Takahashi Toshio, Koizumi Osamu, Hayakawa Eisuke, Minobe Sumiko, Suetsugu Rinako, Kobayakawa Yoshitaka, Bosch Thomas C G, David Charles N, Fujisawa Toshitaka
Suntory Institute for Bioorganic Research, Osaka, 618-8503, Japan.
Dev Genes Evol. 2009 Mar;219(3):119-29. doi: 10.1007/s00427-009-0272-1. Epub 2009 Jan 30.
From an evolutionary point of view, Hydra has one of the most primitive nervous systems among metazoans. Two different groups of peptides that affect neuron differentiation were identified in a systematic screening of peptide signaling molecules in Hydra. Within the first group of peptides, a neuropeptide, Hym-355, was previously shown to positively regulate neuron differentiation. The second group of peptides encompasses the PW family of peptides that negatively regulate neuron differentiation. In this study, we identified the gene encoding PW peptide preprohormone. Moreover, we made the antibody that specifically recognizes LPW. In situ hybridization and immunohistochemical analyses showed that the PW peptides and the gene encoding them were expressed in ectodermal epithelial cells throughout the body except for the basal disk. The PW peptides are produced by epithelial cells and are therefore termed "epitheliopeptides." Together with Hym-355, the PW family peptides mediate communication between neurons and epithelial cells and thereby maintain a specific density of neurons in Hydra.
从进化的角度来看,水螅拥有后生动物中最原始的神经系统之一。在对水螅中肽信号分子的系统筛选中,鉴定出了两组影响神经元分化的不同肽类。在第一组肽中,一种神经肽Hym - 355先前已被证明能正向调节神经元分化。第二组肽包括负向调节神经元分化的PW肽家族。在本研究中,我们鉴定了编码PW肽前激素原的基因。此外,我们制备了特异性识别LPW的抗体。原位杂交和免疫组织化学分析表明,PW肽及其编码基因在除基盘外的全身外胚层上皮细胞中表达。PW肽由上皮细胞产生,因此被称为“上皮肽”。与Hym - 355一起,PW家族肽介导神经元与上皮细胞之间的通讯,从而维持水螅中神经元的特定密度。