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Orai(CRACM)1 和 Orai(CRACM)2 通道在人肺肥大细胞中钙库操纵性钙内流和介质释放中的作用。

The contribution of Orai(CRACM)1 and Orai(CRACM)2 channels in store-operated Ca2+ entry and mediator release in human lung mast cells.

机构信息

Department of Infection, Immunity and Inflammation, Institute for Lung Health, University of Leicester, Glenfield Hospital, Leicester, Leicestershire, United Kingdom.

出版信息

PLoS One. 2013 Sep 10;8(9):e74895. doi: 10.1371/journal.pone.0074895. eCollection 2013.

Abstract

BACKGROUND

The influx of extracellular Ca(2+) into mast cells is critical for the FcεR1-dependent release of preformed granule-derived mediators and newly synthesised autacoids and cytokines. The Orai(CRACM) ion channel family provide the major pathway through which this Ca(2+) influx occurs. However the individual role of each of the three members of the Orai channel family in Ca(2+) influx and mediator release has not been defined in human mast cells.

OBJECTIVE

To assess whether there might be value in targeting individual Orai family members for the inhibition of FcεRI-dependent human lung mast cells (HLMC) mediator release.

METHODS

We used an adenoviral delivery system to transduce HLMCs with shRNAs targeted against Orai1 and Orai2 or with cDNAs directing the expression of dominant-negative mutations of the three known Orai channels.

RESULTS

shRNA-mediated knockdown of Orai1 resulted in a significant reduction of approximately 50% in Ca(2+) influx and in the release of β-hexosaminidase (a marker of degranulation) and newly synthesized LTC4 in activated HLMCs. In contrast shRNA knockdown of Orai2 resulted in only marginal reductions of Ca(2+) influx, degranulation and LTC4 release. Transduced dominant-negative mutants of Orai1, -2 and -3 markedly reduced Orai currents and completely inhibited HLMC degranulation suggesting that Orai channels form heteromultimers in HLMCs, and that Orai channels comprise the dominant Ca(2+) influx pathway following FceRI-dependent HLMC activation. Inhibition of Orai currents did not alter HLMC survival. In addition we observed a significant down-regulation of the level of CRACM3 mRNA transcripts together with a small increase in the level of CRACM1 and CRACM2 transcripts following a period of sustained HLMC activation.

CONCLUSION AND CLINICAL RELEVANCE

Orai1 plays an important role in Ca(2+) influx and mediator release from HLMCs. Strategies which target Orai1 will effectively inhibit FcεRI-dependent HLMC activation, but spare off-target inhibition of Orai2 in other cells and body systems.

摘要

背景

细胞外钙离子流入肥大细胞对于 FcεR1 依赖性预先形成的颗粒衍生介质和新合成的自分泌和细胞因子的释放至关重要。Orai(CRACM)离子通道家族提供了这种钙离子内流发生的主要途径。然而,Orai 通道家族的三个成员在钙离子内流和介质释放中的个体作用尚未在人肥大细胞中确定。

目的

评估针对单个 Orai 家族成员抑制 FcεRI 依赖性人肺肥大细胞 (HLMC) 介质释放是否有价值。

方法

我们使用腺病毒传递系统将靶向 Orai1 和 Orai2 的 shRNA 或指导三种已知 Orai 通道的显性负突变表达的 cDNA 转导到 HLMC 中。

结果

shRNA 介导的 Orai1 敲低导致 Ca2+内流减少约 50%,并导致活化的 HLMC 中β-己糖胺酶(脱颗粒的标志物)和新合成的 LTC4 的释放减少。相比之下,Orai2 的 shRNA 敲低仅导致 Ca2+内流、脱颗粒和 LTC4 释放的轻微减少。转导的 Orai1、-2 和 -3 显性负突变体显着降低了 Orai 电流并完全抑制了 HLMC 脱颗粒,表明 Orai 通道在 HLMC 中形成异源多聚体,并且 Orai 通道构成 FceRI 依赖性 HLMC 激活后的主要 Ca2+内流途径。Orai 电流的抑制不改变 HLMC 的存活。此外,我们观察到在 HLMC 持续激活一段时间后,CRACM3 mRNA 转录物的水平显着下调,同时 CRACM1 和 CRACM2 转录物的水平略有增加。

结论和临床相关性

Orai1 在 HLMC 的 Ca2+内流和介质释放中起重要作用。靶向 Orai1 的策略将有效地抑制 FcεRI 依赖性 HLMC 激活,但不会在其他细胞和身体系统中产生针对 Orai2 的脱靶抑制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2b8/3769304/9edac4520132/pone.0074895.g001.jpg

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