首页> 外文会议>Sodium-Calcium Exchange and the Plasma Membrane Ca~(2+)- ATPase in Cell Function; Annals of the New York Academy of Sciences; vol.1099 >ncx1, ncx2, and ncx3 Gene Product Expression and Function in Neuronal Anoxia and Brain Ischemia
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ncx1, ncx2, and ncx3 Gene Product Expression and Function in Neuronal Anoxia and Brain Ischemia

机译:ncx1,ncx2和ncx3基因产物在神经元性缺氧和脑缺血中的表达和功能

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Over the last few years, although extensive studies have focused on the relevant function played by the sodium-calcium exchanger (NCX) during focal ischemia, a thorough understanding of its role still remains a controversial issue. We explored the consequences of the pharmacological inhibition of this antiporter with conventional pharmacological approach, with the synthetic inhibitory peptide, XIP, or with an antisense strategy on the extent of brain damage induced by the permanent occlusion of middle cerebral artery (pMCAO) in rats. Collectively, the results of these studies suggest that ncxl and ncx3 genes could be play a major role to limit the severity of ischemic damage probably as they act to dampen [Na~+]_i and [Ca~(2+)]_i overload. This mechanism seems to be normally activated in the ischemic brain as we found a selective upregulation of NCX1 and NCX3 mRNA levels in regions of the brain surviving to an ischemic insult. Despite this transcript increase, NCX1, NCX2, and NCX3 proteins undergo an extensive proteolytic degradation in the ipsilateral cerebral hemisphere. All together these results suggest that a rescue program centered on an increase NCX function and expression could halt the progression of the ischemic damage. On the basis of this evidence we directed our attention to the understanding of the transductional and transcriptional pathways responsible for NCX upregulation. To this aim, we are studying whether the brain isoform of Akt, Akt1, which is a downstream effector of neurotrophic factors, such as NGF can, in addition to affecting the other prosurvival cascades, also exert its neuroprotective effect by modulating the expression and activity of ncx1, ncx2, and ncx3 gene products.
机译:在过去的几年中,尽管广泛的研究集中于钠钙交换剂(NCX)在局灶性局部缺血期间发挥的相关功能,但对其作用的透彻了解仍是一个有争议的问题。我们探讨了用常规药理学方法,合成抑制肽XIP或反义策略对这种逆向转运蛋白的药理抑制作用对大鼠中脑永久性动脉闭塞(pMCAO)引起的脑损伤程度的后果。总体而言,这些研究的结果表明,ncx1和ncx3基因可能在限制缺血性损害的严重性方面起主要作用,可能是因为它们起到抑制[Na〜+] _ i和[Ca〜(2 +)] _ i超负荷的作用。这种机制似乎在缺血性脑中正常激活,因为我们发现在幸存于缺血性损伤的脑区域中,NCX1和NCX3 mRNA水平选择性上调。尽管该转录本增加,NCX1,NCX2和NCX3蛋白在同侧大脑半球中仍发生广泛的蛋白水解降解。所有这些结果共同表明,以增强NCX功能和表达为中心的抢救计划可能会阻止缺血性损伤的进展。基于这些证据,我们将注意力集中在对负责NCX上调的转导和转录途径的理解上。为此,我们正在研究Akt的脑亚型Akt1是否是神经营养因子(如NGF)的下游效应子,除了可以影响其他生存级联反应外,还可以通过调节其表达和活性来发挥其神经保护作用。 ncx1,ncx2和ncx3基因产物的序列。

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