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Posttranslational activation of bone morphogenetic protein 2 is mediated by proprotein convertase 6 during decidualization for pregnancy establishment.

机译:骨形态发生蛋白2的翻译后激活是在蜕膜化妊娠过程中由前蛋白转化酶6介导的。

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摘要

Bone morphogenetic proteins (BMPs) require major posttranslational modifications to become biologically active. One such key modification is endoproteolytic cleavage of the initially synthesized nonactive precursor protein to release the mature ligand. Here we show in a physiological context of uterine stromal decidualization that BMP2 cleavage is mediated by proprotein convertase 5/6 (PC6). Decidualization is a uterine remodeling event critical for embryo implantation. Deletion or knockdown of either BMP2 or PC6 inhibits decidualization causing implantation failure and female infertility. In this study we provide biochemical and physiological evidence that PC6 proteolytically activates BMP2. We used freshly isolated primary human endometrial stromal cells and demonstrated that PC6 was the sole member of the PC family significantly up-regulated during decidualization. The precursor form of BMP2 was reduced, whereas its active form was increased during decidualization. Inhibition of PC6 activity inhibited decidualization, and this was accompanied by a total blockade of BMP2 activation. Addition of recombinant active BMP2 partially rescued the decidualization arrest caused by PC6 inhibition. PC6 processed BMP2 at the KREKR(282) downward arrow cleavage site, and mutating this site prevented the cleavage. This study thus demonstrates for the first time that the proteolytic activation and thus bioavailability of BMP2 is controlled by PC6.
机译:骨形态发生蛋白(BMP)需要大量的翻译后修饰才能具有生物学活性。一种这样的关键修饰是初始合成的非活性前体蛋白的内蛋白水解切割,以释放成熟的配体。在这里,我们显示在子宫基质蜕膜化的生理环境中,BMP2的切割是由前蛋白转化酶5/6(PC6)介导的。蜕膜化是对胚胎植入至关重要的子宫重塑事件。 BMP2或PC6的缺失或敲除会抑制蜕膜形成,从而导致植入失败和女性不育。在这项研究中,我们提供了PC6蛋白水解激活BMP2的生化和生理学证据。我们使用了新鲜分离的原代人类子宫内膜基质细胞,并证明了PC6是PC家族的唯一成员,在蜕膜化过程中明显上调。 BMP2的前体形式减少了,而蜕膜化过程中BMP2的活性形式增加了。抑制PC6活性可抑制蜕膜化,并伴有BMP2激活的完全阻断。重组活性BMP2的添加部分挽救了PC6抑制引起的蜕膜化停止。 PC6在KREKR(282)向下箭头切割位点处处理BMP2,对该位点进行突变可防止切割。因此,这项研究首次证明了PC6可以控制BMP2的蛋白水解激活以及生物利用度。

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