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通过对单基因敲除和双基因敲除小鼠的行为分析揭示的LNX1和LNX2的不同神经元功能。

Differential neuronal functions of LNX1 and LNX2 revealed by behavioural analysis in single and double knockout mice.

作者信息

Cioccarelli Laura, Lenihan Joan A, Erwin Leah G, Young Paul W

机构信息

School of Biochemistry and Cell Biology, University College Cork, Cork, Ireland.

出版信息

Behav Brain Funct. 2025 Apr 23;21(1):13. doi: 10.1186/s12993-025-00276-z.

Abstract

BACKGROUND

Ligand of NUMB protein-X 1 (LNX1) and LNX2 proteins are closely related PDZ domain-containing E3 ubiquitin ligases that interact with and potentially modulate numerous synaptic and neurodevelopmentally important proteins. While both LNX1 and LNX2 are expressed in neurons, it is noteworthy that neuronal LNX1 isoforms lack the catalytic domain responsible for ubiquitination of substrates. Thus, the shared interaction partners of LNX1 and LNX2 might be differentially regulated by these proteins, with LNX1 acting as a stabilizing scaffold while LNX2 may promote their ubiquitination and degradation. Despite the identification of many LNX interacting proteins and substrates, our understanding of the distinct in vivo functions of LNX1 and LNX2 remains very incomplete.

RESULTS

We previously reported that mice lacking both LNX1 in the central nervous system and LNX2 globally exhibit decreased anxiety-related behaviour. Here we significantly extend this work by examining anxiety-related and risk-taking behaviours in Lnx1 and Lnx2 single knockout animals for the first time and by analysing previously unexplored aspects of behaviour in both single and double knockout animals. While the absence of both LNX1 and LNX2 contributes to the decreased anxiety-related behaviour of double knockout animals in the open field and elevated plus maze tests, the elimination of LNX2 plays a more prominent role in altered behaviour in the dark-light emergence test and wire beam bridge risk-taking paradigms. By contrast, Lnx knockout mice of all genotypes were indistinguishable from wildtype animals in the marble burying, stress-induced hyperthermia and novel object recognition tests. Analysis of the ultrasonic vocalizations of pups following maternal separation revealed significant differences in call properties and vocal repertoire for Lnx1 and Lnx1;Lnx2 double knockout animals. Finally, decreased body weight previously noted in double knockout animals could be attributed largely to Lnx1 gene knockout.

CONCLUSIONS

These results identify specific roles of LNX1 and LNX2 proteins in modulating distinct aspects of anxiety and risk-taking behaviour and social communication in mice. They also reveal an unexpected role for neuronally expressed LNX1 isoforms in determining body weight. These novel insights into the differential neuronal functions of LNX1 and LNX2 proteins provide a foundation for mechanistic studies of these phenomena.

摘要

背景

NUMB蛋白-X 1(LNX1)配体和LNX2蛋白是密切相关的含PDZ结构域的E3泛素连接酶,它们与许多突触和神经发育重要蛋白相互作用并可能对其进行调节。虽然LNX1和LNX2都在神经元中表达,但值得注意的是,神经元中的LNX1亚型缺乏负责底物泛素化的催化结构域。因此,LNX1和LNX2的共同相互作用伙伴可能受到这些蛋白的差异调节,其中LNX1作为稳定支架,而LNX2可能促进其泛素化和降解。尽管已经鉴定出许多与LNX相互作用的蛋白和底物,但我们对LNX1和LNX2在体内不同功能的了解仍然非常不完整。

结果

我们之前报道,中枢神经系统中缺乏LNX1且全身缺乏LNX2的小鼠表现出焦虑相关行为减少。在此,我们首次通过检查LnX1和LnX2单基因敲除动物的焦虑相关行为和冒险行为,并分析单基因和双基因敲除动物行为中以前未探索的方面,显著扩展了这项工作。虽然在旷场试验和高架十字迷宫试验中,同时缺失LNX1和LNX2会导致双基因敲除动物焦虑相关行为减少,但在明暗转换试验和钢丝梁桥冒险范式中,消除LNX2在行为改变中起更突出的作用。相比之下,所有基因型的LnX基因敲除小鼠在大理石埋藏试验、应激诱导体温过高试验和新物体识别试验中与野生型动物没有区别。对母体分离后幼崽超声波发声的分析显示,LnX1和LnX1;LnX2双基因敲除动物在叫声特性和发声曲目方面存在显著差异。最后,双基因敲除动物先前记录的体重减轻在很大程度上可归因于LnX1基因敲除。

结论

这些结果确定了LNX1和LNX2蛋白在调节小鼠焦虑、冒险行为和社交沟通的不同方面的特定作用。它们还揭示了神经元表达的LNX1亚型在决定体重方面的意外作用。这些对LNX1和LNX2蛋白不同神经元功能的新见解为这些现象的机制研究提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d8a/12020136/ac42a2406716/12993_2025_276_Fig1_HTML.jpg

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