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F-box 蛋白 FBXB-65 通过其货物结合 PH 结构域附近的一种 PTM 调节驱动蛋白-3 运动蛋白 UNC-104 的正向运输。

F-box protein FBXB-65 regulates anterograde transport of the kinesin-3 motor UNC-104 through a PTM near its cargo-binding PH domain.

机构信息

Department of Biological Sciences, Tata Institute of Fundamental Research, Mumbai 400005, India.

Institute of Physics, Sachivalaya Marg, Bhubaneswar 751005, India.

出版信息

J Cell Sci. 2024 Apr 1;137(7). doi: 10.1242/jcs.261553. Epub 2024 Apr 16.

Abstract

Axonal transport in neurons is essential for cargo movement between the cell body and synapses. Caenorhabditis elegans UNC-104 and its homolog KIF1A are kinesin-3 motors that anterogradely transport precursors of synaptic vesicles (pre-SVs) and are degraded at synapses. However, in C. elegans, touch neuron-specific knockdown of the E1 ubiquitin-activating enzyme, uba-1, leads to UNC-104 accumulation at neuronal ends and synapses. Here, we performed an RNAi screen and identified that depletion of fbxb-65, which encodes an F-box protein, leads to UNC-104 accumulation at neuronal distal ends, and alters UNC-104 net anterograde movement and levels of UNC-104 on cargo without changing synaptic UNC-104 levels. Split fluorescence reconstitution showed that UNC-104 and FBXB-65 interact throughout the neuron. Our theoretical model suggests that UNC-104 might exhibit cooperative cargo binding that is regulated by FBXB-65. FBXB-65 regulates an unidentified post-translational modification (PTM) of UNC-104 in a region beside the cargo-binding PH domain. Both fbxb-65 and UNC-104, independently of FBXB-65, regulate axonal pre-SV distribution, transport of pre-SVs at branch points and organismal lifespan. FBXB-65 regulates a PTM of UNC-104 and the number of motors on the cargo surface, which can fine-tune cargo transport to the synapse.

摘要

神经元中的轴突运输对于细胞体和突触之间的货物移动至关重要。秀丽隐杆线虫 UNC-104 及其同源物 KIF1A 是一种驱动蛋白-3 马达,可正向运输突触小泡前体(pre-SVs),并在突触处降解。然而,在秀丽隐杆线虫中,触神经元特异性敲低 E1 泛素激活酶 uba-1 会导致 UNC-104 在神经元末端和突触处积累。在这里,我们进行了 RNAi 筛选,并鉴定出 fbxb-65 的缺失会导致 UNC-104 在神经元远端积累,并改变 UNC-104 的净正向运动和货物上 UNC-104 的水平,而不改变突触处 UNC-104 的水平。分裂荧光重建表明 UNC-104 和 FBXB-65 在整个神经元中相互作用。我们的理论模型表明 UNC-104 可能表现出与 FBXB-65 相关的协同货物结合。FBXB-65 调节 UNC-104 上货物结合 PH 结构域旁未识别的翻译后修饰(PTM)。fbxb-65 和 UNC-104 均可独立于 FBXB-65 调节轴突前 SV 分布、分支点处前 SV 的运输和生物体寿命。FBXB-65 调节 UNC-104 的 PTM 和货物表面上的马达数量,这可以微调货物向突触的运输。

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