Phosphoregulated FMRP phase separation models activity-dependent translation through bidirectional control of mRNA granule formation

被引:240
作者
Tsang, Brian [1 ,2 ]
Arsenault, Jason [3 ,4 ]
Vernon, Robert M. [1 ]
Lin, Hong [1 ]
Sonenberg, Nahum [5 ,6 ]
Wang, Lu-Yang [3 ,4 ]
Bah, Alaji [1 ,7 ]
Forman-Kay, Julie D. [1 ,2 ]
机构
[1] Hosp Sick Children, Program Mol Med, Toronto, ON M5G 0A4, Canada
[2] Univ Toronto, Dept Biochem, Toronto, ON M5S 1A8, Canada
[3] Hosp Sick Children, Program Neurosci & Mental Hlth, Toronto, ON M5G 0A4, Canada
[4] Univ Toronto, Dept Physiol, Toronto, ON M5S 1A8, Canada
[5] McGill Univ, Dept Biochem, Montreal, PQ H3G 1Y6, Canada
[6] McGill Univ, Goodman Canc Res Ctr, Montreal, PQ H3A 1A3, Canada
[7] SUNY Upstate Med Univ, Dept Biochem & Mol Biol, Syracuse, NY 13210 USA
基金
加拿大健康研究院;
关键词
phase separation; activity-dependent translation; translational regulation; posttranslational modifications; RNA granules; MENTAL-RETARDATION PROTEIN; AMYOTROPHIC-LATERAL-SCLEROSIS; FRAGILE-X-SYNDROME; LIQUID DROPLETS; EMERGING ROLES; GENE ONTOLOGY; IN-VITRO; RGG BOX; MUTATIONS; PHOSPHORYLATION;
D O I
10.1073/pnas.1814385116
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Activity-dependent translation requires the transport of mRNAs within membraneless protein assemblies known as neuronal granules from the cell body toward synaptic regions. Translation of mRNA is inhibited in these granules during transport but quickly activated in response to neuronal stimuli at the synapse. This raises an important question: how does synaptic activity trigger translation of once-silenced mRNAs? Here, we demonstrate a strong connection between phase separation, the process underlying the formation of many different types of cellular granules, and in vitro inhibition of translation. By using the Fragile X Mental Retardation Protein (FMRP), an abundant neuronal granule component and translational repressor, we show that FMRP phase separates in vitro with RNA into liquid droplets mediated by its C-terminal low-complexity disordered region (i.e., FMRPLCR). FMRPLCR posttranslational modifications by phosphorylation and methylation have opposing effects on in vitro translational regulation, which corroborates well with their critical concentrations for phase separation. Our results, combined with bioinformatics evidence, are supportive of phase separation as a general mechanism controlling activity-dependent translation.
引用
收藏
页码:4218 / 4227
页数:10
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