Search Results - "Milek, Jacek"
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The Fragile X mental retardation protein regulates matrix metalloproteinase 9 mRNA at synapses
Published in The Journal of neuroscience (13-11-2013)“…Activity-dependent protein synthesis at synapses is dysregulated in the Fragile X syndrome (FXS). This process contributes to dendritic spine dysmorphogenesis…”
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Rab11 regulates autophagy at dendritic spines in an mTOR- and NMDA-dependent manner
Published in Molecular biology of the cell (01-03-2024)“…Synaptic plasticity is a process that shapes neuronal connections during neurodevelopment and learning and memory. Autophagy is a mechanism that allows the…”
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Neuroligin 1, 2, and 3 Regulation at the Synapse: FMRP-Dependent Translation and Activity-Induced Proteolytic Cleavage
Published in Molecular neurobiology (01-04-2019)“…Neuroligins (NLGNs) are cell adhesion molecules located on the postsynaptic side of the synapse that interact with their presynaptic partners neurexins to…”
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Activity-dependent local translation of matrix metalloproteinase-9
Published in The Journal of neuroscience (17-10-2012)“…Local, synaptic synthesis of new proteins in response to neuronal stimulation plays a key role in the regulation of synaptic morphogenesis. Recent studies…”
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Mutation in the mitochondrial chaperone TRAP1 leads to autism with more severe symptoms in males
Published in EMBO molecular medicine (27-09-2024)“…There is increasing evidence of mitochondrial dysfunction in autism spectrum disorders (ASD), but the causal relationships are unclear. In an ASD patient whose…”
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miR-132 Regulates Dendritic Spine Structure by Direct Targeting of Matrix Metalloproteinase 9 mRNA
Published in Molecular neurobiology (01-09-2016)“…Mir-132 is a neuronal activity-regulated microRNA that controls the morphology of dendritic spines and neuronal transmission. Similar activities have recently…”
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Impaired synaptic incorporation of AMPA receptors in a mouse model of fragile X syndrome
Published in Frontiers in molecular neuroscience (09-11-2023)“…Fragile X syndrome (FXS) is the most common monogenetic cause of inherited intellectual disability and autism in humans. One of the well-characterized…”
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Structural Plasticity of Dendritic Spines Requires GSK3α and GSK3β
Published in PloS one (24-07-2015)“…Although memories appear to be elusive phenomena, they are stored in the network of physical connections between neurons. Dendritic spines, which are…”
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Disrupting interaction between miR-132 and Mmp9 3′UTR improves synaptic plasticity and memory in mice
Published in Frontiers in molecular neuroscience (05-08-2022)“…As microRNAs have emerged to be important regulators of molecular events occurring at the synapses, the new questions about their regulatory effect on the…”
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TIAR and FMRP shape pro-survival nascent proteome of leukemia cells in the bone marrow microenvironment
Published in iScience (21-04-2023)“…Chronic myeloid leukemia (CML) cells circulate between blood and bone marrow niche, representing different microenvironments. We studied the role of the two…”
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Mitochondrial protein biogenesis in the synapse is supported by local translation
Published in EMBO reports (05-08-2020)“…Synapses are the regions of the neuron that enable the transmission and propagation of action potentials on the cost of high energy consumption and elevated…”
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Preparation of polysomal fractions from mouse brain synaptoneurosomes and analysis of polysomal-bound mRNAs
Published in Journal of neuroscience methods (01-01-2018)“…•A step-by-step reliable protocol to prepare synaptoneurosomes from rodent brain.•Polyribosome fractionation from synaptoneurosomes.•Extraction of proteins and…”
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Disrupting interaction between miR-132 and Mmp9 3'UTR improves synaptic plasticity and memory in mice
Published in Frontiers in molecular neuroscience (01-01-2022)“…As microRNAs have emerged to be important regulators of molecular events occurring at the synapses, the new questions about their regulatory effect on the…”
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Structural Plasticity of Dendritic Spines Requires GSK3[alpha] and GSK3[beta]
Published in PloS one (24-07-2015)“…Although memories appear to be elusive phenomena, they are stored in the network of physical connections between neurons. Dendritic spines, which are…”
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