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Role of p38MAPK, heat shock proteins, HSP27 and HSP70 in osmotic stress in renal vs. blood cells: A comparative study.

机译:p38MAPK,热休克蛋白,HSP27和HSP70在肾与血细胞渗透压中的作用:一项比较研究。

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摘要

It has been observed that osmotic stress induces various changes in different cell types. Mammalian kidney cells are normally exposed to high osmotic concentrations as a consequence of their participation in the urinary concentration mechanism (Natalia et al., 2005). Cell structure and volume dependent remodeling of cytoskeleton is known to be influenced as an adaptive response to withstand high osmotic stress (Di Ciano et al., 2002). We investigated the role and induction of p38MAPK and Heat Shock Proteins (HSPs) in both human hematopoietic and mouse kidney cells (cortical and medullary) in response to sodium chloride induced hyperosmotic stress. Inhibitors of p38 MAPK and HSPs were used to define their contributions to hyperosmotic stress. Acute stress led to increased p38 MAPK and HSP27 mRNA levels in the human hematopoietic cell line whereas an upregulation of p38MAPK mRNA in the cortical cells of kidney and an increase in HSP70.1 mRNA levels in the medullary cells of kidney was observed. Using RT-PCR and Western immunoblotting both mRNA and protein levels of heat shock proteins, HSP27 and HSP70 were quantified. The p38MAPK inhibitor, SB203580 inhibited the induction of HSP70 in the medullary cells. In addition, HSP inhibitor, KNK-437 also inhibited the p38MAPK levels thereby suggesting that both HSP70 and p38MAPK are required for each other's induction and activation in the hyperosmotically stressed medullary cells of the kidney. Since the p38MAPK levels were inhibited in the cortical cells in presence of KNK-437, it suggests that HSP70 plays a role in induction of p38MAPK in these cells. Studies with mIMCD-3 cells, the inner medullary collecting duct cell line and M-1, the cortical cell line from mouse, indicate that cells from different parts of the kidney respond differently to high osmotic stress.
机译:已经观察到渗透压诱导不同细胞类型的各种变化。哺乳动物的肾细胞由于其参与尿液浓缩机制而通常暴露于高渗透浓度(Natalia等,2005)。已知细胞骨架的细胞结构和体积依赖性重塑作为适应高渗透压的适应性反应而受到影响(Di Ciano et al。,2002)。我们调查了p38MAPK和热休克蛋白(HSPs)在人类造血和小鼠肾细胞(皮质和髓质)中对氯化钠诱导的高渗应激的反应和作用。使用p38 MAPK和HSP抑制剂来定义其对高渗应激的作用。急性应激导致人造血细胞系中p38 MAPK和HSP27 mRNA水平升高,而肾皮质细胞中p38MAPK mRNA表达上调,肾髓质细胞中HSP70.1 mRNA水平升高。使用RT-PCR和Western免疫印迹对热休克蛋白的mRNA和蛋白水平进行定量,对HSP27和HSP70进行定量。 p38MAPK抑制剂SB203580抑制了髓细胞中HSP70的诱导。此外,HSP抑制剂KNK-437也抑制了p38MAPK的水平,从而表明HSP70和p38MAPK都需要在肾脏的高渗应激髓质细胞中相互诱导和激活。由于在存在KNK-437的情况下皮质细胞中p38MAPK的水平受到抑制,因此表明HSP70在这些细胞中诱导p38MAPK方面发挥了作用。对mIMCD-3细胞,内髓收集管细胞系和小鼠皮质细胞系M-1的研究表明,来自肾脏不同部位的细胞对高渗透压的反应不同。

著录项

  • 作者

    Patel, Priyanka L.;

  • 作者单位

    University of the Sciences in Philadelphia.;

  • 授予单位 University of the Sciences in Philadelphia.;
  • 学科 Biology Molecular.;Biology Cell.
  • 学位 M.S.
  • 年度 2009
  • 页码 74 p.
  • 总页数 74
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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