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Cathepsin proteases have distinct roles in trophoblast function and vascular remodelling.

机译:组织蛋白酶在滋养细胞功能和血管重塑中具有独特的作用。

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Trophoblast giant cells are instrumental in promoting blood flow towards the mouse embryo by invading the uterine endometrium and remodelling the maternal vasculature. This process involves the degradation of the perivascular smooth muscle layer and the displacement of vascular endothelial cells to form trophoblast-lined blood sinuses. How this vascular remodelling is achieved at the molecular level remains largely elusive. Here, we show that two placenta-specific cathepsins, Cts7 and Cts8, are expressed in distinct but largely overlapping subsets of giant cells that are in direct contact with maternal arteries. We find that Cts8, but not Cts7, has the capacity to mediate loss of smooth muscle alpha-actin and to disintegrate blood vessels. Consequently, conditional ubiquitous overexpression of Cts8 leads to midgestational embryonic lethality caused by severe vascularization defects. In addition, both cathepsins determine trophoblast cell fate by inhibiting the self-renewing capacity of trophoblast stemcells when overexpressed in vitro. Similarly, transgenic overexpression of Cts7 and Cts8 affects trophoblast proliferation and differentiation by prolonging mitotic cell cycle progression and promoting giant cell differentiation, respectively. We also show that the cell cycle effect is directly caused by some proportion of CTS7 localizing to the nucleus, highlighting the emerging functional diversity of these typically lysosomal proteases in distinct intracellular compartments. Our findings provide evidence for the highly specialized functions of closely related cysteine cathepsin proteases in extra-embryonic development, and reinforce their importance for a successful outcome of pregnancy.
机译:滋养层巨细胞通过侵入子宫内膜并重塑母体血管来促进血液流向小鼠胚胎。该过程涉及血管周围平滑肌层的降解和血管内皮细胞的置换以形成滋养层衬里的血液窦。在分子水平上如何实现这种血管重塑在很大程度上尚不清楚。在这里,我们显示了两个胎盘特异性组织蛋白酶,Cts7和Cts8,在与母体动脉直接接触的巨大细胞的不同但高度重叠的子集中表达。我们发现,Cts8,而不是Cts7,具有介导平滑肌α-肌动蛋白损失和分解血管的能力。因此,Cts8的条件性普遍存在过表达会导致由严重的血管生成缺陷引起的孕中期胚胎致死率。另外,两种组织蛋白酶都通过在体外过表达时抑制滋养层干细胞的自我更新能力来决定滋养层细胞的命运。同样,Cts7和Cts8的转基因过表达分别通过延长有丝分裂细胞周期进程和促进巨细胞分化来影响滋养细胞增殖和分化。我们还表明,细胞周期效应直接由一定比例的CTS7定位于细胞核引起,突显了这些典型的溶酶体蛋白酶在不同的细胞内区室中出现的功能多样性。我们的发现为紧密相关的半胱氨酸组织蛋白酶在胚胎外发育中的高度专业化功能提供了证据,并增强了它们对成功妊娠的重要性。

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