Neuronal TDP-43 depletion affects activity-dependent plasticity

被引:15
|
作者
Koza, Paulina [1 ]
Beroun, Anna [1 ]
Konopka, Anna [2 ]
Gorkiewicz, Tomasz [1 ]
Bijoch, Lukasz [1 ]
Torres, Julio C. [2 ]
Bulska, Ewa [2 ]
Knapska, Ewelina [3 ]
Kaczmarek, Leszek [3 ]
Konopka, Witold [1 ]
机构
[1] Polish Acad Sci, Nencki Inst Expt Biol, Warsaw, Poland
[2] Univ Warsaw, Biol & Chem Res Ctr, Fac Chem, Warsaw, Poland
[3] Polish Acad Sci, Nencki Inst Expt Biol, BRAINCITY, Warsaw, Poland
关键词
TDP-43; AMPA receptors; FLOP/FLIP splice variants; PTZ model; RNA TARGETS; RECEPTOR DESENSITIZATION; MOLECULAR DETERMINANT; SYNAPTIC-TRANSMISSION; LOBAR DEGENERATION; TERM PLASTICITY; AMPA RECEPTORS; PROTEIN; CYCLOTHIAZIDE; MODULATION;
D O I
10.1016/j.nbd.2019.104499
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
TAR DNA-binding protein 43 (TDP-43) is a hallmark of some neurodegenerative disorders, such as frontotemporal lobar degeneration and amyotrophic lateral sclerosis. TDP-43-related pathology is characterized by its abnormally phosphorylated and ubiquitinated aggregates. It is involved in many aspects of RNA processing, including mRNA splicing, transport, and translation. However, its exact physiological function and role in mechanisms that lead to neuronal degeneration remain elusive. Transgenic rats that were characterized by TDP43 depletion in neurons exhibited enhancement of the acquisition of fear memory. At the cellular level, TDP-43-depleted neurons exhibited a decrease in the short-term plasticity of intrinsic neuronal excitability. The induction of long-term potentiation in the CA3-CA1 areas of the hippocampus resulted in more stable synaptic enhancement. At the molecular level, the protein levels of an unedited (R) FLOP variant of alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptor (AMPAR) GluR1 and GluR2/3 subunits decreased in the hippo campus. Alterations of FLOP/FLIP subunit composition affected AMPAR kinetics, reflected by cyclothiazide-dependent slowing of the decay time of AMPAR-mediated miniature excitatory postsynaptic currents. These findings suggest that TDP-43 may regulate activity-dependent neuronal plasticity, possibly by regulating the splicing of genes that are responsible for fast synaptic transmission and membrane potential.
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页数:12
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