HuD interacts with survival motor neuron protein and can rescue spinal muscular atrophy-like neuronal defects

被引:111
作者
Hubers, Lisa [1 ]
Valderrama-Carvajal, Hector [1 ]
Laframboise, Janik [1 ]
Timbers, Janie [1 ]
Sanchez, Gabriel [1 ]
Cote, Jocelyn [1 ]
机构
[1] Univ Ottawa, Dept Cellular & Mol Med, Fac Med, Ottawa, ON K1H 8M5, Canada
关键词
RNA-BINDING PROTEIN; GAP-43; MESSENGER-RNA; NERVE GROWTH-FACTOR; ARGININE METHYLTRANSFERASE CARM1; DETERMINING GENE-PRODUCT; SMN TUDOR DOMAIN; NEURITE OUTGROWTH; PC12; CELLS; CYTOPLASMIC LOCALIZATION; STEM-CELLS;
D O I
10.1093/hmg/ddq500
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Spinal muscular atrophy is an autosomal-recessive neuromuscular disease caused by disruption of the survival of motor neuron (SMN) gene, which promotes cytoplasmic assembly of the splicing core machinery. It remains unclear how a deficiency in SMN results in a disorder leading to selective degeneration of lower motor neurons. We report here that SMN interacts with RNA-binding protein HuD in neurites of motorneuron-derived MN-1 cells. This interaction is mediated through the Tudor domain of SMN and, importantly, naturally occurring Tudor mutations found in patients with severe spinal muscular atrophy (SMA) completely abrogate the interaction, underscoring its relevance to the disease process. We also characterized a regulatory pathway involving coactivator-associated arginine methyltransferase 1 (CARM1) and HuD. Specifically, we show that CARM1 expression is rapidly downregulated, at the protein level, following induction of differentiation through retinoid and neurotrophic signaling. Using purified proteins, we demonstrate that methylation of HuD by CARM1 reduces its interaction with the p21(cip1/waf1) mRNA, showing that CARM1 can directly influence RNA-binding activity. We further demonstrate that this CARM1-dependent regulatory switch mainly controls the activity of HuD in promoting cell-cycle exit, whereas the interaction between HuD and SMN is required for proper recruitment of HuD and its mRNA targets in neuronal RNA granules. Finally, we were able to rescue SMA-like defects in a hypomorphic Smn knockdown MN-1 cell line through overexpression of HuD. Together, these findings extend our understanding of specific role(s) of SMN in motor neurons and provide crucial insights into potential new avenues for SMA therapeutic strategies.
引用
收藏
页码:553 / 579
页数:27
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