Sangiorgi F, Woods C M, Lazarides E
Division of Biology, California Institute of Technology, Pasadena 91125.
Development. 1990 Sep;110(1):85-96. doi: 10.1242/dev.110.1.85.
In mammalian erythropoiesis, the mature cells of the primitive lineage remain nucleated while those of the definitive lineage are anuclear. One of the molecular and structural changes that precedes enucleation in cells of the definitive lineage is the cessation in the expression of the gene for the intermediate filament (IF) protein vimentin and the removal of all vimentin filaments from the cytoplasm. We show here that in immature primitive cells vimentin is synthesized and forms a cytoplasmic network of IFs. As differentiation proceeds in vivo, vimentin gene expression is downregulated in these cells; this is accompanied by the loss of vimentin filaments from the cytoplasm. This loss temporally coincides with the nucleus becoming freely mobile within the cytoplasm, suggesting that, while IF removal is not directly linked to the physical process of enucleation, it may be a prerequisite for the initiation of nuclear mobility in both lineages. These changes are also observed in early primitive cells cultured in vitro, suggesting that they constitute an intrinsic part of the murine erythroid differentiation program independent of lineage and hematopoietic microenvironment.
在哺乳动物红细胞生成过程中,原始谱系的成熟细胞仍保留细胞核,而定型谱系的成熟细胞则无细胞核。在定型谱系细胞去核之前发生的分子和结构变化之一是,中间丝(IF)蛋白波形蛋白的基因表达停止,并且细胞质中所有波形蛋白丝被清除。我们在此表明,在未成熟的原始细胞中,波形蛋白被合成并形成中间丝的细胞质网络。随着体内分化的进行,这些细胞中波形蛋白基因的表达下调;这伴随着波形蛋白丝从细胞质中丢失。这种丢失在时间上与细胞核在细胞质内开始自由移动相吻合,这表明,虽然中间丝的清除与去核的物理过程没有直接联系,但它可能是两个谱系中细胞核移动开始的先决条件。在体外培养的早期原始细胞中也观察到了这些变化,这表明它们构成了小鼠红细胞分化程序的一个内在部分,与谱系和造血微环境无关。