Maternal mitochondrial DNA copy number and methylation as possible predictors of pregnancy outcomes in a Michigan pregnancy cohort.

IF 4.8 Q1 GENETICS & HEREDITY Environmental Epigenetics Pub Date : 2024-10-29 eCollection Date: 2024-01-01 DOI:10.1093/eep/dvae021
Maria E Cinzori, Megan Nicol, Alisa L Dewald, Jaclyn M Goodrich, Zheng Zhou, Joseph C Gardiner, Jean M Kerver, Dana C Dolinoy, Nicole Talge, Rita S Strakovsky
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Abstract

Little is understood about the roles of mitochondria in pregnancy-related adaptations. Therefore, we evaluated associations of maternal early-to-mid pregnancy mitochondrial DNA copy number (mtDNAcn) and mtDNA methylation with birth size and gestational length. Michigan women (n = 396) provided venous bloodspots at median 11 weeks gestation to quantify mtDNAcn marker NADH-ubiquinone oxidoreductase chain 1 (ND1) using real-time quantitative PCR and mtDNA methylation at several regions within four mitochondria-specific genes using pyrosequencing: MTTF (mitochondrially encoded tRNA phenylalanine), DLOOP (D-loop promoter region, heavy strand), CYTB (cytochrome b), and LDLR (D-loop promoter region, light strand). We abstracted gestational length and birthweight from birth certificates and calculated birthweight z-scores using published references. We used multivariable linear regression to evaluate associations of mtDNAcn and mtDNA methylation with birthweight and birthweight z-scores. Cox Proportional Hazards Models (PHMs) and quantile regression characterized associations of mitochondrial measures with gestational length. We also considered differences by fetal sex. Using linear regression and Cox PHMs, mtDNAcn was not associated with birth outcomes, whereas associations of mtDNA methylation with birth outcomes were inconsistent. However, using quantile regression, mtDNAcn was associated with shorter gestation in female newborns at the upper quantiles of gestational length, but with longer gestational length in males at the lower quantiles of gestational length. Maternal LDLR, DLOOP, and MTTF methylation was associated with longer gestational length in females at the upper quantiles and in males at lower gestational length quantiles. Maternal mtDNAcn and mtDNA methylation were associated with gestational length in babies born comparatively early or late, which could reflect adaptations in mitochondrial processes that regulate the length of gestation.

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在密歇根妊娠队列中,母亲线粒体DNA拷贝数和甲基化作为妊娠结局的可能预测因子。
人们对线粒体在妊娠相关适应中的作用知之甚少。因此,我们评估了母体妊娠早中期线粒体DNA拷贝数(mtDNAcn)和mtDNA甲基化与出生尺寸和妊娠长度的关系。密歇根妇女(n = 396)在妊娠中位11周提供静脉血点,使用实时定量PCR定量mtDNAcn标记物nadh -泛醌氧化还原酶链1 (ND1),并使用磷酸测序法在四个线粒体特异性基因的几个区域进行mtDNA甲基化:MTTF(线粒体编码tRNA苯丙氨酸)、DLOOP (d环启动子区,重链)、CYTB(细胞色素b)和LDLR (d环启动子区,轻链)。我们从出生证明中提取妊娠长度和出生体重,并使用已发表的参考文献计算出生体重z分数。我们使用多变量线性回归来评估mtDNAcn和mtDNA甲基化与出生体重和出生体重z分数的关系。Cox比例风险模型(PHMs)和分位数回归表征了线粒体测量与妊娠长度的相关性。我们还考虑了胎儿性别的差异。使用线性回归和Cox PHMs, mtDNA甲基化与出生结局无关,而mtDNA甲基化与出生结局的关联不一致。然而,使用分位数回归,mtDNAcn与妊娠长度上分位数的女性新生儿妊娠期较短有关,而与妊娠长度下分位数的男性新生儿妊娠期较长有关。母体LDLR、DLOOP和MTTF甲基化与较高分位数的女性和较低分位数的男性的妊娠长度较长有关。母亲mtDNAcn和mtDNA甲基化与较早或较晚出生的婴儿的妊娠长度有关,这可能反映了调节妊娠长度的线粒体过程的适应性。
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来源期刊
Environmental Epigenetics
Environmental Epigenetics GENETICS & HEREDITY-
CiteScore
6.50
自引率
5.30%
发文量
0
审稿时长
17 weeks
期刊最新文献
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