Bradbury Joshua J, Hulmes Georgia E, Viswanathan Ranjith, Costa Guilherme, Lovegrove Holly E, Herbert Shane P
Faculty of Biology, Medicine and Health, Michael Smith Building, University of Manchester, Oxford Road, Manchester, UK.
Centre for Developmental Neurobiology, New Hunt's House, King's College London, London, UK.
Nat Commun. 2025 Jul 31;16(1):7029. doi: 10.1038/s41467-025-61940-6.
The subcellular positioning of organelles is critical to their function and is dynamically adapted to changes in cell morphology. Yet, how cells sense shifts in their dimensions and redistribute organelles accordingly remains unclear. Here we reveal that cell-size-scaling of mitochondria distribution and function is directed by polarised trafficking of mRNAs. We identify a 29 bp 3'UTR motif in mRNA encoding TRAK2, a key determinant of mitochondria retrograde transport, that promotes cell-size-dependent targeting of TRAK2 mRNA to distal sites of cell protrusions. Cell-size-scaled mRNA polarisation in turn scales mitochondria distribution by defining the precise site of TRAK2-MIRO1 retrograde transport complex assembly. Consequently, 3'UTR motif excision perturbs size-regulated transport and eradicates scaling of mitochondria positioning, triggering distal accumulation of mitochondria and progressive hypermotility as cells increase size. Together, our results reveal an RNA-driven mechanistic basis for the cell-size-scaling of organelle distribution and function that is critical to homeostatic control of motile cell behaviour.
细胞器的亚细胞定位对其功能至关重要,并能动态适应细胞形态的变化。然而,细胞如何感知其尺寸变化并相应地重新分布细胞器仍不清楚。在这里,我们揭示线粒体分布和功能的细胞大小缩放是由mRNA的极化运输所引导的。我们在编码TRAK2(线粒体逆行运输的关键决定因素)的mRNA中鉴定出一个29bp的3'UTR基序,该基序促进TRAK2 mRNA在细胞大小依赖的情况下靶向细胞突起的远端位点。细胞大小缩放的mRNA极化反过来通过定义TRAK2-MIRO1逆行运输复合体组装的精确位点来缩放线粒体分布。因此,3'UTR基序切除会扰乱大小调节的运输,并消除线粒体定位的缩放,随着细胞增大,触发线粒体的远端积累和渐进性过度运动。总之,我们的结果揭示了一种RNA驱动的机制基础,用于细胞器分布和功能的细胞大小缩放,这对运动细胞行为的稳态控制至关重要。