首页> 外文期刊>Journal of General Physiology >Age Decline in the Activity of the Ca~(2+)-sensitive K~+ Channel of Human Red Blood Cells
【24h】

Age Decline in the Activity of the Ca~(2+)-sensitive K~+ Channel of Human Red Blood Cells

机译:人类红细胞对Ca〜(2+)敏感的K〜+通道活性的年龄下降

获取原文
获取原文并翻译 | 示例
       

摘要

The Ca~(2+)-sensitive K~+ channel of human red blood cells (RBCs) (Gardos channel, hIK1, hSK4) was implicated in the progressive densification of RBCs during normal senescence and in the mechanism of sickle cell dehydration. Saturating RBC Ca~(2+) loads were shown before to induce rapid and homogeneous dehydration, suggesting that Gardos channel capacity was uniform among the RBCs, regardless of age. Using glycated hemoglobin as a reliable RBC age marker, we investigated the age-activity relation of Gardos channels by measuring the mean age of RBC subpopulations exceeding a set high density boundary during dehydration. When K~+ permeabilization was induced with valinomycin, the oldest and densest cells, which started nearest to the set density boundary, crossed it first, reflecting conservation of the normal age-density distribution pattern during dehydration. However, when Ca~(2+) loads were used to induce maximal K~+ fluxes via Gardos channels in all RBCs (F_(max)), the youngest RBCs passed the boundary first, ahead of the older RBCs, indicating that Gardos channel F_(nax) was highest in those young RBCs, and that the previously observed appearance of uniform dehydration concealed a substantial degree of age scrambling during the dehydration process. Further analysis of the Gardos channel age-activity relation revealed a monotonic decline in F_(max) with cell age, with a broad quasi-Gaussian F_(max) distribution among the RBCs.
机译:人类红细胞(RBCs)的Ca〜(2+)敏感K〜+通道(Gardos通道,hIK1,hSK4)与正常衰老过程中RBC的进行性致密化以及镰状细胞脱水的机制有关。之前已经显示了饱和的RBC Ca〜(2+)负载会导致快速均匀的脱水,这表明无论年龄大小,Rardo之间的Gardos通道容量都是均匀的。使用糖化血红蛋白作为可靠的RBC年龄标记,我们通过测量脱水过程中超过设定的高密度边界的RBC亚群的平均年龄,研究了Gardos通道的年龄-活动关系。当缬氨霉素诱导K〜+透化时,最老,最密集的细胞开始越过设定的密度边界,首先越过它,这反映了脱水过程中正常的年龄密度分布模式的保守性。但是,当使用Ca〜(2+)载荷通过所有RBC中的Gardos通道诱导最大K〜+通量时(F_(max)),最年轻的RBC首先通过边界,而之前是较旧的RBC,这表明Gardos通道F_(nax)在那些年轻的RBC中最高,并且先前观察到的均匀脱水现象掩盖了脱水过程中相当程度的年龄争夺。对Gardos通道年龄-活动关系的进一步分析显示,随着细胞年龄的增长,F_(max)呈单调下降,并且在RBC之间具有宽的准高斯F_(max)分布。

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