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子宫内膜容受性再探:对组织细胞异质性进行调整的子宫内膜转录组。

Endometrial receptivity revisited: endometrial transcriptome adjusted for tissue cellular heterogeneity.

机构信息

Competence Centre on Health Technologies, Tartu, Estonia.

Department of Obstetrics and Gynecology, Institute of Clinical Medicine, University of Tartu, Tartu, Estonia.

出版信息

Hum Reprod. 2018 Nov 1;33(11):2074-2086. doi: 10.1093/humrep/dey301.

Abstract

STUDY QUESTION

Does cellular composition of the endometrial biopsy affect the gene expression profile of endometrial whole-tissue samples?

SUMMARY ANSWER

The differences in epithelial and stromal cell proportions in endometrial biopsies modify the whole-tissue gene expression profiles and affect the results of differential expression analyses.

WHAT IS ALREADY KNOWN

Each cell type has its unique gene expression profile. The proportions of epithelial and stromal cells vary in endometrial tissue during the menstrual cycle, along with individual and technical variation due to the method and tools used to obtain the tissue biopsy.

STUDY DESIGN, SIZE, DURATION: Using cell-population specific transcriptome data and computational deconvolution approach, we estimated the epithelial and stromal cell proportions in whole-tissue biopsies taken during early secretory and mid-secretory phases. The estimated cellular proportions were used as covariates in whole-tissue differential gene expression analysis. Endometrial transcriptomes before and after deconvolution were compared and analysed in biological context.

PARTICIPANTS/MATERIAL, SETTING, METHODS: Paired early- and mid-secretory endometrial biopsies were obtained from 35 healthy, regularly cycling, fertile volunteers, aged 23-36 years, and analysed by RNA sequencing. Differential gene expression analysis was performed using two approaches. In one of them, computational deconvolution was applied as an intermediate step to adjust for the proportions of epithelial and stromal cells in the endometrial biopsy. The results were then compared to conventional differential expression analysis. Ten paired endometrial samples were analysed with qPCR to validate the results.

MAIN RESULTS AND THE ROLE OF CHANCE

The estimated average proportions of stromal and epithelial cells in early secretory phase were 65% and 35%, and during mid-secretory phase, 46% and 54%, respectively, correlating well with the results of histological evaluation (r = 0.88, P = 1.1 × 10-6). Endometrial tissue transcriptomic analysis showed that approximately 26% of transcripts (n = 946) differentially expressed in receptive endometrium in cell-type unadjusted analysis also remain differentially expressed after adjustment for biopsy cellular composition. However, the other 74% (n = 2645) become statistically non-significant after adjustment for biopsy cellular composition, underlining the impact of tissue heterogeneity on differential expression analysis. The results suggest new mechanisms involved in endometrial maturation, involving genes like LINC01320, SLC8A1 and GGTA1P, described for the first time in context of endometrial receptivity.

LARGE-SCALE DATA: The RNA-seq data presented in this study is deposited in the Gene Expression Omnibus database with accession number GSE98386.

LIMITATIONS REASONS FOR CAUTION

Only dominant endometrial cell types were considered in gene expression profile deconvolution; however, other less frequent endometrial cell types also contribute to the whole-tissue gene expression profile.

WIDER IMPLICATIONS OF THE FINDINGS

The better understanding of molecular processes during transition from pre-receptive to receptive endometrium serves to improve the effectiveness and personalization of assisted reproduction protocols. Biopsy cellular composition should be taken into account in future endometrial 'omics' studies, where tissue heterogeneity could potentially influence the results.

STUDY FUNDING/COMPETING INTEREST(S): This study was funded by: Estonian Ministry of Education and Research (grant IUT34-16); Enterprise Estonia (EU48695); the EU-FP7 Eurostars program (NOTED, EU41564); the EU-FP7 Marie Curie Industry-Academia Partnerships and Pathways (SARM, EU324509); Horizon 2020 innovation program (WIDENLIFE, EU692065); MSCA-RISE-2015 project MOMENDO (No 691058) and the Miguel Servet Program Type I of Instituto de Salud Carlos III (CP13/00038); Spanish Ministry of Economy, Industry and Competitiveness (MINECO) and European Regional Development Fund (FEDER): grants RYC-2016-21199 and ENDORE SAF2017-87526. Authors confirm no competing interests.

摘要

研究问题

子宫内膜活检的细胞组成是否会影响子宫内膜全组织样本的基因表达谱?

总结答案

子宫内膜活检中上皮细胞和间质细胞比例的差异会改变全组织基因表达谱,并影响差异表达分析的结果。

已知内容

每种细胞类型都有其独特的基因表达谱。在月经周期中,子宫内膜组织中上皮细胞和间质细胞的比例会发生变化,并且由于获得组织活检的方法和工具的个体和技术差异,也会出现差异。

研究设计、规模、持续时间:使用细胞群体特异性转录组数据和计算去卷积方法,我们估计了在早期分泌期和中期分泌期采集的全组织活检中的上皮细胞和间质细胞的比例。估计的细胞比例被用作全组织差异基因表达分析的协变量。比较并分析了去卷积前后的子宫内膜转录组,并在生物学背景下进行了分析。

参与者/材料、设置、方法:从 35 名年龄在 23-36 岁之间、月经周期正常、有生育能力的健康志愿者中获得了配对的早期和中期分泌期子宫内膜活检,并进行了 RNA 测序。使用两种方法进行差异基因表达分析。其中一种方法是将计算去卷积作为中间步骤,以调整子宫内膜活检中上皮细胞和间质细胞的比例。然后将结果与传统的差异表达分析进行比较。对 10 对子宫内膜样本进行 qPCR 分析以验证结果。

主要结果和机会的作用

早期分泌期估计的间质和上皮细胞平均比例分别为 65%和 35%,而在中期分泌期,分别为 46%和 54%,与组织学评估的结果非常吻合(r = 0.88,P = 1.1×10-6)。子宫内膜组织转录组分析显示,在无细胞类型调整的分析中,约 26%(n = 946)的转录本(n = 946)在接受性子宫内膜中差异表达,在调整活检细胞组成后仍差异表达。然而,在调整活检细胞组成后,另外 74%(n = 2645)的转录本变得统计学上不显著,这强调了组织异质性对差异表达分析的影响。结果表明,在涉及 LINC01320、SLC8A1 和 GGTA1P 等基因的子宫内膜成熟新机制中,这些基因首次在子宫内膜接受性方面进行了描述。

大规模数据

本研究中提供的 RNA-seq 数据已存入基因表达综合数据库,注册号为 GSE98386。

局限性/谨慎原因:仅考虑了基因表达谱去卷积中的主导子宫内膜细胞类型;然而,其他较少见的子宫内膜细胞类型也会影响全组织基因表达谱。

更广泛的影响

更好地了解从预接受期到接受期的过渡期间的分子过程有助于提高辅助生殖协议的有效性和个性化。在未来的子宫内膜“组学”研究中,应该考虑活检细胞组成,因为组织异质性可能会影响结果。

研究资助/利益冲突:本研究由以下机构资助:爱沙尼亚教育和研究部(IUT34-16);企业爱沙尼亚(EU48695);欧盟 FP7 Eurostars 计划(NOTED,EU41564);欧盟 FP7 Marie Curie 产业学术伙伴关系和途径(SARM,EU324509);地平线 2020 创新计划(WIDENLIFE,EU692065);MSCA-RISE-2015 项目 MOMENDO(No 691058)和 Instituto de Salud Carlos III 的 Miguel Servet 计划类型 I(CP13/00038);西班牙经济、工业和竞争力部(MINECO)和欧洲区域发展基金(FEDER):授予 RYC-2016-21199 和 ENDORE SAF2017-87526。作者确认没有利益冲突。

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