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TRPV1-微管复合物:膜微管在化疗诱导的周围神经病中的作用。

TRPV1-tubulin complex: involvement of membrane tubulin in the regulation of chemotherapy-induced peripheral neuropathy.

机构信息

National Institute of Science Education and Research, Bhubaneswar, Orissa, India.

出版信息

J Neurochem. 2012 Oct;123(1):1-13. doi: 10.1111/j.1471-4159.2012.07892.x. Epub 2012 Aug 23.

Abstract

Existence of microtubule cytoskeleton at the membrane and submembranous regions, referred as 'membrane tubulin' has remained controversial for a long time. Since we reported physical and functional interaction of Transient Receptor Potential Vanilloid Sub Type 1 (TRPV1) with microtubules and linked the importance of TRPV1-tubulin complex in the context of chemotherapy-induced peripheral neuropathy, a few more reports have characterized this interaction in in vitro and in in vivo condition. However, the cross-talk between TRPs with microtubule cytoskeleton, and the complex feedback regulations are not well understood. Sequence analysis suggests that other than TRPV1, few TRPs can potentially interact with microtubules. The microtubule interaction with TRPs has evolutionary origin and has a functional significance. Biochemical evidence, Fluorescence Resonance Energy Transfer analysis along with correlation spectroscopy and fluorescence anisotropy measurements have confirmed that TRPV1 interacts with microtubules in live cell and this interaction has regulatory roles. Apart from the transport of TRPs and maintaining the cellular structure, microtubules regulate signaling and functionality of TRPs at the single channel level. Thus, TRPV1-tubulin interaction sets a stage where concept and parameters of 'membrane tubulin' can be tested in more details. In this review, I critically analyze the advancements made in biochemical, pharmacological, behavioral as well as cell-biological observations and summarize the limitations that need to be overcome in the future.

摘要

微管细胞骨架在膜和亚膜区域的存在,被称为“膜微管”,长期以来一直存在争议。自从我们报道瞬时受体电位香草酸亚型 1(TRPV1)与微管的物理和功能相互作用,并将 TRPV1-微管复合物在化疗诱导的周围神经病变中的重要性联系起来以来,已经有一些更多的报道在体外和体内条件下对这种相互作用进行了描述。然而,TRPs 与微管细胞骨架之间的串扰以及复杂的反馈调节机制还不是很清楚。序列分析表明,除了 TRPV1 之外,还有一些 TRPs 可能与微管相互作用。TRPs 与微管的相互作用具有进化起源,具有功能意义。生化证据、荧光共振能量转移分析以及相关光谱和荧光各向异性测量证实 TRPV1 在活细胞中与微管相互作用,这种相互作用具有调节作用。除了 TRPs 的运输和维持细胞结构外,微管还调节 TRPs 在单通道水平的信号转导和功能。因此,TRPV1-微管相互作用为在更详细的层面上测试“膜微管”的概念和参数奠定了基础。在这篇综述中,我批判性地分析了在生化、药理学、行为以及细胞生物学观察方面取得的进展,并总结了未来需要克服的局限性。

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