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妊娠滋养细胞疾病中滋养层细胞基因表达的表观遗传失调

Epigenetic Dysregulation of Trophoblastic Gene Expression in Gestational Trophoblastic Disease.

作者信息

Szabolcsi Zoltan, Demeter Amanda, Kiraly Peter, Balogh Andrea, Wilson Melissa L, King Jennifer R, Hetey Szabolcs, Gelencser Zsolt, Matsuo Koji, Hargitai Beata, Mhawech-Fauceglia Paulette, Hupuczi Petronella, Szilagyi Andras, Papp Zoltan, Roman Lynda D, Cortessis Victoria K, Than Nandor Gabor

机构信息

Systems Biology of Reproduction Research Group, Research Centre for Natural Sciences, Institute of Enzymology, H-1117 Budapest, Hungary.

Department of Population and Public Health Sciences, University of Southern California, Los Angeles, CA 90033, USA.

出版信息

Biomedicines. 2021 Dec 17;9(12):1935. doi: 10.3390/biomedicines9121935.

Abstract

Gestational trophoblastic diseases (GTDs) have not been investigated for their epigenetic marks and consequent transcriptomic changes. Here, we analyzed genome-wide DNA methylation and transcriptome data to reveal the epigenetic basis of disease pathways that may lead to benign or malignant GTDs. RNA-Seq, mRNA microarray, and Human Methylation 450 BeadChip data from complete moles and choriocarcinoma cells were bioinformatically analyzed. Paraffin-embedded tissues from complete moles and control placentas were used for tissue microarray construction, DNMT3B immunostaining and immunoscoring. We found that DNA methylation increases with disease severity in GTDs. Differentially expressed genes are mainly upregulated in moles while predominantly downregulated in choriocarcinoma. DNA methylation principally influences the gene expression of villous trophoblast differentiation-related or predominantly placenta-expressed genes in moles and choriocarcinoma cells. Affected genes in these subsets shared focal adhesion and actin cytoskeleton pathways in moles and choriocarcinoma. In moles, cell cycle and differentiation regulatory pathways, essential for trophoblast/placental development, were enriched. In choriocarcinoma cells, hormone biosynthetic, extracellular matrix-related, hypoxic gene regulatory, and differentiation-related signaling pathways were enriched. In moles, we found slight upregulation of DNMT3B protein, a developmentally important de novo DNA methylase, which is strongly overexpressed in choriocarcinoma cells that may partly be responsible for the large DNA methylation differences. Our findings provide new insights into the shared and disparate molecular pathways of disease in GTDs and may help in designing new diagnostic and therapeutic tools.

摘要

妊娠滋养细胞疾病(GTDs)尚未对其表观遗传标记及随之而来的转录组变化进行研究。在此,我们分析了全基因组DNA甲基化和转录组数据,以揭示可能导致良性或恶性GTDs的疾病途径的表观遗传基础。对来自完全性葡萄胎和绒毛膜癌细胞的RNA测序、mRNA微阵列及人类甲基化450K芯片数据进行了生物信息学分析。使用来自完全性葡萄胎和对照胎盘的石蜡包埋组织构建组织微阵列,进行DNMT3B免疫染色和免疫评分。我们发现,在GTDs中,DNA甲基化随疾病严重程度增加。差异表达基因在葡萄胎中主要上调,而在绒毛膜癌中主要下调。DNA甲基化主要影响葡萄胎和绒毛膜癌细胞中绒毛滋养层分化相关或主要在胎盘中表达的基因的表达。这些亚组中受影响的基因在葡萄胎和绒毛膜癌中共享粘着斑和肌动蛋白细胞骨架途径。在葡萄胎中,对滋养层/胎盘发育至关重要的细胞周期和分化调节途径得到富集。在绒毛膜癌细胞中,激素生物合成、细胞外基质相关、缺氧基因调节和分化相关信号通路得到富集。在葡萄胎中,我们发现发育上重要的从头DNA甲基转移酶DNMT3B蛋白有轻微上调,其在绒毛膜癌细胞中强烈过表达,这可能部分解释了巨大的DNA甲基化差异。我们的发现为GTDs中疾病的共同和不同分子途径提供了新见解,并可能有助于设计新的诊断和治疗工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a62e/8698431/ed01edba76e7/biomedicines-09-01935-g001.jpg

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