2018
DOI: 10.1016/j.brainres.2018.04.034
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Dynamic duo – FMRP and TDP-43: Regulating common targets, causing different diseases

Abstract: RNA binding proteins play essential roles during development and aging, and are also involved in disease pathomechanisms. RNA sequencing and omics analyses have provided a window into systems level alterations in neurological disease, and have identified RNA processing defects among notable disease mechanisms. This review focuses on two seemingly distinct neurological disorders, the RNA binding proteins they are linked to, and their newly discovered functional relationship. When deficient, Fragile X Mental Ret… Show more

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Cited by 9 publications
(13 citation statements)
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“…FUS binds to the mRNA of the actin-stabilizing protein nuclear distribution protein nudE homolog 1 (Ndl-1), and its transcripts are increased in dendrites following mGluR activation, whereas levels of Ndl-1 are significantly reduced in FUS-null dendrites (Sasagawa et al, 2002 ; Fujii and Takumi, 2005 ). In neuronal axons, TDP-43 is co-localized with known transport-associated RBPs, including IGF2 mRNA-binding protein-1 (IMP1), fragile X mental retardation protein (FMRP), and ELAV-like protein 4 (HuD; Fallini et al, 2012 ; Ferro et al, 2018 ). Cytoplasmic TDP-43 mRNP granules show bidirectional microtubule-dependent transport in neurons, whereas ALS-causing TDP-43 mutations (M337V, G298S, and A315T) impair this function (Alami et al, 2014 ).…”
Section: Common Mechanisms Of Neurodegeneration In Als and Ftdmentioning
confidence: 99%
“…FUS binds to the mRNA of the actin-stabilizing protein nuclear distribution protein nudE homolog 1 (Ndl-1), and its transcripts are increased in dendrites following mGluR activation, whereas levels of Ndl-1 are significantly reduced in FUS-null dendrites (Sasagawa et al, 2002 ; Fujii and Takumi, 2005 ). In neuronal axons, TDP-43 is co-localized with known transport-associated RBPs, including IGF2 mRNA-binding protein-1 (IMP1), fragile X mental retardation protein (FMRP), and ELAV-like protein 4 (HuD; Fallini et al, 2012 ; Ferro et al, 2018 ). Cytoplasmic TDP-43 mRNP granules show bidirectional microtubule-dependent transport in neurons, whereas ALS-causing TDP-43 mutations (M337V, G298S, and A315T) impair this function (Alami et al, 2014 ).…”
Section: Common Mechanisms Of Neurodegeneration In Als and Ftdmentioning
confidence: 99%
“…Loss of TDP43 in flies resulted in MAP1B downregulation at NMJ [ 353 ] that was accompanied by synaptic defects while elsewhere it was reported that wild-type or mutant TDP43 overexpression resulted in reduced MAP1B expression at the NMJ and increased expression in the cell body [ 354 ]. Additionally, TDP43 has been shown to bind to mRNA and regulate the expression of several proteins implicated in neurodegenerative diseases including ALS and FTD (e.g., FUS, TAU, Ataxin 2, and progranulin) [ 324 , 325 , 326 , 355 , 356 , 357 , 358 ]. More recently, disease-associated mutations were shown to increase TDP43 mitochondrial localization in neurons that deregulated mitochondria-transcribed mRNAs leading to mitochondrial dysfunction and neuronal loss [ 359 ].…”
Section: Late-onset Neurodegenerationmentioning
confidence: 99%
“…RBPs bind to cisacting elements of mRNAs and can act as direct or indirect adaptors to recruit motor proteins to target mRNPs. TDP-43 and FMRP are RBPs known to regulate dendritic mRNA transport and translation, and functional impairment of either one has been linked to neurodegenerative and neurodevelopmental disorders (Ferro et al, 2018;Richter et al, 2015). FMRP recruits kinesin1 (KIF5) to facilitate dendritic mRNA transport to appropriate locations (Dictenberg et al, 2008).…”
Section: Introductionmentioning
confidence: 99%