Rebalancing the motor circuit restores movement in a Caenorhabditis elegans model for TDP-43-toxicity
Koopman, M.; Gungordu, L.; Janssen, L.; Seinstra, R. I.; Richmond, J. E. X.; Okerlund, N.; Wardenaar, R.; Islam, P.; Brown, A. E. X.; Jorgensen, E. M.; Nollen, E. A. A.
Show abstract
Amyotrophic lateral sclerosis (ALS) and frontotemporal dementia are caused by the abnormal accumulation of TAR DNA-binding protein 43 (TDP-43) in the cytoplasm of neurons. How TDP-43 accumulation leads to disease symptoms is not well-characterized. Here, we use a C. elegans model for TDP-43-induced toxicity to identify the biological mechanisms that lead to disease-related phenotypes. By applying deep behavioral phenotyping, we established a phenotypic fingerprint of TDP-43 worms. This fingerprint was compared to that of 294 C. elegans mutants, in which genes were mutated that are important for nervous system and muscle functioning. By using a computational clustering approach, we found that the release of acetylcholine and GABA was the primary defect in TDP-43 worms. We then functionally dissected the neuromuscular circuit to show that GABA transmission was more severely diminished compared to acetylcholine. Whereas the loss of GABA transmission was caused by a profound loss of GABA synapses, acetylcholine neurons appeared to be functionally silenced. Enhancing functional output of repressed acetylcholine neurons at the level of G-protein coupled receptors or through optogenetic stimulation restored neurotransmission, but inefficiently rescued locomotion. Surprisingly, rebalancing the excitatory and inhibitory input by simultaneous stimulation of GABA and acetylcholine input into muscles not only synergized the effects of boosting individual neurotransmitter systems, but instantaneously improved movement. Our results suggest that interventions accounting for the altered connectome may be more efficient in restoring motor function than those solely focusing on diseased neuron populations.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Mechanical force of uterine occupation enables large vesicle extrusion from proteostressed maternal neurons 97%
- Activity-dependent Mitochondrial ROS Signaling Regulates Recruitment of Glutamate Receptors to Synapses 96%
- An antagonism between Spinophilin and Syd-1 operates upstream of memory promoting presynaptic long-term plasticity 96%
Similar papers in this journal
- Integration of spatially opposing cues by a single interneuron guides decision making in C. elegans 96%
- Spinal microcircuits go through multiphasic homeostatic compensations in a mouse model of motoneuron degeneration 96%
- Anoctamins mediate polymodal sensory perception and larval metamorphosis in a non-vertebrate chordate. 96%
Similar papers in this journal
- FAM57B is a modulator of ceramide synthesis that regulates sphingolipid homeostasis and synaptic composition in the developing brain 94%
- Lipid droplets modulate proteostasis, SQST-1/SQSTM1 dynamics, and lifespan in C. elegans 94%
- Mating status-dependent dopaminergic modulation of auditory sensory neurons in Drosophila 94%
Similar papers in this journal
- Lysosomal control of proteostasis and reproductive capacity by conserved LMD-3 protein in C. elegans 97%
- A tonically active master neuron continuously modulates mutually exclusive motor states at two timescales 95%
- Persistent DNA damage rewires lipid metabolism and promotes histone hyperacetylation via MYS-1/Tip60. 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.