Wörsdörfer Philipp, Bosen Felicitas, Gebhardt Martina, Russ Nicole, Zimmermann Katrin, Komla Kessie David, Sekaran Thileepan, Egert Angela, Ergün Süleyman, Schorle Hubert, Pfeifer Alexander, Edenhofer Frank, Willecke Klaus
Institute of Anatomy and Cell Biology, University of Würzburg, Würzburg, Germany.
Institute of Reconstructive Neurobiology, University of Bonn Medical School, Bonn, Germany.
Stem Cells. 2017 Apr;35(4):859-871. doi: 10.1002/stem.2545. Epub 2016 Dec 20.
Gap junctional intercellular communication (GJIC) has been suggested to be involved in early embryonic development but the actual functional role remained elusive. Connexin (Cx) 43 and Cx45 are co-expressed in embryonic stem (ES) cells, form gap junctions and are considered to exhibit adhesive function and/or to contribute to the establishment of defined communication compartments. Here, we describe the generation of Cx43/Cx45-double deficient mouse ES cells to achieve almost complete breakdown of GJIC. Cre-loxP induced deletion of both, Cx43 and Cx45, results in a block of differentiation in embryoid bodies (EBs) without affecting pluripotency marker expression and proliferation in ES cells. We demonstrate that GJIC-incompetent ES cells fail to form primitive endoderm in EB cultures, representing the inductive key step of further differentiation events. Lentiviral overexpression of either Cx43 or Cx45 in Cx43/45 mutants rescued the observed phenotype, confirming the specificity and indicating a partially redundant function of both connexins. Upon differentiation GJIC-incompetent ES cells exhibit a strikingly altered subcellular localization pattern of the transcription factor NFATc3. Control EBs exhibit significantly more activated NFATc3 in cellular nuclei than mutant EBs suggesting that Cx-mediated communication is needed for synchronized NFAT activation to induce orchestrated primitive endoderm formation. Moreover, pharmacological inhibition of NFATc3 activation by Cyclosporin A, a well-described inhibitor of calcineurin, phenocopies the loss of GJIC in control cells. Stem Cells 2017;35:859-871.
间隙连接细胞间通讯(GJIC)被认为参与早期胚胎发育,但其实际功能作用仍不清楚。连接蛋白(Cx)43和Cx45在胚胎干细胞(ES细胞)中共表达,形成间隙连接,并被认为具有黏附功能和/或有助于建立特定的通讯区室。在此,我们描述了Cx43/Cx45双缺陷小鼠ES细胞的产生,以实现GJIC几乎完全破坏。Cre-loxP诱导的Cx43和Cx45的缺失导致胚状体(EB)分化受阻,而不影响ES细胞中多能性标志物的表达和增殖。我们证明,缺乏GJIC的ES细胞在EB培养物中无法形成原始内胚层,这是进一步分化事件的诱导关键步骤。在Cx43/45突变体中慢病毒过表达Cx43或Cx45可挽救观察到的表型,证实了特异性,并表明两种连接蛋白具有部分冗余功能。在分化过程中,缺乏GJIC的ES细胞表现出转录因子NFATc3显著改变的亚细胞定位模式。对照EB在细胞核中显示出比突变EB更多的活化NFATc3,这表明Cx介导的通讯对于同步NFAT激活以诱导协调的原始内胚层形成是必需的。此外,环孢素A(一种众所周知的钙调神经磷酸酶抑制剂)对NFATc3激活的药理抑制模拟了对照细胞中GJIC的丧失。《干细胞》2017年;35:859 - 871。