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高龄相关的 SIRT1 缺乏通过增加波形蛋白乙酰化来损害滋养层上皮-间充质转化。

Advanced Maternal Age-associated SIRT1 Deficiency Compromises Trophoblast Epithelial-Mesenchymal Transition through an Increase in Vimentin Acetylation.

机构信息

Department of Obstetrics, The First Affiliated Hospital of Chongqing Medical University, Chongqing, China.

Ministry of Education-International Collaborative Laboratory of Reproduction and Development, Chongqing, China.

出版信息

Aging Cell. 2021 Oct;20(10):e13491. doi: 10.1111/acel.13491. Epub 2021 Oct 3.

Abstract

Advanced maternal age (AMA) pregnancies are rapidly increasing and are associated with aberrant trophoblast cell function, poor placentation, and unfavorable pregnancy outcomes, presumably due to premature placental senescence. SIRT1 is an NAD -dependent deacetylase with well-known antiaging effects, but its connection with placental senescence is unreported. In this study, human term placentas and first-trimester villi were collected from AMA and normal pregnancies, and a mouse AMA model was established by cross breeding young and aged male and female C57 mice. SIRT1 expression and activity in HTR8/SVneo cells were genetically or pharmacologically manipulated. Trophoblast-specific Sirt1-knockout (KO) mouse placentas were generated by mating Elf5-Cre and Sirt1 mice. Trophoblast cell mobility was assessed with transwell invasion and wound-healing assays. SIRT1-binding proteins in HTR8/SVneo cells and human placental tissue were identified by mass spectrometry. We identified SIRT1 as the only differentially expressed sirtuin between AMA and normal placentas. It is downregulated in AMA placentas early in the placental life cycle and is barely impacted by paternal age. SIRT1 loss upregulates P53 acetylation and P21 expression and impairs trophoblast invasion and migration. Sirt1-KO mouse placentas exhibit senescence markers and morphological disruption, along with decreased fetal weight. In trophoblasts, SIRT1 interacts with vimentin, regulating its acetylation. In conclusion, SIRT1 promotes trophoblast epithelial-mesenchymal transition (EMT) to enhance invasiveness by modulating vimentin acetylation. AMA placentas are associated with premature senescence during placentation due to SIRT1 loss. Therefore, SIRT1 may be an antiaging therapeutic target for improving placental development and perinatal outcomes in AMA pregnancies.

摘要

高龄产妇(AMA)妊娠迅速增加,并与异常滋养细胞功能、不良胎盘形成和不良妊娠结局相关,推测这是由于胎盘过早衰老所致。SIRT1 是一种 NAD 依赖性去乙酰化酶,具有众所周知的抗衰老作用,但它与胎盘衰老的关系尚未报道。在这项研究中,我们从 AMA 和正常妊娠中收集了足月胎盘和第一 trimester 绒毛,并通过杂交年轻和年老的雄性和雌性 C57 小鼠建立了 AMA 小鼠模型。我们通过交配 Elf5-Cre 和 Sirt1 小鼠,生成了滋养层特异性 Sirt1 敲除(KO)小鼠胎盘。通过 Transwell 侵袭和划痕愈合实验评估滋养细胞的迁移能力。通过质谱法鉴定 HTR8/SVneo 细胞和人胎盘组织中的 SIRT1 结合蛋白。我们发现 SIRT1 是 AMA 和正常胎盘之间唯一差异表达的 Sirtuin。它在胎盘生命周期早期在 AMA 胎盘下调,并且几乎不受父代年龄的影响。SIRT1 缺失上调 P53 乙酰化和 P21 表达,并损害滋养细胞侵袭和迁移。Sirt1-KO 小鼠胎盘表现出衰老标志物和形态破坏,同时胎儿体重降低。在滋养细胞中,SIRT1 与波形蛋白相互作用,调节其乙酰化。总之,SIRT1 通过调节波形蛋白乙酰化促进滋养细胞上皮-间充质转化(EMT)以增强侵袭性。由于 SIRT1 缺失,AMA 胎盘在胎盘形成过程中与过早衰老相关。因此,SIRT1 可能是改善 AMA 妊娠中胎盘发育和围产期结局的抗衰老治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c336/8520724/d8485e9f74f2/ACEL-20-e13491-g003.jpg

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