Geng Qi, Keya Jakia Jannat, Hotta Takashi, Verhey Kristen J
Department of Molecular, Cellular, and Developmental Biology, University of Michigan, Ann Arbor, MI, USA.
Department of Cell and Developmental Biology, University of Michigan Medical School, Ann Arbor, MI, USA.
bioRxiv. 2023 Oct 23:2023.10.23.563538. doi: 10.1101/2023.10.23.563538.
The spatial distribution of mRNA is critical for local control of protein production. Recent studies have identified the kinesin-3 family member KIF1C as an RNA transporter. However, it is not clear how KIF1C interacts with RNA molecules. Here, we show that KIF1C's C-terminal tail domain is an intrinsically disordered region (IDR) containing a prion-like domain (PLD) that is unique compared to the C-terminal tails of other kinesin family members. In cells, KIF1C constructs undergo reversible formation of dynamic puncta that display physical properties of liquid condensates and incorporate RNA molecules in a sequence-selective manner. The IDR is necessary and sufficient for driving liquid-liquid phase separation (LLPS) but the condensate properties can be modulated by adjacent coiled-coil segments. The purified KIF1C IDR domain undergoes LLPS at near-endogenous nM concentrations in a salt-dependent manner. Deletion of the IDR abolished the ability of KIF1C to undergo LLPS and disrupted the distribution of mRNA cargoes to the cell periphery. Our work thus uncovers an intrinsic correlation between the LLPS activity of KIF1C and its role as an RNA transporter. In addition, as the first kinesin motor reported to undergo LLPS, our work reveals a previously uncharacterized mode of motor-cargo interaction that extends our understanding of the behavior of cytoskeletal motor proteins.
mRNA的空间分布对于蛋白质产生的局部控制至关重要。最近的研究已将驱动蛋白-3家族成员KIF1C鉴定为一种RNA转运蛋白。然而,尚不清楚KIF1C如何与RNA分子相互作用。在此,我们表明KIF1C的C末端尾部结构域是一个包含类朊病毒结构域(PLD)的内在无序区域(IDR),与其他驱动蛋白家族成员的C末端尾部相比,该区域是独特的。在细胞中,KIF1C构建体经历动态斑点的可逆形成,这些斑点表现出液体凝聚物的物理特性,并以序列选择性方式掺入RNA分子。IDR对于驱动液-液相分离(LLPS)是必要且充分的,但凝聚物特性可由相邻的卷曲螺旋片段调节。纯化的KIF1C IDR结构域在接近内源性纳摩尔浓度下以盐依赖性方式经历LLPS。删除IDR消除了KIF1C进行LLPS的能力,并破坏了mRNA货物向细胞周边的分布。因此,我们的工作揭示了KIF1C的LLPS活性与其作为RNA转运蛋白的作用之间的内在关联。此外,作为首个被报道经历LLPS的驱动蛋白,我们的工作揭示了一种以前未被表征的马达-货物相互作用模式,扩展了我们对细胞骨架马达蛋白行为的理解。