首页> 外文期刊>The Journal of Physiology >Role of Orai1 and store-operated calcium entry in mouse lacrimal gland signalling and function
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Role of Orai1 and store-operated calcium entry in mouse lacrimal gland signalling and function

机译:Orai1和存储操作钙进入在小鼠泪腺信号传导和功能中的作用

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摘要

Lacrimal glands function to produce an aqueous layer, or tear film, that helps to nourish and protect the ocular surface. Lacrimal glands secrete proteins, electrolytes and water, and loss of gland function can result in tear film disorders such as dry eye syndrome, a widely encountered and debilitating disease in ageing populations. To combat these disorders, understanding the underlying molecular signalling processes that control lacrimal gland function will give insight into corrective therapeutic approaches. Previously, in single lacrimal cells isolated from lacrimal glands, we demonstrated that muscarinic receptor activation stimulates a phospholipase C-coupled signalling cascade involving the inositol trisphosphate-dependent mobilization of intracellular calcium and the subsequent activation of store-operated calcium entry (SOCE). Since intracellular calcium stores are finite and readily exhausted, the SOCE pathway is a critical process for sustaining and maintaining receptor-activated signalling. Recent studies have identified the Orai family proteins as critical components of the SOCE channel activity in a wide variety of cell types. In this study we characterize the role of Orai1 in the function of lacrimal glands using a mouse model in which the gene for the calcium entry channel protein, Orai1, has been deleted. Our data demonstrate that lacrimal acinar cells lacking Orai1 do not exhibit SOCE following activation of the muscarinic receptor. In comparison with wild-type and heterozygous littermates, Orai1 knockout mice showed a significant reduction in the stimulated tear production following injection of pilocarpine, a muscarinic receptor agonist. In addition, calcium-dependent, but not calcium-independent exocytotic secretion of peroxidase was eliminated in glands from knockout mice. These studies indicate a critical role for Orai1-mediated SOCE in lacrimal gland signalling and function.
机译:泪腺的功能是产生有助于滋养和保护眼表的水层或泪膜。泪腺分泌蛋白质,电解质和水,并且腺体功能丧失会导致泪膜疾病,例如干眼症,这是老龄化人群中普遍遇到的并使人衰弱的疾病。为了与这些疾病作斗争,了解控制泪腺功能的潜在分子信号传导过程将为矫正治疗方法提供深刻见解。以前,在从泪腺分离的单个泪腺细胞中,我们证明毒蕈碱受体活化会刺激磷脂酶C偶联的信号级联反应,涉及细胞内钙的三磷酸肌醇依赖性动员以及随后的储库钙输入(SOCE)活化。由于细胞内钙的储存是有限的并且容易耗尽,因此SOCE途径是维持和维持受体激活信号的关键过程。最近的研究已将Orai家族蛋白鉴定为多种细胞类型中SOCE通道活性的关键成分。在这项研究中,我们使用小鼠模型表征了Orai1在泪腺功能中的作用,在该模型中,钙进入通道蛋白Orai1的基因已被删除。我们的数据表明,缺少Orai1的泪腺腺泡细胞在毒蕈碱受体激活后不显示SOCE。与野生型和杂合子同窝仔相比,Orai1基因敲除小鼠注射毒蕈碱受体激动剂毛果芸香碱后,刺激的眼泪产生显着减少。另外,在敲除小鼠的腺体中消除了钙依赖性但非钙依赖性的胞外分泌过氧化物酶。这些研究表明Orai1介导的SOCE在泪腺信号传导和功能中起着关键作用。

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