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Gadd45蛋白可诱导暴露于高渗应激的肾细胞发生G2/M期阻滞并调节细胞凋亡。

Gadd45 proteins induce G2/M arrest and modulate apoptosis in kidney cells exposed to hyperosmotic stress.

作者信息

Mak Sally K, Kültz Dietmar

机构信息

Physiological Genomics Group, Department of Animal Sciences, University of California, Davis, California 95616, USA.

出版信息

J Biol Chem. 2004 Sep 10;279(37):39075-84. doi: 10.1074/jbc.M406643200. Epub 2004 Jul 15.

Abstract

Gadd45 proteins are induced by hyperosmolality in renal inner medullary (IM) cells, but their role for cell adaptation to osmotic stress is not known. We show that a cell line derived from murine renal IM cells responds to moderate hyperosmotic stress (540 mosmol/kg) by activation of G(2)/M arrest without significant apoptosis. If the severity of hyperosmotic stress exceeds the tolerance limit of this cell line (620 mosmol/kg) apoptosis is strongly induced. Using transient overexpression of ectopic Gadd45 proteins and simultaneous analysis of transfected versus non-transfected cells by laser-scanning cytometry, we were able to measure the effects of Gadd45 super-induction during hyperosmolality on G(2)/M arrest and apoptosis. Our results demonstrate that induction of all three Gadd45 isoforms inhibits mitosis and promotes G(2)/M arrest during moderate hyperosmotic stress but not in isosmotic controls. Furthermore, all three Gadd45 proteins are also involved in control of apoptosis during severe hyperosmotic stress. Under these conditions Gadd45gamma induction strongly potentiates apoptosis. In contrast, Gadd45alpha/beta induction transiently increases caspase 3/7 and annexin V binding before 12 h but inhibits later stages of apoptosis during severe hyperosmolality. These results show that Gadd45 isoforms function in common but also in distinct pathways during hyperosmolality and that their increased abundance contributes to the low mitotic index and protection of genomic integrity in cells of the mammalian renal inner medulla.

摘要

Gadd45蛋白由肾髓质内层(IM)细胞中的高渗状态诱导产生,但其在细胞适应渗透压应激中的作用尚不清楚。我们发现,源自小鼠肾IM细胞的细胞系在受到中度高渗应激(540毫渗摩尔/千克)时,通过激活G2/M期阻滞做出反应,且无明显凋亡现象。如果高渗应激的严重程度超过该细胞系的耐受极限(620毫渗摩尔/千克),则会强烈诱导凋亡。通过异位Gadd45蛋白的瞬时过表达,并利用激光扫描细胞术同时分析转染细胞与未转染细胞,我们得以测定高渗状态下Gadd45超诱导对G2/M期阻滞和凋亡的影响。我们的结果表明,在中度高渗应激期间,所有三种Gadd45亚型的诱导均会抑制有丝分裂并促进G2/M期阻滞,但在等渗对照中则不会。此外,在严重高渗应激期间,所有三种Gadd45蛋白也参与凋亡的调控。在这些条件下,Gadd45γ的诱导会强烈增强凋亡。相比之下,Gadd45α/β的诱导在12小时前会短暂增加半胱天冬酶3/7的活性和膜联蛋白V的结合,但在严重高渗状态下会抑制凋亡的后期阶段。这些结果表明,Gadd45亚型在高渗状态下以共同但又不同的途径发挥作用,且其丰度的增加有助于哺乳动物肾髓质内层细胞中低有丝分裂指数的维持和基因组完整性的保护。

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