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整合素转换调节正常滋养层细胞侵袭。

Integrin switching regulates normal trophoblast invasion.

作者信息

Damsky C H, Librach C, Lim K H, Fitzgerald M L, McMaster M T, Janatpour M, Zhou Y, Logan S K, Fisher S J

机构信息

Department of Stomatology, University of California San Francisco 94143-0512.

出版信息

Development. 1994 Dec;120(12):3657-66. doi: 10.1242/dev.120.12.3657.

Abstract

Cells invade extracellular matrices in a regulated manner at specific times and places during normal development. A dramatic example is trophoblast invasion of the uterine wall. Previous studies have shown that differentiation of trophoblasts to an invasive phenotype is accompanied by temporally and spatially regulated switching of their integrin repertoire. In the first trimester human placenta, alpha 6 integrins are restricted to cytotrophoblast (CTB) stem cells and downregulated in invasive CTBs, whereas alpha 5 beta 1 and alpha 1 beta 1 integrins are upregulated in differentiating and invasive CTBs. The goal of the present study was to determine whether these changes have functional consequences for CTB invasiveness. Using an in vitro invasion model, we determined first that aggregates of invading first trimester CTBs in vitro undergo the same pattern of integrin switching as was observed in situ, thereby validating the utility of the model. We then showed that antibody perturbation of interactions involving laminin or collagen type IV and their integrin alpha 1/beta 1 receptor inhibited invasion by CTBs, whereas perturbing interactions between fibronectin and the alpha 5/beta 1 fibronectin receptor accelerated invasion. Finally, we report that later gestation CTBs, which display greatly decreased invasive capacity, are also unable to upregulate alpha 1 beta 1 complexes, providing further evidence that this integrin is critical for CTB invasion. This gestational regulation is transcriptional. These data indicate that integrin switching observed during differentiation in situ has significant functional consequences for CTB invasion. The data suggest further that differentiating CTBs upregulate counterbalancing invasion-accelerating and invasion-restraining adhesion mechanisms. We propose that this contributes to regulating the depth of CTB invasion during normal implantation.

摘要

在正常发育过程中,细胞会在特定的时间和地点以一种受调控的方式侵入细胞外基质。一个显著的例子是滋养层对子宫壁的侵入。先前的研究表明,滋养层细胞向侵袭性表型的分化伴随着其整合素库在时间和空间上的调控性转换。在孕早期的人胎盘中,α6整合素局限于细胞滋养层(CTB)干细胞,在侵袭性CTB中下调,而α5β1和α1β1整合素在分化和侵袭性CTB中上调。本研究的目的是确定这些变化是否对CTB的侵袭性有功能影响。使用体外侵袭模型,我们首先确定体外侵袭的孕早期CTB聚集体经历了与原位观察到的相同模式的整合素转换,从而验证了该模型的实用性。然后我们表明,涉及层粘连蛋白或IV型胶原及其整合素α1/β1受体的相互作用的抗体干扰会抑制CTB的侵袭,而干扰纤连蛋白与α5/β1纤连蛋白受体之间的相互作用则会加速侵袭。最后,我们报告说,妊娠后期侵袭能力大大降低的CTB也无法上调α1β1复合物,这进一步证明了这种整合素对CTB侵袭至关重要。这种妊娠调节是转录性的。这些数据表明,原位分化过程中观察到的整合素转换对CTB侵袭具有显著的功能影响。数据还进一步表明,分化中的CTB上调了相互平衡的促进侵袭和抑制侵袭的黏附机制。我们认为这有助于在正常着床过程中调节CTB的侵袭深度。

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