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损伤诱导的KIF4A神经表达及其在雪旺细胞增殖中的作用表明,这种驱动蛋白在神经再生中具有双重功能。

Injury-induced KIF4A neural expression and its role in Schwann cell proliferation suggest a dual function for this kinesin in neural regeneration.

作者信息

Correia Patrícia D, de Sousa Bárbara M, Chato-Astrain Jesús, de Faria Joana Paes, Estrada Veronica, Relvas João B, Müller Hans W, Carriel Víctor, Bosse Frank, Vieira Sandra I

机构信息

Institute of Biomedicine (iBiMED), Department of Medical Sciences, University of Aveiro, Aveiro, Portugal.

Molecular Neurobiology Laboratory, Department of Neurology, University-Hospital Düsseldorf, Heinrich-Heine-University, Düsseldorf, Germany.

出版信息

Neural Regen Res. 2026 Apr 1;21(4):1607-1620. doi: 10.4103/NRR.NRR-D-24-00232. Epub 2024 Dec 7.

Abstract

JOURNAL/nrgr/04.03/01300535-202604000-00041/figure1/v/2025-06-30T060627Z/r/image-tiff Contrary to the adult central nervous system, the peripheral nervous system has an intrinsic ability to regenerate that relies on the expression of regeneration-associated genes, such as some kinesin family members. Kinesins contribute to nerve regeneration through the transport of specific cargo, such as proteins and membrane components, from the cell body towards the axon periphery. We show here that KIF4A, associated with neurodevelopmental disorders and previously believed to be only expressed during development, is also expressed in the adult vertebrate nervous system and up-regulated in injured peripheral nervous system cells. KIF4A is detected both in the cell bodies and regrowing axons of injured neurons, consistent with its function as an axonal transporter of cargoes such as β1-integrin and L1CAM. Our study further demonstrates that KIF4A levels are greatly increased in Schwann cells from injured distal nerve stumps, particularly at a time when they are reprogrammed into an essential proliferative repair phenotype. Moreover, Kif4a mRNA levels were approximately ~ 6-fold higher in proliferative cultured Schwann cells compared with non-proliferative ones. A hypothesized function for Kif4a in Schwann cell proliferation was further confirmed by Kif4a knockdown, as this significantly reduced Schwann cell proliferation in vitro . Our findings show that KIF4A is expressed in adult vertebrate nervous systems and is up-regulated following peripheral injury. The timing of KIF4A up-regulation, its location during regeneration, and its proliferative role, all suggest a dual role for this protein in neuroregeneration that is worth exploring in the future.

摘要

与成人中枢神经系统不同,外周神经系统具有内在的再生能力,这种能力依赖于再生相关基因的表达,比如一些驱动蛋白家族成员。驱动蛋白通过将特定的货物(如蛋白质和膜成分)从细胞体向轴突外周运输,从而促进神经再生。我们在此表明,与神经发育障碍相关且以前被认为仅在发育过程中表达的KIF4A,在成年脊椎动物神经系统中也有表达,并且在受伤的外周神经细胞中上调。在受伤神经元的细胞体和再生轴突中均检测到KIF4A,这与其作为β1整合素和L1细胞粘附分子等货物的轴突转运体的功能一致。我们的研究进一步表明,在受伤的远端神经残端的雪旺细胞中,KIF4A水平大幅升高,尤其是在它们被重编程为重要的增殖修复表型时。此外,与非增殖性雪旺细胞相比,增殖培养的雪旺细胞中Kif4a mRNA水平大约高6倍。Kif4a敲低进一步证实了Kif4a在雪旺细胞增殖中的假设功能,因为这显著降低了体外雪旺细胞的增殖。我们的研究结果表明,KIF4A在成年脊椎动物神经系统中表达,并且在周围神经损伤后上调。KIF4A上调的时间、其在再生过程中的位置以及其增殖作用,都表明该蛋白在神经再生中具有双重作用,值得未来进一步探索。

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