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缺乏证据表明早老素是内质网 Ca2+泄漏通道。

Lack of evidence for presenilins as endoplasmic reticulum Ca2+ leak channels.

机构信息

Department of Physiology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Biol Chem. 2012 Mar 30;287(14):10933-44. doi: 10.1074/jbc.M111.300491. Epub 2012 Feb 6.

Abstract

Familial Alzheimer disease (FAD) is linked to mutations in the presenilin (PS) homologs. FAD mutant PS expression has several cellular consequences, including exaggerated intracellular Ca(2+) (Ca(2+)) signaling due to enhanced agonist sensitivity and increased magnitude of Ca(2+) signals. The mechanisms underlying these phenomena remain controversial. It has been proposed that PSs are constitutively active, passive endoplasmic reticulum (ER) Ca(2+) leak channels and that FAD PS mutations disrupt this function resulting in ER store overfilling that increases the driving force for release upon ER Ca(2+) release channel opening. To investigate this hypothesis, we employed multiple Ca(2+) imaging protocols and indicators to directly measure ER Ca(2+) dynamics in several cell systems. However, we did not observe consistent evidence that PSs act as ER Ca(2+) leak channels. Nevertheless, we confirmed observations made using indirect measurements employed in previous reports that proposed this hypothesis. Specifically, cells lacking PS or expressing a FAD-linked PS mutation displayed increased area under the ionomycin-induced Ca(2+) versus time curve (AI) compared with cells expressing WT PS. However, an ER-targeted Ca(2+) indicator revealed that this did not reflect overloaded ER stores. Monensin pretreatment selectively attenuated the AI in cells lacking PS or expressing a FAD PS allele. These findings contradict the hypothesis that PSs form ER Ca(2+) leak channels and highlight the need to use ER-targeted Ca(2+) indicators when studying ER Ca(2+) dynamics.

摘要

家族性阿尔茨海默病(FAD)与早老素(PS)同源物的突变有关。FAD 突变 PS 的表达有几种细胞后果,包括由于激动剂敏感性增强和[Ca 2+](i)信号幅度增加而导致细胞内 Ca 2+([Ca 2+])信号过度放大。这些现象的机制仍存在争议。有人提出 PS 是组成型活性的、被动的内质网(ER)Ca 2+泄漏通道,而 FAD PS 突变破坏了这种功能,导致 ER 储存过度填充,从而增加了 ER Ca 2+释放通道打开时释放的驱动力。为了研究这个假设,我们采用了多种 Ca 2+成像方案和指示剂,直接测量了几个细胞系统中的 ER Ca 2+动力学。然而,我们没有观察到一致的证据表明 PS 作为 ER Ca 2+泄漏通道发挥作用。尽管如此,我们还是证实了以前的研究报告中使用间接测量方法提出的假设。具体来说,缺乏 PS 的细胞或表达 FAD 相关 PS 突变的细胞与表达 WT PS 的细胞相比,细胞内钙诱导[Ca 2+](i)时间曲线下面积(AI)增加。然而,靶向 ER 的 Ca 2+指示剂显示,这并不反映过载的 ER 储存。预先用莫能菌素处理选择性地减弱了缺乏 PS 或表达 FAD PS 等位基因的细胞中的 AI。这些发现与 PS 形成 ER Ca 2+泄漏通道的假设相矛盾,并强调在研究 ER Ca 2+动力学时需要使用靶向 ER 的 Ca 2+指示剂。

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