首页> 外文期刊>Journal of Neuroscience Research >Restriction of microM-calcium-requiring calpain activation to the plasma membrane in human neuroblastoma cells: evidence for regionalized influence of a calpain activator protein.
【24h】

Restriction of microM-calcium-requiring calpain activation to the plasma membrane in human neuroblastoma cells: evidence for regionalized influence of a calpain activator protein.

机译:在人成神经细胞瘤细胞中需要microM-钙的钙蛋白酶激活对质膜的限制:钙蛋白酶激活蛋白的区域性影响的证据。

获取原文
获取原文并翻译 | 示例
           

摘要

Regulation of the microM-calcium-requiring form of calpain (mu calpain) was studied in SH-SY-5Y human neuroblastoma cells. Immunoblot analysis demonstrated that the vast majority of mu calpain is localized within cytosolic pools. Calpain activation was monitored as a function of autolysis within intact cells following calcium influx from the culture medium by calcium ionophores A23187 or ionomycin, or following release of calcium from intracellular stores by thapsigargin. Within intact neuronal cells, following an influx of calcium into the cytosolic from either extracellular or intracellular sources, mu calpain is preferentially activated at the plasma membrane as evidenced by autolytic generation of faster-migrating isoforms. By contrast, similar autolytic profiles for mu calpain in membrane or cytosolic fractions following addition of calcium were observed under cell-free conditions and within cells following death due to extended ionophore-mediated calcium influx. These differential activation profiles for cytosolic mu calpain within living cells and following cellular fractionation/cell death indicate the presence of a regulatory system within neuronal cells. As in previous studies in other systems, we demonstrate the presence of a calpain activator protein. Cycloheximide treatment depleted the autolytic capacity of membrane-associated mu calpain within 4-6 hr without a corresponding decline in total mu calpain protein levels, indicating that the activator protein undergoes rapid turnover in comparison to calpain; pulse-chase radiolabeling confirmed the half-life of mu calpain to exceed 24 hr. Our data suggest that this labile protein represents a major rate-limiting step for in situ calpain activation within neuronal cells, and that, given the tremendous latent mu calpain activity within the cytosol, the interplay of the activator protein and the endogenous inhibitor calpastatin are crucial for maintaining neuronal homeostasis.
机译:在SH-SY-5Y人成神经细胞瘤细胞中研究了钙蛋白酶(mu calpain)的microM-钙需要形式的调控。免疫印迹分析表明,绝大多数的mu calpain位于胞质池中。在钙离子载体A23187或离子霉素从培养基中渗入钙后,或毒胡萝卜素从细胞内储库释放钙后,钙蛋白酶激活是完整细胞内自溶作用的监测函数。在完整的神经元细胞内,钙从细胞外或细胞内源流入胞质后,mu calpain优先在质膜上被激活,这可以通过自动生成更快迁移的同工型来证明。相比之下,在无细胞条件下以及由于离子载体介导的钙内流延长而导致死亡后的细胞内,在膜或胞质组分中的钙蛋白酶在膜或胞质级分中具有相似的自溶特征。这些活细胞内胞质黏钙蛋白酶以及细胞分级分离/细胞死亡后的差异激活谱表明神经元细胞内存在调节系统。像以前在其他系统中的研究一样,我们证明了钙蛋白酶激活蛋白的存在。 Cycloheximide处理在4-6小时内消耗了与膜相关的mu calpain的自溶能力,而总mu calpain蛋白水平却没有相应下降,这表明与calpain相比,激活蛋白发生了快速周转。脉冲追踪放射性标记证实了钙蛋白酶的半衰期超过24小时。我们的数据表明,这种不稳定的蛋白代表了神经元细胞中原钙蛋白酶激活的主要限速步骤,并且鉴于胞浆中巨大的潜在钙蛋白酶活性,激活蛋白与内源性抑制剂钙蛋白酶的相互作用至关重要。用于维持神经元稳态。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号