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蜕膜化相关蛋白酶表达在着床和月经中的意义。

Implications of decidualization-associated protease expression in implantation and menstruation.

作者信息

Schatz F, Krikun G, Runic R, Wang E Y, Hausknecht V, Lockwood C J

机构信息

Department of Obstetrics and Gynecology, New York University School of Medicine, NY 10016, USA.

出版信息

Semin Reprod Endocrinol. 1999;17(1):3-12. doi: 10.1055/s-2007-1016206.

Abstract

During progesterone-induced decidualization of estradiol (E2)-primed human endometrial stromal cells (HESCs), the interstitial-type extracellular matrix (ECM) of the follicular phase endometrium is transformed in the luteal phase to a mixture of residual interstitial- and new basal laminar-type components. This transformation is accelerated by reduced proteolytic activity of HESCs undergoing decidualization (DZ). In cultured HESCs, progestins, but not E2, induce the expression of several DZ markers, and E2 enhances these effects despite the lack of response to E2 alone. Using this well-characterized in vitro DZ model we evaluated the expression of plasminogen activators (PAs), which degrade ECM components that undergo rapid turnover, and matrix metalloproteinases (MMPs), which degrade the bulk of ECM components. Medroxyprogesterone acetate (MPA) inhibited the catalytic activity of urokinase-type PA (uPA) and tissue-type PA (tPA) as well as the expression of such MMPs as interstitial collagenase (MMP-1) and stromelysin-1 (MMP-3). Moreover, E2 + MPA elicited greater inhibitory effects on the expression of all of these proteases. Progestin inhibition of PA activities reflected reciprocal upregulation in the output of the PA inhibitor PAI-1, which produced large molar excesses of PAI-1 compared with the PAs in HESC-conditioned medium. By contrast, the tissue inhibitor of the MMPs, TIMP1, as well as gelatinase A (MMP-2), was constitutively expressed by the HESCs. In the absence of implantation, menstruation-associated degradation of the functional endometrial ECM is triggered by withdrawal of circulating ovarian steroids. This process was evaluated in cultured HESCs that were first decidualized during 10 days of exposure to E2 + MPA, and then withdrawn to steroid-free medium with and without the antiprogestin RU 486. As expected, steroid withdrawal reversed progestin-inhibited PA activity as well as the expression of MMP-1 and MMP-3 and progestin-enhanced PAI-1; much greater reversal was observed in medium supplemented with RU 486. Unlike the changes in PAI-1, neither TIMP1, nor MMP-2 expression was affected by withdrawal to steroid-free or to RU 486-medium. By altering the composition of the ECM of the luteal phase endometrium, progestin-elicited inhibition of the PAs, uPA and tPA, as well as that of the MMPs, MMP-1 and MMP-3, modulates trophoblast adhesion, migration and differentiation. Conversely, steroid withdrawal elicited increases in uPA, MMP-1 and MMP-3 activities would promote endometrial sloughing by degrading the mixture of decidual cell-derived basement membrane-like proteins and interstitial components that comprise the stromal ECM of the perimenstrual endometrium.

摘要

在孕酮诱导的经雌二醇(E2)预处理的人子宫内膜基质细胞(HESC)蜕膜化过程中,卵泡期子宫内膜的间质型细胞外基质(ECM)在黄体期转变为残余间质型和新的基底层型成分的混合物。蜕膜化的HESC(DZ)蛋白水解活性降低加速了这种转变。在培养的HESC中,孕激素而非E2诱导几种DZ标志物的表达,尽管单独对E2无反应,但E2增强了这些作用。利用这个特征明确的体外蜕膜化模型,我们评估了纤溶酶原激活剂(PA)和基质金属蛋白酶(MMP)的表达,PA可降解快速周转的ECM成分,MMP可降解大部分ECM成分。醋酸甲羟孕酮(MPA)抑制尿激酶型PA(uPA)和组织型PA(tPA)的催化活性以及间质胶原酶(MMP-1)和基质溶解素-1(MMP-3)等MMP的表达。此外,E2 + MPA对所有这些蛋白酶的表达产生更大的抑制作用。孕激素对PA活性的抑制反映了PA抑制剂PAI-1产量的相互上调,与HESC条件培养基中的PA相比,PAI-1产生了大量摩尔过量。相比之下,MMP的组织抑制剂TIMP1以及明胶酶A(MMP-2)由HESC组成性表达。在未着床的情况下,循环卵巢类固醇的撤离引发功能性子宫内膜ECM的月经相关降解。在培养的HESC中评估了这个过程,这些细胞首先在暴露于E2 + MPA的10天内进行蜕膜化,然后撤回到含或不含抗孕激素RU 486的无类固醇培养基中。正如预期的那样,类固醇撤离逆转了孕激素抑制的PA活性以及MMP-1和MMP-3的表达以及孕激素增强的PAI-1;在补充RU 486的培养基中观察到更大的逆转。与PAI-1的变化不同,TIMP1和MMP-2的表达均不受撤回到无类固醇或RU 486培养基的影响。通过改变黄体期子宫内膜ECM的组成,孕激素引起的对PA(uPA和tPA)以及MMP(MMP-1和MMP-3)的抑制调节滋养层细胞的粘附、迁移和分化。相反,类固醇撤离引起的uPA、MMP-1和MMP-3活性增加将通过降解由蜕膜细胞衍生的基底膜样蛋白和间质成分的混合物来促进子宫内膜脱落,这些成分构成了月经周期子宫内膜基质ECM。

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