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使用 SWATH-MS 技术对暴露于阻燃剂 BDE-47 的原代人绒毛滋养层细胞进行蛋白质组学分析。

Proteomic analyses of primary human villous trophoblasts exposed to flame retardant BDE-47 using SWATH-MS.

机构信息

Center for Reproductive Sciences and Department of Obstetrics, Gynecology, and Reproductive Sciences, University of California, San Francisco (UCSF), San Francisco, CA, USA.

Center for Reproductive Sciences and Department of Obstetrics, Gynecology, and Reproductive Sciences, University of California, San Francisco (UCSF), San Francisco, CA, USA.

出版信息

Toxicology. 2023 Aug 1;494:153583. doi: 10.1016/j.tox.2023.153583. Epub 2023 Jun 28.

Abstract

Polybrominated diphenyl ethers (PBDEs) are a class of brominated flame retardants and recognized developmental toxicants that are detectable in placental tissues. Higher levels of in utero PBDE exposure have been associated with an increased risk of adverse birth outcomes. During pregnancy, cytotrophoblasts (CTBs) from the placenta play critical roles in the formation of the maternal-fetal interface via uterine invasion and vascular remodeling. The differentiation of these cells towards an invasive phenotype is crucial for proper placental development. We previously have shown that BDE-47 can impact CTB viability and hinder the ability of these cells to migrate and invade. To expand on potential toxicological mechanisms, we utilized quantitative proteomic approaches to identify changes in the global proteome of mid-gestation primary human CTBs after exposure to BDE-47. Using sequential window acquisition of all theoretical fragment-ion spectra (SWATH), we identified 3024 proteins in our CTB model of differentiation/invasion. Over 200 proteins were impacted as a function of BDE-47 exposure (1 μM and 5 μM) across the treatment period (15, 24, and 39 h). The differentially expressed molecules displayed time- and concentration-dependent changes in expression and were enriched in pathways associated with aggregatory and adhesive processes. Network analysis identified CYFIP1, a molecule previously unexplored in a placental context, to be dysregulated at BDE-47 concentrations previously seen to impact CTB migration/invasion. Our SWATH-MS dataset thus demonstrates BDE-47 impacts the global proteome of differentiating CTBs and serves as a valuable resource for further understanding of the relationship between environmental chemical exposures and placental development and function. AVAILABILITY OF DATA AND MATERIAL: Raw chromatograms are deposited on the MassIVE proteomic database (https://massive.ucsd.edu) under accession number MSV000087870. Normalized relative abundances are also available as Table S1.

摘要

多溴联苯醚(PBDEs)是一类溴化阻燃剂,被认为是发育毒物,可在胎盘组织中检测到。宫内 PBDE 暴露水平较高与不良出生结局的风险增加有关。在怀孕期间,胎盘的滋养层细胞(CTBs)通过子宫侵袭和血管重塑,在形成母体-胎儿界面方面发挥关键作用。这些细胞向侵袭表型的分化对于胎盘的正常发育至关重要。我们之前已经表明,BDE-47 会影响 CTB 的活力,并阻碍这些细胞迁移和侵袭的能力。为了扩展潜在的毒理学机制,我们利用定量蛋白质组学方法来识别暴露于 BDE-47 后中期原代人 CTB 全蛋白质组的变化。使用连续窗口采集所有理论片段离子谱(SWATH),我们在 CTB 的分化/侵袭模型中鉴定了 3024 种蛋白质。在整个处理期(15、24 和 39 小时)内,超过 200 种蛋白质会因 BDE-47 暴露(1 μM 和 5 μM)而受到影响。差异表达的分子显示出时间和浓度依赖性的表达变化,并富集在与聚集和黏附过程相关的途径中。网络分析确定 CYFIP1 是一种在胎盘环境中以前未被探索的分子,在以前被认为会影响 CTB 迁移/侵袭的 BDE-47 浓度下被失调。因此,我们的 SWATH-MS 数据集表明 BDE-47 会影响分化中的 CTB 的全蛋白质组,并为进一步了解环境化学暴露与胎盘发育和功能之间的关系提供了有价值的资源。数据和材料的可用性:原始色谱图已存储在 MassIVE 蛋白质组数据库(https://massive.ucsd.edu)中,访问号为 MSV000087870。归一化相对丰度也作为表 S1 提供。

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