Effects of three microtubule-associated proteins (MAP2, MAP4, and Tau) on microtubules' physical properties and neurite morphology

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Effects of three microtubule-associated proteins (MAP2, MAP4, and Tau) on  microtubules' physical properties and neurite morphology
Tau mediates microtubule bundle architectures mimicking fascicles of microtubules found in the axon initial segment
Effects of three microtubule-associated proteins (MAP2, MAP4, and Tau) on  microtubules' physical properties and neurite morphology
Dynamics of microtubules and their associated proteins
Effects of three microtubule-associated proteins (MAP2, MAP4, and Tau) on  microtubules' physical properties and neurite morphology
A novel isoform of MAP4 organises the paraxial microtubule array required for muscle cell differentiation
Effects of three microtubule-associated proteins (MAP2, MAP4, and Tau) on  microtubules' physical properties and neurite morphology
Microtubule-associated protein 2 - Wikipedia
Effects of three microtubule-associated proteins (MAP2, MAP4, and Tau) on  microtubules' physical properties and neurite morphology
Phosphorylation of microtubule-associated protein 2 (MAP2) and its relevance for the regulation of the neuronal cytoskeleton function - ScienceDirect
Effects of three microtubule-associated proteins (MAP2, MAP4, and Tau) on  microtubules' physical properties and neurite morphology
Figure 1 from Interactions between Microtubule-Associated Protein Tau (MAPT) and Small Molecules.
Effects of three microtubule-associated proteins (MAP2, MAP4, and Tau) on  microtubules' physical properties and neurite morphology
Tau constructs and microtubule rigidity. For domain organization see
Effects of three microtubule-associated proteins (MAP2, MAP4, and Tau) on  microtubules' physical properties and neurite morphology
Structure and Pathology of Tau Protein in Alzheimer Disease
Effects of three microtubule-associated proteins (MAP2, MAP4, and Tau) on  microtubules' physical properties and neurite morphology
Microtubule‐associated proteins as direct crosslinkers of actin filaments and microtubules - Mohan - 2015 - IUBMB Life - Wiley Online Library
Effects of three microtubule-associated proteins (MAP2, MAP4, and Tau) on  microtubules' physical properties and neurite morphology
Tau Protects Microtubules in the Axon from Severing by Katanin
Effects of three microtubule-associated proteins (MAP2, MAP4, and Tau) on  microtubules' physical properties and neurite morphology
Microtubule binding affinities of the six tau isoforms. A
Effects of three microtubule-associated proteins (MAP2, MAP4, and Tau) on  microtubules' physical properties and neurite morphology
Frontiers Cellular cartography: Towards an atlas of the neuronal microtubule cytoskeleton
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