MCM Proteins are Upregulated in Placentas of Women with Reduced Insulin Sensitivity.

IF 4.7 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Bioscience Reports Pub Date : 2024-09-13 DOI:10.1042/bsr20240430
Julia Bandres-Meriz,Marta Inmaculada Sanz-Cuadrado,Irene Hurtado de Mendoza,Alejandro Majali-Martinez,Sophie Elisabeth Honeder,Tereza Cindrova-Davies,Ruth Birner-Gruenberger,Louise Torp Dalgaard,Gernot Desoye
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Abstract

In the first trimester of pregnancy the human placenta grows rapidly, making it sensitive to changes in the intrauterine environment. To test whether exposure to an environment in utero often associated with obesity modifies placental proteome and function, we performed untargeted proteomics (LC-MS/MS) in placentas from 19 women (gestational age 35-48 days). Maternal clinical traits (body mass index, leptin, glucose, C-peptide and insulin sensitivity) and gestational age were recorded. DNA replication and cell cycle pathways were enriched in the proteome of placentas of women with low maternal insulin sensitivity. Driving these pathways were the minichromosome maintenance (MCM) proteins MCM2-7 (MCM-complex). These proteins are part of the pre-replicative complex and participate in DNA damage repair. Indeed, MCM6 and γH2AX (DNA-damage marker) protein levels correlated in first trimester placental tissue (r=0.514, p<0.01). MCM6 and γH2AX co-localized to nuclei of villous cytotrophoblast cells, the proliferative cell type of the placenta, suggesting increased DNA damage in this cell type. To mimic key features of the intrauterine obesogenic environment, a first trimester trophoblast cell line, i.e., ACH-3P, was exposed to high insulin (10nM) or low oxygen tension (2.5% O2). There was a significant correlation between MCM6 and γH2AX protein levels, but these were independent of insulin or oxygen exposure. These findings show that chronic exposure in utero to reduced maternal insulin sensitivity during early pregnancy induces changes in the early first trimester placental proteome. Pathways related to DNA replication, cell cycle and DNA damage repair appear especially sensitive to such an in utero environment.
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胰岛素敏感性降低妇女胎盘中的 MCM 蛋白上调
在怀孕的前三个月,人类胎盘迅速生长,使其对宫内环境的变化非常敏感。为了检测胎盘暴露于通常与肥胖有关的宫内环境是否会改变胎盘蛋白质组和功能,我们对 19 名孕妇(胎龄 35-48 天)的胎盘进行了非靶向蛋白质组学(LC-MS/MS)研究。记录了产妇的临床特征(体重指数、瘦素、葡萄糖、C 肽和胰岛素敏感性)和孕龄。在母体胰岛素敏感性低的妇女的胎盘蛋白质组中,DNA复制和细胞周期通路富集。驱动这些途径的是迷你染色体维护(MCM)蛋白 MCM2-7(MCM-complex)。这些蛋白是前复制复合体的一部分,参与 DNA 损伤修复。事实上,MCM6 和 γH2AX(DNA 损伤标记物)蛋白水平在头三个月的胎盘组织中具有相关性(r=0.514,p<0.01)。MCM6 和 γH2AX 共同定位在绒毛细胞--胎盘的增殖细胞类型--的细胞核上,表明该细胞类型的 DNA 损伤增加。为了模拟宫内肥胖环境的主要特征,将妊娠头三个月的滋养层细胞系(即 ACH-3P)暴露于高胰岛素(10nM)或低氧张力(2.5% O2)环境中。MCM6 和 γH2AX 蛋白水平之间存在明显的相关性,但这与胰岛素或氧气暴露无关。这些研究结果表明,妊娠早期母体胰岛素敏感性降低,长期暴露于子宫内会诱导妊娠早期胎盘蛋白质组发生变化。与DNA复制、细胞周期和DNA损伤修复相关的途径似乎对这种子宫内环境特别敏感。
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来源期刊
Bioscience Reports
Bioscience Reports 生物-细胞生物学
CiteScore
8.50
自引率
0.00%
发文量
380
审稿时长
6-12 weeks
期刊介绍: Bioscience Reports provides a home for sound scientific research in all areas of cell biology and molecular life sciences. Since 2012, Bioscience Reports has been fully Open Access and publishes all papers under the liberal CC BY licence, giving the life science community quality research to share and discuss.Content before 2012 is subscription-only, and is accessible via archive purchase. Articles are assessed on soundness, providing a home for valid findings and data. We welcome papers that span disciplines (e.g. chemistry, medicine), including papers describing: -new methodologies -tools and reagents to probe biological questions -mechanistic details -disease mechanisms -metabolic processes and their regulation -structure and function -bioenergetics
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