Lin Shuh-Yow, Vollrath Melissa A, Mangosing Sara, Shen Jun, Cardenas Elena, Corey David P
Department of Surgery, UC San Diego School of Medicine, La Jolla, CA, USA.
Department of Neurobiology, Harvard Medical School, Boston, MA, USA.
J Physiol. 2016 Feb 15;594(4):895-914. doi: 10.1113/JP271437. Epub 2015 Dec 28.
The zebrafish pinball wizard (pwi) mutant is deaf and blind. The pwi phenotype includes a reduced auditory startle response and reduced visual evoked potentials, suggesting fatigue of synaptic release at ribbon synapses in hair cells and photoreceptors. The gene defective in the pwi mutant is WRB, a protein homologous to the yeast protein Get1, which is involved in the insertion of 'tail-anchored' membrane proteins. Many tail-anchored proteins are associated with synaptic vesicles, and both vesicles and synaptic ribbons are reduced in synaptic regions of hair cells in pwi. Abnormal processing of synaptic vesicle proteins important for ribbon synapses can explain the pwi phenotype.
In a large-scale zebrafish insertional mutagenesis screen, we identified the pinball wizard (pwi) line, which displays a deafness and blindness phenotype. Although the gross morphology and structure of the pwi larval inner ear was near normal, acoustic startle stimuli evoked smaller postsynaptic responses in afferent neurons, which rapidly fatigued. In the retina, similarly, an abnormal electroretinogram suggested reduced transmission at the photoreceptor ribbon synapse. A functional deficit in these specialized synapses was further supported by a reduction of synaptic marker proteins Rab3 and cysteine-string protein (CSP/Dnajc5) in hair cells and photoreceptors, as well as by a reduction of the number of both ribbons and vesicles surrounding the ribbons in hair cells. The pwi gene encodes a homologue of the yeast Get1 and human tryptophan-rich basic (WRB) proteins, which are receptors for membrane insertion of tail-anchored (TA) proteins. We identified more than 100 TA proteins expressed in hair cells, including many synaptic proteins. The expression of synaptobrevin and syntaxin 3, TA proteins essential for vesicle fusion, was reduced in the synaptic layers of mutant retina, consistent with a role for the pwi/WRB protein in TA-protein processing. The WRB protein was located near the apical domain and the ribbons in hair cells, and in the inner segment and the axon of the photoreceptor, consistent with a role in vesicle biogenesis or trafficking. Taken together, our results suggest that WRB plays a critical role in synaptic functions in these two sensory cells, and that disrupted processing of synaptic vesicle TA proteins explains much of the mutant phenotype.
斑马鱼弹球巫师(pwi)突变体耳聋且失明。pwi表型包括听觉惊吓反应减弱和视觉诱发电位降低,提示毛细胞和光感受器中带状突触处突触释放功能疲劳。pwi突变体中缺陷的基因是WRB,它是一种与酵母蛋白Get1同源的蛋白质,参与“尾锚定”膜蛋白的插入。许多尾锚定蛋白与突触小泡相关,在pwi中毛细胞的突触区域,小泡和突触带数量均减少。对带状突触重要的突触小泡蛋白的异常加工可解释pwi表型。
在一项大规模斑马鱼插入诱变筛选中,我们鉴定出弹球巫师(pwi)品系,其表现出耳聋和失明表型。尽管pwi幼虫内耳的大体形态和结构接近正常,但听觉惊吓刺激在传入神经元中诱发的突触后反应较小,且反应迅速疲劳。同样,在视网膜中,异常的视网膜电图提示光感受器带状突触处的传递减少。毛细胞和光感受器中突触标记蛋白Rab3和半胱氨酸串蛋白(CSP/Dnajc5)减少,以及毛细胞中突触带及其周围小泡数量减少,进一步支持了这些特殊突触的功能缺陷。pwi基因编码酵母Get1和人类富含色氨酸的碱性(WRB)蛋白的同源物,它们是尾锚定(TA)蛋白膜插入的受体。我们鉴定出100多种在毛细胞中表达的TA蛋白,包括许多突触蛋白。在突变体视网膜的突触层中,对小泡融合至关重要的TA蛋白突触融合蛋白和 syntaxin 3的表达降低,这与pwi/WRB蛋白在TA蛋白加工中的作用一致。WRB蛋白位于毛细胞的顶端区域和突触带附近,以及光感受器的内段和轴突中,这与它在小泡生物发生或运输中的作用一致。综上所述,我们的结果表明WRB在这两种感觉细胞的突触功能中起关键作用,并且突触小泡TA蛋白加工的破坏解释了大部分突变体表型。