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Our long-term objective is to contribute to the understanding of the regulation of hemoglobin synthesis and erythroid differentiation in normal and abnormal hematological conditions, with particular emphasis on the roles of heme and protein synthesis in these processes. Protein synthesis in intact reticulocytes and their lysates is dependent on the availability of heme. Heme serves as the prosthetic group of the hemoglobin, the predominant protein in red blood cell (RBC) and its late precursor cells. Biochemical studies have shown that, under conditions of heine-deficiency or iron-deficiency, protein synthesis is inhibited at the level of initiation due to the activation of the heme-regulated translational inhibitor (HRI). HRI is a heme-regulated protein kinasc that phosphorylates the ct-subunit of eukaryotic initiation factor 2 (eIF2a). Phosphorylation of the ct-subunit of eIF2 impairs its recycling in translational initiation and results in the cessation of protein synthesis. The research designs are (1) To Elucidate the Molecular Mechanism by which HRI Regulates Red Blood Cell Production, (2) To Assess the Protective Role of HRI in Red Blood Cell Disorders, and (3) To Delineate the Molecular Mechanism of Stress-Activation of HRI. The methods to be employed are the generation of genetically modified mice, hematological analysis, histological and electron microscopic examinations, colony culture assays for erythroid progenitors, Western-blot analysis and protein kinase assays, cell culture, phenotypic examination of mouse embryos, recombinant DNA techniques. Our recent study indicate that HRI is not only necessary for globin synthesis, but also for heine biosynthesis. HRI is also important for the survival of mice with thalassemia and erythropoietic protoporphria. Our proposed study may lead to potential application of HRI in treating human patients with red cell diseases.
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DOI: 10.1016/j.humpath.2007.10.021
发表时间: 2008-06
期刊: Human pathology
影响因子: 3.3
作者: [I. Rosenwald;L. Koifman;L. Savas;Jane-Jane Chen-Jane;B. Woda;M. Kadin]
通讯作者: I. Rosenwald;L. Koifman;L. Savas;Jane-Jane Chen-Jane;B. Woda;M. Kadin
Regulation of hemoglobin synthesis and proliferation of differentiating erythroid cells by heme-regulated eIF-2alpha kinase.
通过血红素调节的 eIF-2α 激酶调节血红蛋白合成和分化红细胞增殖。
DOI: --
发表时间: 2000
期刊: Blood
影响因子: 20.3
作者: [Crosby,JS, Chefalo,PJ, Yeh,I, Ying,S, London,IM, Leboulch,P, Chen,JJ]
通讯作者: Chen,JJ
Molecular cloning and characterization of the promoter of mouse heme-regulated eIF2alpha kinase.
小鼠血红素调节的 eIF2α 激酶启动子的分子克隆和表征。
DOI: 10.1016/s0167-4781(01)00281-0
发表时间: 2002
期刊: Biochimica et biophysica acta
影响因子: --
作者: [Lu,Linrong, Chen,JaneJane]
通讯作者: Chen,JaneJane
DOI: 10.1111/j.1365-2141.2008.07293.x
发表时间: 2008-10
期刊: British journal of haematology
影响因子: 6.5
作者: [Liu S, Bhattacharya S, Han A, Suragani RN, Zhao W, Fry RC, Chen JJ]
通讯作者: Chen JJ
15
    HRI-eIF2a Phosphorylation Signaling in Oxidative Stress and Erythropoiesis
    HRI-eIF2a Phosphorylation signaling in oxidative stress and erythropoiesis
    HRI-eIF2a Phosphorylation Signaling in Oxidative Stress and Erythropoiesis
    HRI-eIF2a Phosphorylation signaling in oxidative stress and erythropoiesis
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