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发育中和成熟牛黄体中细胞内钙稳态的机制

Mechanisms of intracellular calcium homeostasis in developing and mature bovine corpora lutea.

作者信息

Wright Marietta F, Bowdridge Elizabeth, McDermott Erica L, Richardson Samuel, Scheidler James, Syed Qaisar, Bush Taylor, Inskeep E Keith, Flores Jorge A

机构信息

Division of Animal and Nutritional Sciences, Davis College of Agriculture, Natural Resources and Design, West Virginia University, Morgantown, West Virginia.

出版信息

Biol Reprod. 2014 Mar 13;90(3):55. doi: 10.1095/biolreprod.113.113662. Print 2014 Mar.

Abstract

Although calcium (Ca(2+)) is accepted as an intracellular mediator of prostaglandin F2 alpha (PGF2alpha) actions on luteal cells, studies defining mechanisms of Ca(2+) homeostasis in bovine corpora lutea (CL) are lacking. The increase in intracellular Ca(2+) concentration ([Ca(2+)]i) induced by PGF2alpha in steroidogenic cells from mature CL is greater than in those isolated from developing CL. Our hypothesis is that differences in signal transduction associated with developing and mature CL contribute to the increased efficacy of PGF2alpha to induce a Ca(2+) signal capable of inducing regression in mature CL. To test this hypothesis, major genes participating in Ca(2+) homeostasis in the bovine CL were identified, and expression of mRNA, protein, or activity, in the case of phospholipase Cbeta (PLCbeta), in developing and mature bovine CL was compared. In addition, we examined the contribution of external and internal Ca(2+) to the PGF2alpha stimulated rise in [Ca(2+)]i in LLCs isolated from developing and mature bovine CL. Three differences were identified in mechanisms of calcium homeostasis between developing and mature CL, which could account for the lesser increase in [Ca(2+)]i in response to PGF2alpha in developing than in mature CL. First, there were lower concentrations of inositol 1,4,5-trisphosphate (IP3) after similar PGF2alpha challenge, indicating reduced phospholipase C beta (PLCbeta) activity, in developing than mature CL. Second, there was an increased expression of sorcin (SRI) in developing than in mature CL. This cytoplasmic Ca(2+) binding protein modulates the endoplasmic reticulum (ER) Ca(2+) release channel, ryanodine receptor (RyR), to be in the closed configuration. Third, there was greater expression of ATP2A2 or SERCA, which causes calcium reuptake into the ER, in developing than in mature CL. Developmental differences in expression detected in whole CL were confirmed by Western blots using protein samples from steroidogenic cells isolated from developing and mature CL. Localization of these genes in steroidogenic luteal cells was confirmed by immunohistochemistry. Therefore, it is concluded that the cellular mechanisms that allow PGF2alpha to induce a calcium signal of greater magnitude in mature than in developing CL involve 1) greater PLCbeta activity with enhanced generation of IP3, 2) an enhanced Ca(2+) release from the ER via unrestrained RYR2 due to a decrease in SRI expression, and 3) a reduction in calcium reuptake to the ER due to lower expression of ATP2A2. Accordingly, the increase in [Ca(2+)]i induced by PGF2alpha in mature large steroidogenic cells had less dependency from extracellular calcium than in those isolated from immature CL.

摘要

尽管钙(Ca(2+))被公认为是前列腺素F2α(PGF2α)作用于黄体细胞的细胞内介质,但目前缺乏关于牛黄体(CL)中Ca(2+)稳态机制的研究。PGF2α诱导成熟CL的类固醇生成细胞内Ca(2+)浓度([Ca(2+)]i)升高的幅度大于发育中CL分离出的细胞。我们的假设是,发育中和成熟CL相关的信号转导差异导致PGF2α诱导能够促使成熟CL退化的Ca(2+)信号的效力增加。为了验证这一假设,我们鉴定了参与牛CL中Ca(2+)稳态的主要基因,并比较了发育中和成熟牛CL中mRNA、蛋白质的表达,以及磷脂酶Cβ(PLCβ)的活性。此外,我们研究了外部和内部Ca(2+)对从发育中和成熟牛CL分离出的黄体细胞系(LLCs)中PGF2α刺激的[Ca(2+)]i升高的作用。在发育中和成熟CL的钙稳态机制中发现了三个差异,这可以解释发育中CL对PGF2α反应时[Ca(2+)]i升高幅度小于成熟CL的原因。首先,在相似的PGF2α刺激后,发育中CL的肌醇1,4,5 - 三磷酸(IP3)浓度低于成熟CL,表明发育中CL的磷脂酶Cβ(PLCβ)活性降低。其次,发育中CL的 Sorcin(SRI)表达高于成熟CL。这种细胞质Ca(+)结合蛋白可调节内质网(ER)Ca(2+)释放通道——兰尼碱受体(RyR),使其处于关闭状态。第三,发育中CL中负责将钙重新摄取到内质网的ATP2A2或SERCA的表达高于成熟CL。使用从发育中和成熟CL分离出的类固醇生成细胞的蛋白质样本进行蛋白质印迹分析,证实了在整个CL中检测到的表达发育差异。通过免疫组织化学证实了这些基因在类固醇生成黄体细胞中的定位。因此,可以得出结论,使PGF2α在成熟CL中诱导比发育中CL更大幅度钙信号的细胞机制包括:1)更高的PLCβ活性以及增强的IP3生成;2)由于SRI表达降低,通过不受抑制的RYR2从内质网增强Ca(2+)释放;3)由于ATP2A2表达降低,钙向内质网重新摄取减少。因此,PGF2α在成熟大类固醇生成细胞中诱导的[Ca(2+)]i升高对外源钙的依赖性低于从未成熟CL分离出的细胞。

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