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ankyrin G 结合基序介导 TRAAK 在海马锥体神经元轴突起始段的周期性定位。

An ankyrin G-binding motif mediates TRAAK periodic localization at axon initial segments of hippocampal pyramidal neurons.

机构信息

Department of Biomedical Sciences, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen 2200, Denmark.

Université Côte d'Azur, CNRS, INSERM, Institut de Biologie Valrose, Nice 06108, France.

出版信息

Proc Natl Acad Sci U S A. 2024 Jul 30;121(31):e2310120121. doi: 10.1073/pnas.2310120121. Epub 2024 Jul 26.

Abstract

The axon initial segment (AIS) is a critical compartment in neurons. It converts postsynaptic input into action potentials that subsequently trigger information transfer to target neurons. This process relies on the presence of several voltage-gated sodium (Na) and potassium (K) channels that accumulate in high densities at the AIS. TRAAK is a mechanosensitive leak potassium channel that was recently localized to the nodes of Ranvier. Here, we uncover that TRAAK is also present in AISs of hippocampal and cortical neurons in the adult rat brain as well as in AISs of cultured rat hippocampal neurons. We show that the AIS localization is driven by a C-terminal ankyrin G-binding sequence that organizes TRAAK in a 190 nm spaced periodic pattern that codistributes with periodically organized ankyrin G. We furthermore uncover that while the identified ankyrin G-binding motif is analogous to known ankyrin G-binding motifs in Na1 and K7.2/K7.3 channels, it was acquired by convergent evolution. Our findings identify TRAAK as an AIS ion channel that convergently acquired an ankyrin G-binding motif and expand the role of ankyrin G to include the nanoscale organization of ion channels at the AIS.

摘要

轴突起始段(AIS)是神经元中的一个关键隔室。它将突触后输入转换为动作电位,随后触发信息传递到靶神经元。这个过程依赖于几种电压门控钠(Na)和钾(K)通道的存在,这些通道在 AIS 处高度聚集。TRAAK 是一种机械敏感的钾泄漏通道,最近被定位到Ranvier 结。在这里,我们发现 TRAAK 也存在于成年大鼠大脑中海马和皮质神经元的 AIS 中,以及培养的大鼠海马神经元的 AIS 中。我们表明,AIS 定位是由一个 C 端锚蛋白 G 结合序列驱动的,该序列将 TRAAK 组织成 190nm 间隔的周期性模式,与周期性组织的锚蛋白 G 共分布。此外,我们发现,虽然鉴定出的锚蛋白 G 结合基序类似于 Na1 和 K7.2/K7.3 通道中的已知锚蛋白 G 结合基序,但它是通过趋同进化获得的。我们的发现将 TRAAK 鉴定为一种 AIS 离子通道,它通过趋同进化获得了锚蛋白 G 结合基序,并扩展了锚蛋白 G 的作用,包括 AIS 处离子通道的纳米尺度组织。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cada/11295008/9c136e1e00e3/pnas.2310120121fig01.jpg

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