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首页> 外文期刊>Journal of cellular biochemistry. >Protein kinase Calpha is differentially activated during neonatal and adult erythropoiesis and favors expression of a reporter gene under the control of the (A)gamma globin-promoter in cellular models of hemoglobin switching.
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Protein kinase Calpha is differentially activated during neonatal and adult erythropoiesis and favors expression of a reporter gene under the control of the (A)gamma globin-promoter in cellular models of hemoglobin switching.

机译:蛋白激酶Calpha在新生儿和成人红细胞生成过程中被差异激活,并在血红蛋白转换的细胞模型中,在(A)γ球蛋白启动子的控制下有利于报告基因的表达。

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摘要

PKCalpha was found to be expressed (mRNA and protein) throughout the in vitro maturation of primary human erythroblasts but its activity (phosphorylation levels and nuclear localization) was consistently higher in cells derived from human neonatal rather than adult blood. Since the gamma/gamma + beta globin expression ratio represented the major difference between neonatal and adult erythroblasts (58 +/- 12 vs. 7 +/- 3, respectively), we tested the hypothesis that PKCalpha might affect gamma-globin expression by measuring the levels of (A)gamma- or beta-promoter-driven reporter activity in erythroid cells stably (GM979) or transiently (K562, primary adult and neonatal erythroblasts) transfected with a dual microLCRbetaprRluc(A)gammaprFluc reporter in the presence of transient expression of either the constitutively active (sPKCalpha) or catalytically inactive (iPKCalpha) PKCalpha. As further control, GM979 cells were incubated with the PKC inhibitor rottlerin (30 microM). In all the cells analyzed, sPKCalpha significantly increased (by two- to sixfold) the levels of luciferase activity driven by the (A)gamma-promoter and the (A)gamma-F/((A)gamma-F + 2beta-R) expression ratio. In GM979 cells, rottlerin inhibited (by 50%) the (A)gamma-driven luciferase activity and the (A)gamma-F/((A)gamma-F + 2beta-R) expression ratio. These results suggest that different PKC isoforms may exert ontogenetic-specific functions in erythropoiesis and that modulation of PKCalpha might affect the activity of (A)gamma-promoter-driven reporters.
机译:发现PKCalpha在人类原代成血红细胞的整个体外成熟过程中均表达(mRNA和蛋白质),但其活性(磷酸化水平和核定位)在源自人类新生儿而非成年血液的细胞中始终较高。由于γ/γ+β球蛋白的表达比例代表了新生和成年成红细胞之间的主要差异(分别为58 +/- 12与7 +/- 3),因此我们通过测量PKCalpha可能影响γ珠蛋白表达的假设进行了检验瞬时表达的情况下,用双重microLCRbetaprRluc(A)gammaprFluc报告基因转染的红细胞稳定(GM979)或瞬时(K562,成年成年和新生儿成红细胞)稳定表达(A)γ-或β-启动子驱动的报告基因活性的水平组成性活性的(sPKCalpha)或催化活性的(iPKCalpha)PKCalpha。作为进一步的对照,GM979细胞与PKC抑制剂rottlerin(30 microM)孵育。在所有分析的细胞中,sPKCalpha显着增加(两倍至六倍)由(A)γ-启动子和(A)γ-F/((A)γ-F+ 2beta-R驱动的萤光素酶活性水平)的表达比例。在GM979细胞中,鲁特林抑制(50%)(A)γ驱动的荧光素酶活性和(A)γF /((A)γF + 2beta-R)表达比率。这些结果表明,不同的PKC亚型可能在促红细胞生成中发挥特定的遗传功能,而PKCalpha的调节可能会影响(A)γ启动子驱动的报告基因的活性。

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