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评估人类足月胎盘中的 DNA 甲基化和基因表达变异性。

Evaluating DNA methylation and gene expression variability in the human term placenta.

机构信息

Department of Medical Genetics, University of British Columbia, Child & Family Research Institute, 950 West 28th Ave.,Vancouver, BC, Canada.

出版信息

Placenta. 2010 Dec;31(12):1070-7. doi: 10.1016/j.placenta.2010.09.011. Epub 2010 Oct 14.

Abstract

UNLABELLED

Obtaining representative samples from a term placenta for gene-expression studies is confounded by both within placental heterogeneity and sampling effects such as sample location and processing time. Epigenetic processes involved in the regulation of gene expression, such as DNA methylation, may show similar variability, but are less well studied. Therefore, we investigated the nature of within and between- placenta variation in gene expression and DNA methylation of genes that were chosen for being differentially expressed or methylated by cell type within the placenta.

METHODS

In total, two or more samples from each of 38 normal term placentae were utilized. The expression levels of CDH1, CDH11, ID2, PLAC1 and KISS1 were evaluated by real-time PCR. DNA methylation levels of LINE1 elements and CpGs within the promoter regions of KISS1, PTPN6, CASP8, and APC were similarly quantified by pyrosequencing.

RESULTS

Despite considerable sample-to-sample variability within each placenta, the within-placenta correlation for both gene expression and methylation was significant for each studied gene. Most of this variability was not due to sample location. However, between placental differences in gene expression were inflated by the dramatic effect of processing time (0-24 h) on mRNA levels, particularly for PLAC1 and KISS1 (both expressed in the apical syncytiotrophoblast). In contrast, DNA methylation levels remained relatively constant over this same time period.

CONCLUSION

Due to extensive site-to-site variability, multiple sampled sites are needed to accurately represent a placenta for molecular studies. Furthermore, mRNA quantitation of some genes may be hampered by its rapid degradation post-delivery (and possibly perinatally) and thus processing time should be considered in such analyses. Within-placenta correlations in expression and methylation from unrelated genes raise the possibility that methylation and expression variation may potentially reflect cell composition differences between samples rather than true differences occurring at the cellular level.

摘要

未加说明

从足月胎盘中获取代表样本进行基因表达研究受到胎盘内异质性和采样效应的影响,如样本位置和处理时间。参与基因表达调控的表观遗传过程,如 DNA 甲基化,可能也存在类似的变异性,但研究较少。因此,我们研究了基因表达和 DNA 甲基化的胎盘内和胎盘间变异性的性质,这些基因是根据其在胎盘内不同细胞类型的表达或甲基化选择的。

方法

总共利用了 38 个正常足月胎盘的每个胎盘的两个或更多样本。通过实时 PCR 评估 CDH1、CDH11、ID2、PLAC1 和 KISS1 的表达水平。通过焦磷酸测序同样定量了 LINE1 元件和 KISS1、PTPN6、CASP8 和 APC 启动子区域内 CpG 的 DNA 甲基化水平。

结果

尽管每个胎盘内的样本间存在相当大的差异,但每个研究基因的基因表达和甲基化的胎盘内相关性都是显著的。这种变异性的大部分不是由于样本位置造成的。然而,基因表达的胎盘间差异因处理时间(0-24 小时)对 mRNA 水平的巨大影响而膨胀,特别是对于 PLAC1 和 KISS1(均在顶端合体滋养层中表达)。相比之下,在同一时间段内,DNA 甲基化水平相对保持不变。

结论

由于存在广泛的位点间变异性,需要对多个采样点进行采样,才能准确代表胎盘进行分子研究。此外,一些基因的 mRNA 定量可能会因分娩后(可能在围产期)的快速降解而受到阻碍,因此在进行此类分析时应考虑处理时间。来自无关基因的表达和甲基化的胎盘内相关性表明,甲基化和表达的变异性可能反映了样本之间的细胞组成差异,而不是真正发生在细胞水平上的差异。

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