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Human Calprotectin: Effect of Calcium and Zinc on its Secondary and Tertiary Structures, and Role of pH in its Thermal Stability
作者姓名:Yousefi R  Imani M  Ardestani SK  Saboury AA  Gheibi N  Ranjbar B
作者单位:[1]Institute of Biochemistry and Biophysics, University of Tehran, Tehran P. O. Box 13145-1365, Iran [2]Department of Physiology and Medical Physics, Qazvin University of Medical Sciences, Qazvin P. O. Box 34185-745, Iran [3]Department of Biophysics, Faculty of Science, Tarbiat Modares University, Tehran P O. Box 14115-175, Iran
基金项目:This work was supported by grants from the Third World Academy of Science (TWAS) and the Research Council of the University of Tehran.Acknowledgements We are grateful to the Tehran Blood Transfusion Center (Tehran, Iran) for provision of the blood used in this experiment.
摘    要:Calprotectin, a heterodimeric complex belonging to the S 100 protein family, has been found predominantly in the cytosolic fraction of neutrophils. In the present study, human calprotectin was purified from neutrophils using two-step ion exchange chromatography. The purified protein was used for circular dichroism study and fluorescence analysis in the presence of calcium and zinc at physiological concentrations, as well as for assessment of its inhibitory activity on the K562 leukemia cell line. The thermal stability of the protein at pH 7.0 (physiological pH) and 8.0 (similar to intestinal pH) was also compared. The results of cell proliferation analysis revealed that human calprotectin initiated growth inhibition of the tumor cells in a dose- dependent manner. The intrinsic fluorescence emission spectra of human calprotectin (50 ktg/ml) in the presence of calcium and zinc ions show a reduction in fluorescence intensity, reflecting a conformational change within the protein with exposure of aromatic residues to the protein surface that is important for the biological function of calprotectin. The far ultraviolet-circular dichroism spectra of human calprotectin in the presence of calcium and zinc ions at physiological concentrations show a decrease in the m-helical content of the protein and an increase in 3- and other structures. Our results also show that increasing the pH level from 7.0 to 8.0 leads to a marked elevation in the thermal stability of human calprotectin, indicating a significant role for pH in the stability of calprotectin in the gut.

关 键 词:钙元素  锌元素  热效应  热稳定性
修稿时间:2007-03-03

Human calprotectin: effect of calcium and zinc on its secondary and tertiary structures, and role of pH in its thermal stability
Yousefi R,Imani M,Ardestani SK,Saboury AA,Gheibi N,Ranjbar B.Human calprotectin: effect of calcium and zinc on its secondary and tertiary structures, and role of pH in its thermal stability[J].Acta Biochimica et Biophysica Sinica,2007,39(10):795-802.
Authors:Yousefi Reza  Imani Mehdi  Ardestani Susan K  Saboury Ali Akbar  Gheibi Nematollah  Ranjbar Bijian
Institution:Institute of Biochemistry and Biophysics, University of Tehran, Tehran PO Box 13145-1365, Iran.
Abstract:Calprotectin, a heterodimeric complex belonging to the S100 protein family, has been found predominantly in the cytosolic fraction of neutrophils. In the present study, human calprotectin was purified from neutrophils using two-step ion exchange chromatography. The purified protein was used for circular dichroism study and fluorescence analysis in the presence of calcium and zinc at physiological concentrations, as well as for assessment of its inhibitory activity on the K562 leukemia cell line. The thermal stability of the protein at pH 7.0 (physiological pH) and 8.0 (similar to intestinal pH) was also compared. The results of cell proliferation analysis revealed that human calprotectin initiated growth inhibition of the tumor cells in a dose-dependent manner. The intrinsic fluorescence emission spectra of human calprotectin (50 microg/ml) in the presence of calcium and zinc ions show a reduction in fluorescence intensity, reflecting a conformational change within the protein with exposure of aromatic residues to the protein surface that is important for the biological function of calprotectin. The far ultraviolet-circular dichroism spectra of human calprotectin in the presence of calcium and zinc ions at physiological concentrations show a decrease in the alpha-helical content of the protein and an increase in beta- and other structures. Our results also show that increasing the pH level from 7.0 to 8.0 leads to a marked elevation in the thermal stability of human calprotectin, indicating a significant role for pH in the stability of calprotectin in the gut.
Keywords:calprotectin  calcium  zinc  circular dichroism  thermal stability
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