Center of Excellence in Neuroscience of the Université de Montréal-CENUM, Centre de Recherche du Centre Hospitalier de l'Université de Montréal-CRCHUM, University of Montreal, Montreal, Quebec, Canada.
PLoS One. 2013;8(2):e57807. doi: 10.1371/journal.pone.0057807. Epub 2013 Feb 25.
The With No lysine (K) family of serine/threonine kinase (WNK) defines a small family of kinases with significant roles in ion homeostasis. WNK1 has been shown to have different isoforms due to what seems to be largely tissue specific splicing. Here, we used two distinct in situ hybridization riboprobes on developing and adult mouse tissues to make a comparative analysis of Wnk1 and its sensory associated splice isoform, Wnk1/Hsn2. The hybridization signals in developing mouse tissues, which were prepared at embryonic day e10.5 and e12.5, revealed a homogenous expression profile with both probes. At e15.5 and in the newborn mouse, the two probes revealed different expression profiles with prominent signals in nervous system tissues and also other tissues such as kidney, thymus and testis. In adult mouse tissues, the two expression profiles appeared even more restricted to the nervous tissues, kidney, thymus and testis, with no detectable signal in the other tissues. Throughout the nervous system, sensory tissues, as well as in Cornu Ammonis 1 (CA1), CA2 and CA3 areas of the hippocampus, were strongly labeled with both probes. Hybridization signals were also strongly detected in Schwann and supporting satellite cells. Our results show that the expression profiles of Wnk1 isoforms change during the development, and that the expression of the Wnk1 splice variant containing the Hsn2 exon is prominent during developing and in adult mouse tissues, suggesting its important role in the development and maintenance of the nervous system.
无赖氨酸(K)家族丝氨酸/苏氨酸激酶(WNK)定义了一个小的激酶家族,在离子稳态中具有重要作用。WNK1 已被证明具有不同的同工型,这似乎主要是由于组织特异性剪接。在这里,我们使用两种不同的原位杂交核糖探针对发育中和成年小鼠组织进行了比较分析,以研究 Wnk1 及其感觉相关剪接同工型 Wnk1/Hsn2。在发育中的小鼠组织中制备的胚胎第 10.5 天和第 12.5 天的杂交信号显示出两种探针具有均匀的表达谱。在第 15.5 天和新生小鼠中,两种探针显示出不同的表达谱,在神经系统组织以及肾脏、胸腺和睾丸等其他组织中都有明显的信号。在成年小鼠组织中,两种表达谱似乎更局限于神经系统、肾脏、胸腺和睾丸,在其他组织中没有检测到信号。在整个神经系统中,感觉组织以及海马的 Cornu Ammonis 1(CA1)、CA2 和 CA3 区域都被两种探针强烈标记。在 Schwann 和支持卫星细胞中也强烈检测到杂交信号。我们的结果表明,WNK1 同工型的表达谱在发育过程中发生变化,并且包含 Hsn2 外显子的 Wnk1 剪接变体的表达在发育中和成年小鼠组织中都很明显,这表明它在神经系统的发育和维持中具有重要作用。