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斑马鱼侧线器官的分化和功能需要 Smpx 活性。

Differentiation and functioning of the lateral line organ in zebrafish require Smpx activity.

机构信息

Department of Biosciences, Università degli Studi di Milano, Via Celoria 26, 20133, Milan, Italy.

出版信息

Sci Rep. 2024 Apr 3;14(1):7862. doi: 10.1038/s41598-024-58138-z.

Abstract

The small muscle protein, X-linked (SMPX) gene encodes a cytoskeleton-associated protein, highly expressed in the inner ear hair cells (HCs), possibly regulating auditory function. In the last decade, several mutations in SMPX have been associated with X-chromosomal progressive non syndromic hearing loss in humans and, in line with this, Smpx-deficient animal models, namely zebrafish and mouse, showed significant impairment of inner ear HCs development, maintenance, and functioning. In this work, we uncovered smpx expression in the neuromast mechanosensory HCs of both Anterior and Posterior Lateral Line (ALL and PLL, respectively) of zebrafish larvae and focused our attention on the PLL. Smpx was subcellularly localized throughout the cytoplasm of the HCs, as well as in their primary cilium. Loss-of-function experiments, via both morpholino-mediated gene knockdown and CRISPR/Cas9 F0 gene knockout, revealed that the lack of Smpx led to fewer properly differentiated and functional neuromasts, as well as to a smaller PLL primordium (PLLp), the latter also Smpx-positive. In addition, the kinocilia of Smpx-deficient neuromast HCs appeared structurally and numerically altered. Such phenotypes were associated with a significant reduction in the mechanotransduction activity of the neuromast HCs, in line with their positivity for Smpx. In summary, this work highlights the importance of Smpx in lateral line development and, specifically, in proper HCs differentiation and/or maintenance, and in the mechanotransduction process carried out by the neuromast HCs. Because lateral line HCs are both functionally and structurally analogous to the cochlear HCs, the neuromasts might represent an invaluable-and easily accessible-tool to dissect the role of Smpx in HCs development/functioning and shed light on the underlying mechanisms involved in hearing loss.

摘要

SMPX 基因是一种小肌肉蛋白,X 连锁(SMPX)基因编码一种细胞骨架相关蛋白,在内耳毛细胞(HCs)中高度表达,可能调节听觉功能。在过去的十年中,SMPX 中的几个突变与人类 X 染色体进行性非综合征性听力损失有关,与此一致,Smpx 缺陷的动物模型,即斑马鱼和小鼠,显示出内耳 HCs 发育、维持和功能的显著损伤。在这项工作中,我们揭示了 Smpx 在斑马鱼幼虫的前、后侧线(ALL 和 PLL)的感觉毛细胞中的表达,并将注意力集中在 PLL 上。Smpx 在 HCs 的整个细胞质以及初级纤毛中都有亚细胞定位。通过两种方法进行的功能丧失实验,即通过 morpholino 介导的基因敲低和 CRISPR/Cas9 F0 基因敲除,发现 Smpx 的缺失导致更少的适当分化和功能正常的感觉毛细胞,以及更小的 PLL 原基(PLLp),后者也呈 Smpx 阳性。此外,Smpx 缺陷的感觉毛细胞的动纤毛在结构和数量上都发生了改变。这些表型与感觉毛细胞的机械转导活性显著降低有关,这与它们对 Smpx 的阳性反应一致。总之,这项工作强调了 Smpx 在侧线发育中的重要性,特别是在 HCs 的适当分化和/或维持以及感觉毛细胞的机械转导过程中。由于侧线 HCs 在功能和结构上与耳蜗 HCs 类似,因此感觉毛细胞可能是一种非常有价值的——而且易于获得的工具,可以用于剖析 Smpx 在 HCs 发育/功能中的作用,并阐明听力损失相关的潜在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccea/10991396/a75d29629909/41598_2024_58138_Fig1_HTML.jpg

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