The role of mip in the development of lens in zebrafish

IF 1 4区 生物学 Q4 DEVELOPMENTAL BIOLOGY
Mingyan He , Guangkai Zhou , Qinghong Lin , Nan Zhou
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引用次数: 0

Abstract

Major intrinsic protein (MIP) functions as a water channel and a cell-junction molecule in the vertebrate eye lens. The pathogenic mechanism behind the loss of MIP function in the lens, which leads to degraded optical quality and cataract formation, is still unclear. In this study, a zebrafish model with the mipb mutant was produced. The expression of mipb mRNA and protein was dramatically reduced in the mutant. Immunological analysis reveals that loss function of mip leads to the diffuse distribution of ZL-1 in the mutant lens. Furthermore, in situ hybridization reveals that mip knockout results in a decrease in the transcripts of beaded filament structural protein 2 (Bfsp2) in the lens. Histology study shows that lens fibers in the mutants are less uniform in shape and the fiber arrangement is disrupted. The presented data provides evidence for the essential role of mipb in the development of lens fibers. The absence of mipb during lens formation is likely to result in aberrant lens fiber formation and impaired lens function.

mip在斑马鱼晶状体发育中的作用。
主要内在蛋白(MIP)在脊椎动物晶状体中起着水通道和细胞连接分子的作用。晶状体MIP功能丧失导致光学质量下降和白内障形成的致病机制尚不清楚。在这项研究中,产生了一个具有mipb突变体的斑马鱼模型。mipbmRNA和蛋白的表达在突变体中显著降低。免疫学分析表明,mip功能的丧失导致ZL-1在突变晶状体中的扩散分布。此外,原位杂交显示,mip敲除导致晶状体中珠丝结构蛋白2(Bfsp2)的转录物减少。组织学研究表明,突变体中的晶状体纤维形状不太均匀,纤维排列被破坏。所提供的数据为mipb在晶状体纤维发育中的重要作用提供了证据。晶状体形成过程中mibb的缺失可能导致晶状体纤维形成异常和晶状体功能受损。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Gene Expression Patterns
Gene Expression Patterns 生物-发育生物学
CiteScore
2.30
自引率
0.00%
发文量
42
审稿时长
35 days
期刊介绍: Gene Expression Patterns is devoted to the rapid publication of high quality studies of gene expression in development. Studies using cell culture are also suitable if clearly relevant to development, e.g., analysis of key regulatory genes or of gene sets in the maintenance or differentiation of stem cells. Key areas of interest include: -In-situ studies such as expression patterns of important or interesting genes at all levels, including transcription and protein expression -Temporal studies of large gene sets during development -Transgenic studies to study cell lineage in tissue formation
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