成年鳉鱼视网膜中的神经营养因子和Trk神经营养因子受体()。
Neurotrophins and Trk Neurotrophin Receptors in the Retina of Adult Killifish ().
作者信息
Porcino Caterina, Mhalhel Kamel, Briglia Marilena, Cometa Marzio, Guerrera Maria Cristina, Germanà Patrizia Germana, Montalbano Giuseppe, Levanti Maria, Laurà Rosaria, Abbate Francesco, Germanà Antonino, Aragona Marialuisa
机构信息
Zebrafish Neuromorphology Lab, Department of Veterinary Sciences, University of Messina, 98168 Messina, Italy.
出版信息
Int J Mol Sci. 2024 Feb 27;25(5):2732. doi: 10.3390/ijms25052732.
Specific subpopulations of neurons in nerve and sensory systems must be developed and maintained, and this is accomplished in significant part by neurotrophins (NTs) and the signaling receptors on which they act, called tyrosine protein kinase receptors (Trks). The neurotrophins-tyrosine protein kinase receptors (NTs/Trks) system is involved in sensory organ regulation, including the visual system. An NTs/Trks system alteration is associated with neurodegeneration related to aging and diseases, including retinal pathologies. An emergent model in the field of translational medicine, for instance, in aging study, is the annual killifish belonging to the Nothobranchius genus, thanks to its short lifespan. Members of this genus, such as , and humans share a similar retinal stratigraphy. Nevertheless, according to the authors' knowledge, the occurrence and distribution of the NTs/Trks system in the retina of has never been investigated before. Therefore, the present study aimed to localize neurotrophin BDNF, NGF, and NT-3 and TrkA, TrkB, and TrkC receptors in the retina using the immunofluorescence method. The present investigation demonstrates, for the first time, the occurrence of the NTs/Trks system in retina and, consequently, the potential key role of these proteins in the biology and survival of the retinal cells.
神经和感觉系统中的特定神经元亚群必须发育并维持,而这在很大程度上是由神经营养因子(NTs)及其作用的信号受体——酪氨酸蛋白激酶受体(Trks)来完成的。神经营养因子 - 酪氨酸蛋白激酶受体(NTs/Trks)系统参与感觉器官的调节,包括视觉系统。NTs/Trks系统的改变与衰老和疾病相关的神经退行性变有关,包括视网膜病变。例如,在转化医学领域,在衰老研究中,一种新兴的模式是属于鳉属的一年生鳉鱼,这得益于其较短的寿命。该属的成员,如[此处原文缺失具体物种信息],与人类有着相似的视网膜分层结构。然而,据作者所知,此前从未对[此处原文缺失具体物种信息]视网膜中NTs/Trks系统的发生和分布进行过研究。因此,本研究旨在利用免疫荧光法在[此处原文缺失具体物种信息]视网膜中定位神经营养因子脑源性神经营养因子(BDNF)、神经生长因子(NGF)和神经营养因子 - 3(NT - 3)以及TrkA、TrkB和TrkC受体。本研究首次证明了NTs/Trks系统在[此处原文缺失具体物种信息]视网膜中的存在,因此,这些蛋白质在视网膜细胞生物学和存活中的潜在关键作用。
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