Melton Allison J, Palfini Victoria L, Ogawa Yuki, Rasband Matthew N
bioRxiv. 2024 May 23:2024.05.23.595556. doi: 10.1101/2024.05.23.595556.
Vertebrate nervous systems use the axon initial segment (AIS) to initiate action potentials and maintain neuronal polarity. The microtubule-associated protein tripartite motif containing 46 (TRIM46) was reported to regulate axon specification, AIS assembly, and neuronal polarity through the bundling of microtubules in the proximal axon. However, these claims are based on TRIM46 knockdown in cultured neurons. To investigate TRIM46 function , we examined TRIM46 knockout mice. Contrary to previous reports, we find that TRIM46 is dispensable for AIS formation and maintenance, and axon specification. TRIM46 knockout mice are viable, have normal behavior, and have normal brain structure. Thus, TRIM46 is not required for AIS formation, axon specification, or nervous system function. We also show TRIM46 enrichment in the first ∼100 μm of axon occurs independently of ankyrinG (AnkG), although AnkG is required to restrict TRIM46 only to the AIS. Our results suggest an unidentified protein may compensate for loss of TRIM46 and highlight the need for further investigation of the mechanisms by which the AIS and microtubules interact to shape neuronal structure and function.
A healthy nervous system requires the polarization of neurons into structurally and functionally distinct compartments, which depends on both the axon initial segment (AIS) and the microtubule cytoskeleton. In contrast to previous reports, we show that the microtubule-associated protein TRIM46 is not required for axon specification or AIS formation in mice. Our results emphasize the need for further investigation of the mechanisms by which the AIS and microtubules interact to shape neuronal structure and function.
脊椎动物神经系统利用轴突起始段(AIS)来启动动作电位并维持神经元极性。据报道,微管相关蛋白含三联体基序46(TRIM46)通过近端轴突中微管的成束作用来调节轴突特化、AIS组装和神经元极性。然而,这些说法是基于在培养神经元中敲低TRIM46得出的。为了研究TRIM46的功能,我们检测了TRIM46基因敲除小鼠。与之前的报道相反,我们发现TRIM46对于AIS的形成、维持以及轴突特化并非必需。TRIM46基因敲除小鼠能够存活,行为正常,脑结构也正常。因此,AIS形成、轴突特化或神经系统功能并不需要TRIM46。我们还表明,尽管锚蛋白G(AnkG)是将TRIM46限制在AIS所必需的,但TRIM46在轴突最初约100μm的富集独立于AnkG。我们的结果表明可能存在一种未鉴定的蛋白来补偿TRIM46的缺失,并强调需要进一步研究AIS与微管相互作用以塑造神经元结构和功能的机制。
健康的神经系统需要神经元极化成分在结构和功能上不同的区室,这依赖于轴突起始段(AIS)和微管细胞骨架。与之前的报道相反,我们表明微管相关蛋白TRIM46在小鼠的轴突特化或AIS形成中并非必需。我们的结果强调需要进一步研究AIS与微管相互作用以塑造神经元结构和功能的机制。