Electrophoretic pattern of NADPH-dependent oxidoreductive activities in K 562 and HL 60 leukemic cell lines

Roberto Ravazzolo, Renata Barresi, Cecilia Garré, Giovanna Bianchi-Scarrá, Franco Ajmar
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引用次数: 1

Abstract

Morphological and functional differentiation of hemopoietic cells is accompanied by the expression of lineage-specific protein markers. NADPH-oxidoreductive enzymatic activities in HL 60 and K 562 leukemic cell lines, compared with granulocytes and erythrocytes, show a NADPH-oxidizing and a NADPH-diaphorase activity. The oxidizing activity, absent in erythrocytes, has the same electrophoretic migration in HL 60 cells and granulocytes while it is different in K 562 cells. The diaphorase, absent in HL 60 cells and granulocytes, has the same migration in erythrocytes and K 562 cells, although with a slightly different quantitative expression. K 562 cells induced to differentiation with arabinofuranosylcytosine show the appearance of a band of NADPH-oxidizing activity of granulocytic type, together with the major band found in these cells.

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k562和hl60白血病细胞系nadph依赖性氧化还原活性的电泳图谱
造血细胞的形态和功能分化伴随着谱系特异性蛋白标记物的表达。与粒细胞和红细胞相比,hl60和k562白血病细胞系的nadph氧化还原酶活性显示出nadph氧化和nadph降酶活性。氧化活性在红细胞中不存在,但在HL 60细胞和粒细胞中具有相同的电泳迁移,而在k562细胞中则不同。在HL - 60细胞和粒细胞中不存在diaphorase,但在红细胞和k562细胞中具有相同的迁移,尽管数量表达略有不同。阿拉伯糖铀苷胞嘧啶诱导分化的k562细胞显示出粒细胞型nadph氧化活性条带,以及在这些细胞中发现的主要条带。
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