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将子痫前期和与遗传变异相关的HELLP综合征中的基因型与滋养层表型联系起来。

Linking genotype to trophoblast phenotype in preeclampsia and HELLP syndrome associated with genetic variants.

作者信息

Costa Lorenzo, Bermudez-Guzman Luis, Benouda Ikram, Laissue Paul, Morel Adrien, Jiménez Karen Marcela, Fournier Thierry, Stouvenel Laurence, Méhats Céline, Miralles Francisco, Vaiman Daniel

机构信息

Institut Cochin, Team 'From Gametes To Birth', INSERM U1016, CNRS UMR8104, Université de Paris, 24 rue du Faubourg St Jacques, 75014 Paris, France.

Department of Human Genetics, University of Heidelberg, Heidelberg, Germany.

出版信息

iScience. 2024 Feb 16;27(3):109260. doi: 10.1016/j.isci.2024.109260. eCollection 2024 Mar 15.

Abstract

Preeclampsia is a major hypertensive pregnancy disorder with a 50% heritability. The first identified gene involved in the disease is STOX1, a transcription factor, whose variant Y153H predisposes to the disease. Two rare mutations were also identified in Colombian women affected by the hemolysis, elevated liver enzyme, low platelet syndrome, a complication of preeclampsia (T188N and R364X). Here, we explore the effects of these variants in trophoblast cell models (BeWo) where STOX1 was previously invalidated. We firstly showed that STOX1 knockout alters response to oxidative stress, cell proliferation, and fusion capacity. Then, we showed that mutant versions of STOX1 trigger alterations in gene profiles, growth, fusion, and oxidative stress management. The results also reveal alterations of the STOX interaction with DNA when the mutations affected the DNA-binding domain of STOX1 (Y153H and T188N). We also reveal here that a major contributor of these effects appears to be the E2F3 transcription factor.

摘要

子痫前期是一种遗传性高达50%的主要妊娠高血压疾病。首个被确定与该疾病相关的基因是STOX1,一种转录因子,其Y153H变体易引发该疾病。在受溶血、肝酶升高、血小板减少综合征(子痫前期的一种并发症)影响的哥伦比亚女性中还发现了两个罕见突变(T188N和R364X)。在此,我们在先前已使STOX1无效的滋养层细胞模型(BeWo)中探究这些变体的影响。我们首先表明,STOX1基因敲除会改变对氧化应激的反应、细胞增殖和融合能力。然后,我们表明STOX1的突变版本会引发基因谱、生长、融合和氧化应激管理方面的改变。当突变影响STOX1的DNA结合域(Y153H和T188N)时,结果还揭示了STOX与DNA相互作用的改变。我们在此还揭示,这些效应的一个主要促成因素似乎是E2F3转录因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/703e/10910284/a99c8269efa0/fx1.jpg

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