Department of Physiology, Wayne State University School of Medicine, Detroit, MI, USA.
Department of Obstetrics and Gynecology, Wayne State University School of Medicine, Detroit, MI, USA.
Cell Death Differ. 2017 Oct;24(10):1772-1783. doi: 10.1038/cdd.2017.104. Epub 2017 Jul 21.
Survival of trophoblast cells in the low oxygen environment of human placentation requires metalloproteinase-mediated shedding of HBEGF and downstream signaling. A matrix metalloproteinase (MMP) antibody array and quantitative RT-PCR revealed upregulation of MMP2 post-transcriptionally in human first trimester HTR-8/SVneo trophoblast cells and placental villous explants exposed to 2% O. Specific MMP inhibitors established the requirement for MMP2 in HBEGF shedding and upregulation. Because α-amanitin inhibited the upregulation of HBEGF, differentially expressed genes were identified by next-generation sequencing of RNA from trophoblast cells cultured at 2% O for 0, 1, 2 and 4 h. Nine genes, all containing HIF-response elements, were upregulated at 1 h, but only HSPA6 (HSP70B') remained elevated at 2-4 h. The HSP70 chaperone inhibitor VER 155008 blocked upregulation of both MMP2 and HBEGF at 2% O, and increased apoptosis. However, both HBEGF upregulation and apoptosis were rescued by exogenous MMP2. Proximity ligation assays demonstrated interactions between HSP70 and MMP2, and between MMP2 and HBEGF, supporting the concept that MMP2-mediated shedding of HBEGF, initiated by HSP70, contributes to trophoblast survival at the low O concentrations encountered during the first trimester, and is essential for successful pregnancy outcomes. Trophoblast survival during human placentation, when oxygenation is minimal, required HSP70 activity, which mediated MMP2 accumulation and the transactivation of anti-apoptotic ERBB signaling by HBEGF shedding.
滋养层细胞在人胎盘形成的低氧环境中的存活需要金属蛋白酶介导的 HBEGF 脱落和下游信号转导。基质金属蛋白酶(MMP)抗体阵列和定量 RT-PCR 显示,人早孕 HTR-8/SVneo 滋养层细胞和胎盘绒毛外植体在 2%O 下暴露后 MMP2 转录后上调。特异性 MMP 抑制剂确立了 MMP2 在 HBEGF 脱落和上调中的必要性。由于 α-鹅膏蕈碱抑制 HBEGF 的上调,通过在 2%O 下培养的滋养层细胞的 RNA 进行下一代测序鉴定差异表达基因,培养时间为 0、1、2 和 4 h。9 个基因均含有 HIF 反应元件,在 1 h 时上调,但只有 HSPA6(HSP70B')在 2-4 h 时仍升高。HSP70 伴侣抑制剂 VER 155008 阻断了 2%O 下 MMP2 和 HBEGF 的上调,并增加了细胞凋亡。然而,HBEGF 的上调和细胞凋亡均被外源性 MMP2 挽救。邻近连接测定表明 HSP70 与 MMP2 之间以及 MMP2 与 HBEGF 之间存在相互作用,支持 MMP2 介导的 HSP70 启动的 HBEGF 脱落有助于在早孕期间遇到的低 O 浓度下滋养层细胞的存活,并且对成功的妊娠结局至关重要。在人类胎盘形成期间,当氧合作用最小化时,滋养层细胞的存活需要 HSP70 活性,该活性介导 MMP2 积累和 HBEGF 脱落对抗凋亡 ERBB 信号的转激活。