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“分化增强因子”(一种HMG1蛋白类型)的细胞外释放是小鼠红白血病细胞分化的早期步骤。

Extracellular release of the 'differentiation enhancing factor', a HMG1 protein type, is an early step in murine erythroleukemia cell differentiation.

作者信息

Melloni E, Sparatore B, Patrone M, Pessino A, Passalacqua M, Pontremoli S

机构信息

Institute of Biochemistry, Genova, Italy.

出版信息

FEBS Lett. 1995 Jul 24;368(3):466-70. doi: 10.1016/0014-5793(95)00716-m.

Abstract

Differentiation enhancing factor (DEF) is a 29 kDa protein expressed in murine erythroleukemia (MEL) cells and active in promoting a significant increase in the rate of hexamethylenebisacetamide induced differentiation of these cells. The factor was recently shown to possess an amino acid sequence identical to that reported for one of the HMG1 proteins, designated as 'amphoterin' on the basis of its highly dipolar sequence. In the present study, we have expressed DEF cDNA in an E. coli strain and found that the recombinant protein has functional properties identical to those observed with native DEF. Furthermore, we demonstrate that, following MEL cell stimulation with the chemical inducer, DEF is secreted in large amounts in the extracellular medium. In fact, the N-terminal sequence and the partial amino acid sequence of tryptic peptides from the secreted protein correspond to those of DEF isolated from the soluble fraction of resting MEL cells. These results are indicative for an extracellular localization as the site of action of DEF and suggest a novel function for proteins belonging to the HMG1 family. Finally, the early decay of DEF mRNA, in chemical induced MEL cells, support the hypothesis that the involvement of the enhancing factor occurs and is completed in the early phases of cell differentiation.

摘要

分化增强因子(DEF)是一种29 kDa的蛋白质,在小鼠红白血病(MEL)细胞中表达,能显著促进六亚甲基双乙酰胺诱导的这些细胞分化速率的增加。最近发现该因子的氨基酸序列与报道的一种HMG1蛋白相同,基于其高度偶极序列被命名为“两性蛋白”。在本研究中,我们在大肠杆菌菌株中表达了DEF cDNA,发现重组蛋白具有与天然DEF相同的功能特性。此外,我们证明,在用化学诱导剂刺激MEL细胞后,DEF大量分泌到细胞外培养基中。事实上,分泌蛋白的N端序列和胰蛋白酶肽段的部分氨基酸序列与从静止MEL细胞可溶性部分分离的DEF的序列一致。这些结果表明DEF的作用位点在细胞外,并提示了HMG1家族蛋白的一种新功能。最后,在化学诱导的MEL细胞中DEF mRNA的早期衰减支持了增强因子在细胞分化早期起作用并完成作用的假说。

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