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Drp2 and periaxin form Cajal bands with dystroglycan but have distinct roles in Schwann cell growth. - Abstract - Europe PMC
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Absence of Dystrophin Related Protein-2 disrupts Cajal bands in a patient with Charcot–Marie–Tooth disease - ScienceDirect
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PDF] Drp2 and Periaxin Form Cajal Bands with Dystroglycan But Have Distinct Roles in Schwann Cell Growth | Semantic Scholar
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The attenuation effect of potassium 2‐(1‐hydroxypentyl)‐benzoate in a mouse model of diabetes‐associated cognitive decline: The protein expression in the brain - Yu - 2022 - CNS Neuroscience & Therapeutics - Wiley Online Library
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Specific Disruption of a Schwann Cell Dystrophin-Related Protein Complex in a Demyelinating Neuropathy - ScienceDirect
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Actin meshwork patterning precedes DRP2 localization Teased fibers from... | Download Scientific Diagram
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CaMKII induces permeability transition through Drp1 phosphorylation during chronic β-AR stimulation | Nature Communications
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Specific Disruption of a Schwann Cell Dystrophin-Related Protein Complex in a Demyelinating Neuropathy - ScienceDirect
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A high-fat diet induces rapid changes in the mouse hypothalamic proteome | Nutrition & Metabolism | Full Text
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Retracted Article: Spectrin-like domain 2 of DRP2 serves as a novel binding region for the NLS2 and 3 sub-domains of L-periaxin - RSC Advances (RSC Publishing) DOI:10.1039/C5RA12703C
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Antioxidants | Free Full-Text | Beyond Antioxidant Effects: Nature-Based Templates Unveil New Strategies for Neurodegenerative Diseases
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Retracted Article: Spectrin-like domain 2 of DRP2 serves as a novel binding region for the NLS2 and 3 sub-domains of L-periaxin - RSC Advances (RSC Publishing) DOI:10.1039/C5RA12703C
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Specific Disruption of a Schwann Cell Dystrophin-Related Protein Complex in a Demyelinating Neuropathy - ScienceDirect
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Activation of Drp1 promotes fatty acids-induced metabolic reprograming to potentiate Wnt signaling in colon cancer | Cell Death & Differentiation
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Myelination of peripheral nerves is controlled by PI4KB through regulation of Schwann cell Golgi function | PNAS
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