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Abundant corneal gelsolin in Zebrafish and the ‘four-eyed’ fish Anableps anableps: possible analogy with multifunctional lens crystallins

机译:斑马鱼和四眼鱼Anableps anableps中的角膜凝溶胶蛋白丰富:可能与多功能晶状体晶体类似

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摘要

The cornea accumulates high proportions (can be up to 50%) of taxon-specific, water-soluble, cytoplasmic proteins (often enzymes) that have been considered analogous to the multifunctional lens crystallins. We have shown that gelsolin (an actin-severing protein) is the major water-soluble corneal protein of the zebrafish (Danio rerio) and the ‘four-eyed’ fish (Anableps anableps). Each Anableps eye contains one lens, an aquatic ventral cornea with an epithelium comprising 5–7 cell layers, and an air-exposed flatter dorsal cornea with an epithelium comprising >20 cell layers and appreciably enriched with glycogen. Gelsolin accounts for 38 and 21% of the dorsal and ventral cornea, respectively, suggesting that the abundance of gelsolin in the cornea is not incompatible with its function in air. The thicker, glycogen-enriched, air-exposed dorsal cornea may protect against UV irradiation and desiccation. Gelsolin comprises ~50% of the 5 cell-layer thick aquatic corneal epithelium of zebrafish. Reported zebrafish ESTs have indicated the presence of a second gelsolin gene in this species. We show by RT-PCR that the abundant corneal gelsolin (also expressed weakly in lens) (C/L-gelsolin) is also expressed in early development and differs from a ubiquitously expressed gelsolin (U-gelsolin) that is not specialized for cornea. Microinjection tests showed that overexpression of C/L-gelsolin dorsalizes the embryo and can lead to axis duplication, while interruption of C/L-gelsolin expression with a specific morpholino oligonucleotide ventralizes the embryo and interferes with brain and eye development. The evidence that C/L-gelsolin participates in the bone morphogenetic protein (BMP)/Smad dorsal-ventral signaling pathway is reviewed. Finally, we speculate that soluble C/L-gelsolin:actin complexes in the cornea may be analogous to soluble αA:αB-crystallin complexes in the lens. Together, our data are consistent with an analogy between the abundance of gelsolin in fish corneas and taxon-specific multifunctional crystallins in lenses.
机译:角膜积聚高比例(最多可达50%)的类群特异性,水溶性细胞质蛋白(通常是酶),这些蛋白被认为类似于多功能晶状体蛋白。我们已经证明凝溶胶蛋白(一种肌动蛋白切断蛋白)是斑马鱼(Danio rerio)和“四眼”鱼(Anableps anableps)的主要水溶性角膜蛋白。每只Anableps眼睛都包含一个晶状体,一个具有5-7个细胞层的上皮的水生腹角膜和一个具有> 20个细胞层的上皮的空气暴露的扁平背角膜,并且糖原明显富集。凝溶胶蛋白分别占背角和腹角膜的38%和21%,这表明角膜中凝溶胶蛋白的丰度与其在空气中的功能并不相容。较厚的,富含糖原的,暴露于空气的背角膜可防止紫外线辐射和干燥。凝溶胶蛋白占斑马鱼5细胞层厚的水生角膜上皮细胞的〜50%。据报道,斑马鱼的ESTs表明该物种中存在第二个凝溶胶蛋白基因。我们通过RT-PCR显示,丰富的角膜凝溶胶蛋白(在晶状体中也表达较弱)(C / L-凝溶胶蛋白)也在早期发育中表达,并且不同于不专门用于角膜的普遍表达的凝溶胶蛋白(U-凝溶胶蛋白)。显微注射测试表明,C / L-凝溶胶蛋白的过表达使胚胎背痛,并可能导致轴重复,而特定吗啉代寡核苷酸中断C / L-凝溶胶蛋白的表达则使胚胎腹面受累,并干扰大脑和眼睛的发育。本文综述了C / L-凝溶胶蛋白参与骨形态发生蛋白(BMP)/ Smad背-腹信号通路的证据。最后,我们推测角膜中的可溶性C / L-凝溶胶蛋白:肌动蛋白复合物可能类似于晶状体中的可溶性αA:αB-晶状蛋白复合物。总之,我们的数据与鱼角膜中凝溶胶蛋白的丰度与晶状体中特定分类群的多功能结晶蛋白之间的类比一致。

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