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Novel functions of ribosomal protein S6 in growth and differentiation of Dictyostelium cells

机译:核糖体蛋白S6在双歧杆菌细胞生长和分化中的新功能

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We have previously shown that in Dictyostelium cells a 32 kDa protein is rapidly and completely dephosphorylated in response to starvation that is essential for the initiation of differentiation ( Akiyama & Maeda 1992 ). In the present work, this phosphoprotein was identified as a homologue (Dd-RPS6) of ribosomal protein S6 (RPS6) that is an essential member for protein synthesis. As expected, Dd-RPS6 seems to be absolutely required for cell survival, because we failed to obtain antisense-RNA mediated cells as well as Dd-rps6-null cells by homologous recombination in spite of many trials. In many kinds of cell lines, RPS6 is known to be located in the nucleus and cytosol, but Dd-RPS6 is predominantly located in the cell cortex with cytoskeletons, and in the contractile ring of just-dividing cells. In this connection, the overexpression of Dd-RPS6 greatly impairs cytokinesis during axenic shake-cultures in growth medium, resulting in the formation of multinucleate cells. Much severe impairment of cytokinesis was observed when Dd-RPS6-overexpressing cells (Dd-RPS6OE cells) were incubated on a living Escherichia coli lawn. The initiation of differentiation triggered by starvation was also delayed in Dd-RPS6OE cells. In addition, Dd-RPS6OE cells exhibit defective differentiation into prespore cells and spores during late development. Thus, it is likely that the proper expression of Dd-RPS6 may be of importance for the normal progression of late differentiation as well as for the initiation of differentiation.
机译:我们先前已经证明,在网柄菌属细胞中,响应于饥饿对于分化的开始是必不可少的,32 kDa蛋白被快速而完全地去磷酸化(Akiyama&Maeda 1992)。在目前的工作中,该磷蛋白被鉴定为核糖体蛋白S6(RPS6)的同系物(Dd-RPS6),而核糖体蛋白S6是蛋白合成的重要成员。如预期的那样,Dd-RPS6似乎绝对是细胞存活所必需的,因为尽管进行了许多试验,我们仍无法通过同源重组获得反义RNA介导的细胞以及Dd-rps6-null细胞。在许多种细胞系中,已知RPS6位于细胞核和胞质溶胶中,但Dd-RPS6主要位于具有细胞骨架的细胞皮质中,以及刚分裂的细胞的收缩环中。在这方面,Dd-RPS6的过表达极大地损害了生长培养基中的轴突摇动培养期间的胞质分裂,从而导致了多核细胞的形成。当过表达Dd-RPS6的细胞(Dd-RPS6OE细胞)在有生命的大肠杆菌草坪上孵育时,观察到许多严重的胞质分裂损害。在Dd-RPS6OE细胞中,饥饿引发的分化开始也被延迟。另外,Dd-RPS6OE细胞在后期发育过程中表现出分化为前孢子细胞和孢子的缺陷。因此,Dd-RPS6的正确表达对于晚期分化的正常进程以及分化的开始可能很重要。

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