Schrade Anja, Kyrönlahti Antti, Akinrinade Oyediran, Pihlajoki Marjut, Häkkinen Merja, Fischer Simon, Alastalo Tero-Pekka, Velagapudi Vidya, Toppari Jorma, Wilson David B, Heikinheimo Markku
Children's Hospital (A.S., A.K., O.A., M.P., T.-P.A., M.H.), University of Helsinki, Helsinki 00014, Finland; Institute of Biomedicine (O.A.), University of Helsinki, Helsinki 00014, Finland; School of Pharmacy (M.H.), University of Eastern Finland, Kuopio 70211, Finland; Institute of Applied Biotechnology (S.F.), University of Applied Sciences Biberach, Biberach 88400, Germany; Metabolomics Unit (V.V.), Institute for Molecular Medicine Finland, University of Helsinki 00014, Helsinki, Finland; Departments of Physiology and Pediatrics (J.T.), University of Turku, Turku 20520, Finland; and Departments of Pediatrics (A.S., M.P., D.B.W., M.H.) and Developmental Biology (D.B.W.), Washington University in St. Louis, St. Louis, Missouri 63110.
Endocrinology. 2015 May;156(5):1860-72. doi: 10.1210/en.2014-1931. Epub 2015 Feb 10.
Transcription factor GATA4 is expressed in somatic cells of the mammalian testis. Gene targeting studies in mice have shown that GATA4 is essential for proper differentiation and function of Sertoli cells. The role of GATA4 in Leydig cell development, however, remains controversial, because targeted mutagenesis experiments in mice have not shown a consistent phenotype, possibly due to context-dependent effects or compensatory responses. We therefore undertook a reductionist approach to study the function of GATA4 in Leydig cells. Using microarray analysis and quantitative RT-PCR, we identified a set of genes that are down-regulated or up-regulated after small interfering RNA (siRNA)-mediated silencing of Gata4 in the murine Leydig tumor cell line mLTC-1. These same genes were dysregulated when primary cultures of Gata4(flox/flox) adult Leydig cells were subjected to adenovirus-mediated cre-lox recombination in vitro. Among the down-regulated genes were enzymes of the androgen biosynthetic pathway (Cyp11a1, Hsd3b1, Cyp17a1, and Srd5a). Silencing of Gata4 expression in mLTC-1 cells was accompanied by reduced production of sex steroid precursors, as documented by mass spectrometric analysis. Comprehensive metabolomic analysis of GATA4-deficient mLTC-1 cells showed alteration of other metabolic pathways, notably glycolysis. GATA4-depleted mLTC-1 cells had reduced expression of glycolytic genes (Hk1, Gpi1, Pfkp, and Pgam1), lower intracellular levels of ATP, and increased extracellular levels of glucose. Our findings suggest that GATA4 plays a pivotal role in Leydig cell function and provide novel insights into metabolic regulation in this cell type.
转录因子GATA4在哺乳动物睾丸的体细胞中表达。对小鼠的基因靶向研究表明,GATA4对于支持细胞的正常分化和功能至关重要。然而,GATA4在睾丸间质细胞发育中的作用仍存在争议,因为小鼠中的靶向诱变实验并未显示出一致的表型,这可能是由于背景依赖性效应或代偿性反应所致。因此,我们采用了一种简化方法来研究GATA4在睾丸间质细胞中的功能。通过微阵列分析和定量RT-PCR,我们鉴定出一组基因,这些基因在小鼠睾丸间质细胞瘤细胞系mLTC-1中经小干扰RNA(siRNA)介导沉默Gata4后被下调或上调。当Gata4(flox/flox)成年睾丸间质细胞的原代培养物在体外进行腺病毒介导的cre-lox重组时,这些相同的基因也发生了失调。下调的基因包括雄激素生物合成途径的酶(Cyp11a1、Hsd3b1、Cyp17a1和Srd5a)。质谱分析表明,mLTC-1细胞中Gata4表达的沉默伴随着性类固醇前体产量的降低。对GATA4缺陷型mLTC-1细胞的综合代谢组学分析显示其他代谢途径发生了改变,尤其是糖酵解。GATA4缺失的mLTC-1细胞中糖酵解基因(Hk1、GpiI、Pfkp和Pgam1)的表达降低,细胞内ATP水平降低,细胞外葡萄糖水平升高。我们的研究结果表明,GATA4在睾丸间质细胞功能中起关键作用,并为这种细胞类型的代谢调节提供了新的见解。