Neuhaus N, Yoon J, Terwort N, Kliesch S, Seggewiss J, Huge A, Voss R, Schlatt S, Grindberg R V, Schöler H R
Centre of Reproductive Medicine and Andrology, University Hospital of Münster, Domagkstrasse 11, 48149 Münster , Germany.
Department of Cell and Developmental Biology, Max Planck Institute for Molecular Biomedicine, Röntgenstrasse 20, 48149 Münster , Germany.
Mol Hum Reprod. 2017 Feb 10;23(2):79-90. doi: 10.1093/molehr/gaw079.
Is the molecular profile of human spermatogonia homogeneous or heterogeneous when analysed at the single-cell level?
Heterogeneous expression profiles may be a key characteristic of human spermatogonia, supporting the existence of a heterogeneous stem cell population.
Despite the fact that many studies have sought to identify specific markers for human spermatogonia, the molecular fingerprint of these cells remains hitherto unknown.
STUDY DESIGN, SIZE, DURATION: Testicular tissues from patients with spermatogonial arrest (arrest, n = 1) and with qualitatively normal spermatogenesis (normal, n = 7) were selected from a pool of 179 consecutively obtained biopsies. Gene expression analyses of cell populations and single-cells (n = 105) were performed. Two OCT4-positive individual cells were selected for global transcriptional capture using shallow RNA-seq. Finally, expression of four candidate markers was assessed by immunohistochemistry.
PARTICIPANTS/MATERIALS, SETTING, METHODS: Histological analysis and blood hormone measurements for LH, FSH and testosterone were performed prior to testicular sample selection. Following enzymatic digestion of testicular tissues, differential plating and subsequent micromanipulation of individual cells was employed to enrich and isolate human spermatogonia, respectively. Endpoint analyses were qPCR analysis of cell populations and individual cells, shallow RNA-seq and immunohistochemical analyses.
Unexpectedly, single-cell expression data from the arrest patient (20 cells) showed heterogeneous expression profiles. Also, from patients with normal spermatogenesis, heterogeneous expression patterns of undifferentiated (OCT4, UTF1 and MAGE A4) and differentiated marker genes (BOLL and PRM2) were obtained within each spermatogonia cluster (13 clusters with 85 cells). Shallow RNA-seq analysis of individual human spermatogonia was validated, and a spermatogonia-specific heterogeneous protein expression of selected candidate markers (DDX5, TSPY1, EEF1A1 and NGN3) was demonstrated.
LIMITATIONS, REASONS FOR CAUTION: The heterogeneity of human spermatogonia at the RNA and protein levels is a snapshot. To further assess the functional meaning of this heterogeneity and the dynamics of stem cell populations, approaches need to be developed to facilitate the repeated analysis of individual cells.
Our data suggest that heterogeneous expression profiles may be a key characteristic of human spermatogonia, supporting the model of a heterogeneous stem cell population. Future studies will assess the dynamics of spermatogonial populations in fertile and infertile patients.
RNA-seq data is published in the GEO database: GSE91063.
STUDY FUNDING/COMPETING INTEREST(S): This work was supported by the Max Planck Society and the Deutsche Forschungsgemeinschaft DFG-Research Unit FOR 1041 Germ Cell Potential (grant numbers SCHO 340/7-1, SCHL394/11-2). The authors declare that there is no conflict of interest.
在单细胞水平分析时,人类精原细胞的分子特征是均一的还是异质的?
异质表达谱可能是人类精原细胞的一个关键特征,支持异质干细胞群体的存在。
尽管许多研究试图鉴定人类精原细胞的特异性标志物,但这些细胞的分子指纹迄今仍不清楚。
研究设计、规模、持续时间:从179例连续获取的活检样本中,选取了精原细胞停滞患者(停滞组,n = 1)和精子发生质量正常患者(正常组,n = 7)的睾丸组织。对细胞群体和单细胞(n = 105)进行了基因表达分析。选择了两个OCT4阳性的单个细胞,使用浅层RNA测序进行全局转录捕获。最后,通过免疫组织化学评估了四种候选标志物的表达。
参与者/材料、设置、方法:在选择睾丸样本之前,进行了组织学分析以及LH、FSH和睾酮的血液激素测量。对睾丸组织进行酶消化后,采用差异铺板和随后对单个细胞的显微操作,分别富集和分离人类精原细胞。终点分析包括细胞群体和单个细胞的qPCR分析、浅层RNA测序和免疫组织化学分析。
出乎意料的是,停滞患者(20个细胞)的单细胞表达数据显示出异质表达谱。此外,在正常精子发生患者中,每个精原细胞簇(13个簇,共85个细胞)内未分化(OCT4、UTF1和MAGE A4)和分化标志物基因(BOLL和PRM2)均呈现异质表达模式。对单个人类精原细胞的浅层RNA测序分析得到了验证,并证明了所选候选标志物(DDX5、TSPY1、EEF1A1和NGN3)存在精原细胞特异性的异质蛋白表达。
局限性、谨慎原因:人类精原细胞在RNA和蛋白质水平的异质性只是一个快照。为了进一步评估这种异质性的功能意义以及干细胞群体的动态变化,需要开发便于对单个细胞进行重复分析的方法。
我们的数据表明,异质表达谱可能是人类精原细胞的一个关键特征,支持异质干细胞群体模型。未来的研究将评估生育和不育患者中精原细胞群体的动态变化。
RNA测序数据已发表在GEO数据库中:GSE91063。
研究资金/利益冲突:本研究得到了马克斯·普朗克学会和德国研究基金会DFG研究单元FOR 1041生殖细胞潜能(资助编号SCHO 340/7 - 1,SCHL394/11 - 2)的支持。作者声明不存在利益冲突。