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滋养层细胞对层粘连蛋白异构体表现出不同的反应。

Trophoblast cells exhibit differential responses to laminin isoforms.

作者信息

Klaffky Erin J, Gonzáles Isabel M, Sutherland Ann E

机构信息

Department of Cell Biology, University of Virginia health System, Charlottesville, VA 22901, USA.

出版信息

Dev Biol. 2006 Apr 15;292(2):277-289. doi: 10.1016/j.ydbio.2005.12.033.

Abstract

Extracellular matrix (ECM) has specific effects on cell behavior that influence many aspects of early development. In the early postimplantation mouse embryo the ECM component laminin promotes polarization and survival of the embryonic ectoderm and formation of Reichert's membrane. In addition, dynamic patterns of laminins 1 and 10/11 expression in the embryo and the uterus correlate with the progression of implantation. In the implanting blastocyst, laminin 1 is strongly expressed in the trophectoderm basement membrane, whereas laminin 10/11 is expressed only in the inner cell mass and polar trophectoderm. In the uterus, laminin 10/11 is strongly expressed in the decidualizing matrix of the stroma. We show here that laminins 1 and 10/11 have distinct effects on trophoblast cell behavior that influence the process of implantation. Laminin 1 promotes random migration and decreases spreading, whereas laminin 10/11 promotes both spreading and persistent migration. When presented as adjacent substrates, cells stop at the boundary and do not enter the region containing laminin 1. Laminin 1 also affects cell-cell adhesion through changes in the localization of vascular endothelial (VE) cadherin. Cultured cells and primary trophoblast explants become single cells or very small groups on laminin 1 and VE-cadherin localization at regions of cell-cell contact decreases dramatically. In contrast, trophoblast cells maintain strong cell-cell contacts on substrates of laminins 10/11, and exhibit strong staining of VE-cadherin in all regions of cell-cell contact. These effects, and the localization of laminin 1 in Reichert's membrane and laminin 10/11 in the surrounding decidual matrix, suggest that these laminin isoforms influence the direction and quality of invasion of trophoblast cells during implantation, and provide epigenetic cues that drive the morphogenesis of the yolk sac placenta.

摘要

细胞外基质(ECM)对细胞行为具有特定影响,这些影响涉及早期发育的诸多方面。在植入后早期的小鼠胚胎中,ECM成分层粘连蛋白可促进胚胎外胚层的极化和存活以及赖歇特膜的形成。此外,胚胎和子宫中层粘连蛋白1以及层粘连蛋白10/11的动态表达模式与着床进程相关。在着床的囊胚中,层粘连蛋白1在滋养外胚层基底膜中强烈表达,而层粘连蛋白10/11仅在内细胞团和极滋养外胚层中表达。在子宫中,层粘连蛋白10/11在基质的蜕膜化基质中强烈表达。我们在此表明,层粘连蛋白1和层粘连蛋白10/11对滋养层细胞行为具有不同影响,进而影响着床过程。层粘连蛋白1促进随机迁移并减少铺展,而层粘连蛋白10/11既促进铺展又促进持续迁移。当作为相邻底物呈现时,细胞会在边界处停止,不会进入含有层粘连蛋白1的区域。层粘连蛋白1还通过改变血管内皮(VE)钙黏蛋白的定位来影响细胞间黏附。培养的细胞和原代滋养层外植体在层粘连蛋白1上会变成单个细胞或非常小的细胞团,并且在细胞间接触区域VE钙黏蛋白的定位会显著减少。相比之下,滋养层细胞在层粘连蛋白10/11底物上保持强烈的细胞间接触,并且在细胞间接触的所有区域都表现出强烈的VE钙黏蛋白染色。这些影响以及层粘连蛋白1在赖歇特膜中的定位和层粘连蛋白10/11在周围蜕膜基质中的定位表明,这些层粘连蛋白异构体在着床期间影响滋养层细胞的侵袭方向和质量,并提供驱动卵黄囊胎盘形态发生的表观遗传线索。

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