Department of Physiology, Radboud Institute for Molecular Life Sciences, Radboud University Medical Center, Nijmegen, The Netherlands.
Department of Human Genetics, Radboud Institute for Molecular Life Sciences, Radboud University Medical Center, Nijmegen, The Netherlands.
FASEB J. 2018 Jul;32(7):3653-3668. doi: 10.1096/fj.201701228R. Epub 2018 Feb 8.
Renal tubular cells respond to mechanical stimuli generated by urinary flow to regulate the activity and transcript abundance of important genes for ion handling, cellular homeostasis, and proper renal development. The primary cilium, a mechanosensory organelle, is postulated to regulate this mRNA response. The aim of this study is to reveal the transcriptome changes of tubular epithelia in response to fluid flow and determine the role of primary cilia in this process. Inner-medullary collecting duct (CD) cells were subjected to either static or physiologically relevant fluid flow (∼0.6 dyn/cm). RNA-sequencing analysis of ciliated cells subjected to fluid flow showed up-regulation of 1379 genes and down-regulation of 1294 genes compared with static control cells. Strikingly, only 54 of these genes were identified as gene candidates sensitive to primary cilia sensing of fluid flow, of which 16 were linked to ion or water transport pathways in the CD. Validation by quantitative real-time PCR revealed that only the expression of transferrin receptor, which is involved in iron transport; and tribbles pseudokinase 3, which is involved in insulin signaling, were unequivocally regulated by primary cilia sensing of fluid flow. This study shows that the involvement of primary cilia in ion transport in the collecting duct is exceptionally specific.-Mohammed, S. G., Arjona, F. J., Verschuren, E. H. J., Bakey, Z., Alkema, W., van Hijum, S., Schmidts, M., Bindels, R. J. M., Hoenderop, J. G. J. Primary cilia-regulated transcriptome in the renal collecting duct.
肾单位细胞通过对尿液流动产生的机械刺激做出反应,调节离子处理、细胞内稳态和正常肾脏发育的重要基因的活性和转录丰度。初级纤毛是一种机械感受器,被认为可以调节这种 mRNA 反应。本研究旨在揭示管状上皮细胞对流体流动的转录组变化,并确定初级纤毛在这一过程中的作用。将髓质集合管 (CD) 细胞置于静态或生理相关的流体流动(约 0.6 dyn/cm)中。与静态对照细胞相比,经流体流动处理的纤毛细胞的 RNA 测序分析显示 1379 个基因上调,1294 个基因下调。引人注目的是,这些基因中只有 54 个被鉴定为对流体流动初级纤毛感知敏感的基因候选物,其中 16 个与 CD 中的离子或水转运途径有关。通过定量实时 PCR 验证发现,只有铁转运涉及的转铁蛋白受体和胰岛素信号转导涉及的 tribbles 假激酶 3 的表达受到流体流动初级纤毛感知的明确调节。本研究表明,初级纤毛参与集合管中的离子转运是非常特异的。