no significant differences between supplement U and NU.

Adult↗

Infantile colic.

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Cold Temperature↗