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Interactions between the nuclear matrix proteins and the 5'-flanking cis-acting elements of the human ε-globin gene

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摘要 An erythroid-specific nuclear matrix protein (termed ε-NMP_k) in K562 cells, which can specifically bind to the positive stage-specific regulatory element (ε-PRE Ⅱ, -446—-419 bp) upstream of the human ε-globin gene, has been identified by using gel mobility shift assay.Meanwhile, Southwestern blotting assay showed that the nuclear matrix protein ε-NMP_k in K562,cells may be composed of two polypeptides ( ~ 40 ku). In addition, it is observed in the gel mobility shift assay that the nuclear matrix proteins from K562, HEL and Raji cells can bind to the silencer DNA ( - 392— -177 bp) in the 5’-flanking sequence of human ε-globin gene respectively. However, the shift band K detected in K562 cells is different from shift band H/R in HEL and Raji cells, suggesting that a common nuclear matrix protein may exist in HEL and Raji cells. Results show that the nuclear matrix protein may play an important role in the regulation of the human ε-globin gene expression. An erythroid-specific nuclear matrix protein (termed ε-NMPk) in K562 cells, which can specifically bind to the positive stage-specific regulatory element (ε-PRE Ⅱ , - 446- - 419 bp) upstream of the human ε-globin gene, has been identified by using gel mobility shift assay. Meanwhile, Southwestern blotting assay showed that the nuclear matrix protein ε-NMPk in K562, cells may be composed of two polypeptides ( ~ 40 ku). In addition, it is observed in the gel mobility shift assay that the nuclear matrix proteins from K562, HEL and Raji cells can bind to the silencer DNA ( - 392- - 177 bp) in the 5'-flanking sequence of human ε-globin gene respectively. However, the shift band K detected in K562 cells is different from shift band H/R in HEL and Raji cells, suggesting that a common nuclear matrix protein may exist in HEL and Raji cells. Results show that the nuclear matrix protein may play an important role in the regulation of the human ε-globin gene expression.
出处 《Chinese Science Bulletin》 SCIE CAS 1999年第9期808-811,共4页
基金 supported by the National Natural Science Foundation of China(Grant No.39893320) the Foundation of the Chinese Academy of Sciences(Grant No.kJ982-J1-618)
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