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Plectin dysfunction in neurons leads to tau accumulation on microtubules affecting neuritogenesis, organelle trafficking, pain sensitivity and memory.
Valencia, R G; Mihailovska, E; Winter, L; Bauer, K; Fischer, I; Walko, G; Jorgacevski, J; Potokar, M; Zorec, R; Wiche, G.
Afiliação
  • Valencia RG; Max F. Perutz Laboratories, Department of Biochemistry and Cell Biology, University of Vienna, Vienna, Austria.
  • Mihailovska E; Max F. Perutz Laboratories, Department of Biochemistry and Cell Biology, University of Vienna, Vienna, Austria.
  • Winter L; Max F. Perutz Laboratories, Department of Biochemistry and Cell Biology, University of Vienna, Vienna, Austria.
  • Bauer K; Neuromuscular Research Department, Center for Anatomy and Cell Biology, Medical University of Vienna, Vienna, Austria.
  • Fischer I; Max F. Perutz Laboratories, Department of Biochemistry and Cell Biology, University of Vienna, Vienna, Austria.
  • Walko G; Max F. Perutz Laboratories, Department of Biochemistry and Cell Biology, University of Vienna, Vienna, Austria.
  • Jorgacevski J; Max F. Perutz Laboratories, Department of Biochemistry and Cell Biology, University of Vienna, Vienna, Austria.
  • Potokar M; Laboratory of Neuroendocrinology - Molecular Cell Physiology, Faculty of Medicine, Institute of Pathophysiology, University of Ljubljana, Ljubljana, Slovenia.
  • Zorec R; Celica Biomedical Slovenia, Ljubljana, Slovenia.
  • Wiche G; Laboratory of Neuroendocrinology - Molecular Cell Physiology, Faculty of Medicine, Institute of Pathophysiology, University of Ljubljana, Ljubljana, Slovenia.
Neuropathol Appl Neurobiol ; 47(1): 73-95, 2021 02.
Article em En | MEDLINE | ID: mdl-32484610
ABSTRACT

AIMS:

Plectin, a universally expressed multi-functional cytolinker protein, is crucial for intermediate filament networking, including crosstalk with actomyosin and microtubules. In addition to its involvement in a number of diseases affecting skin, skeletal muscle, heart, and other stress-exposed tissues, indications for a neuropathological role of plectin have emerged. Having identified P1c as the major isoform expressed in neural tissues in previous studies, our aim for the present work was to investigate whether, and by which mechanism(s), the targeted deletion of this isoform affects neuritogenesis and proper nerve cell functioning.

METHODS:

For ex vivo phenotyping, we used dorsal root ganglion and hippocampal neurons derived from isoform P1c-deficient and plectin-null mice, complemented by in vitro experiments using purified proteins and cell fractions. To assess the physiological significance of the phenotypic alterations observed in P1c-deficient neurons, P1c-deficient and wild-type littermate mice were subjected to standard behavioural tests.

RESULTS:

We demonstrate that P1c affects axonal microtubule dynamics by isoform-specific interaction with tubulin. P1c deficiency in neurons leads to altered dynamics of microtubules and excessive association with tau protein, affecting neuritogenesis, neurite branching, growth cone morphology, and translocation and directionality of movement of vesicles and mitochondria. On the organismal level, we found P1c deficiency manifesting as impaired pain sensitivity, diminished learning capabilities and reduced long-term memory of mice.

CONCLUSIONS:

Revealing a regulatory role of plectin scaffolds in microtubule-dependent nerve cell functions, our results have potential implications for cytoskeleton-related neuropathies.
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Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Dor / Organelas / Proteínas tau / Memória / Neurônios Tipo de estudo: Diagnostic_studies Limite: Animals Idioma: En Revista: Neuropathol Appl Neurobiol Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Áustria

Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Dor / Organelas / Proteínas tau / Memória / Neurônios Tipo de estudo: Diagnostic_studies Limite: Animals Idioma: En Revista: Neuropathol Appl Neurobiol Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Áustria