Department of Earth and Environmental Sciences, POLARIS Research Center, University of Milano-Bicocca, Milan, Italy.
Dipartimento di Biotecnologie Mediche e Medicina Traslazionale, Università degli Studi di Milano, Milan, Italy.
J Neurosci Res. 2023 Aug;101(8):1345-1359. doi: 10.1002/jnr.25197. Epub 2023 Apr 9.
Classical dynamins (DNMs) are GTPase proteins engaged in endocytosis, a fundamental process for cargo internalization from the plasma membrane. In mammals, three DNM genes are present with different expression patterns. DNM1 is expressed at high levels in neurons, where it takes place in the recycling of synaptic vesicles; DNM2 is ubiquitously expressed, while DNM3 is found in the brain and in the testis. Due to the conservation of genes in comparison to mammals, we took advantage of a zebrafish model for functional characterization of dnm1a, ortholog of mammalian DNM1. Our data strongly demonstrated that dnm1a has a nervous tissue-specific expression pattern and plays a role in the formation of both axon and synapse. This is the first in vivo study that collects evidence about the effects of dnm1a loss of function in zebrafish, thus providing a new excellent model to be used in different scientific fields.
经典的动力蛋白(DNMs)是参与胞吞作用的 GTP 酶蛋白,胞吞作用是从质膜内吞货物的基本过程。在哺乳动物中,存在三个具有不同表达模式的 DNM 基因。DNM1 在神经元中高表达,在那里它参与突触小泡的再循环;DNM2 广泛表达,而 DNM3 则存在于大脑和睾丸中。由于与哺乳动物相比基因具有保守性,我们利用斑马鱼模型对哺乳动物 DNM1 的同源物 dnm1a 的功能进行了特征分析。我们的数据强烈表明,dnm1a 具有神经组织特异性表达模式,并在轴突和突触的形成中发挥作用。这是首次在体内研究中收集有关 dnm1a 在斑马鱼中功能丧失的影响的证据,从而提供了一个新的优秀模型,可用于不同的科学领域。