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Interactions between CLIP-170, Tubulin, and Microtubules: Implications for the Mechanism of CLIP-170 Plus-End Tracking Behavior | Molecular Biology of the Cell
Microtubule “Plus-End-Tracking Proteins”: Cell
The CLIP-170 N-terminal domain binds directly to both F-actin and microtubules in a mutually exclusive manner - Journal of Biological Chemistry
The microtubule plus-end-tracking protein CLIP-170 associates with the spermatid manchette and is essential for spermatogenesis
Microtubule‐binding protein CLIP‐170 is a mediator of paclitaxel sensitivity - Sun - 2012 - The Journal of Pathology - Wiley Online Library
The microtubule plus-end-tracking protein CLIP-170 associates with the spermatid manchette and is essential for spermatogenesis
CLIP-170 and IQGAP1 Cooperatively Regulate Dendrite Morphology | Journal of Neuroscience
CLIP-170S is a microtubule +TIP variant that confers resistance to taxanes by impairing drug-target engageme
Overexpression of the microtubule-binding protein CLIP-170 induces a +TIP network superstructure consistent with a biomolecular condensate | PLOS ONE
PDF) The microtubule plus-end-tracking protein CLIP-170 associates with the spermatid manchette and is essential for spermatogenesis | Frank Grosveld - Academia.edu
Frontiers | TIPsy tour guides: how microtubule plus-end tracking proteins (+TIPs) facilitate axon guidance
Protein Paves the Way for Early HIV Infection - News Center
H. Goodson - Microtubule Plus-ends
Overexpression of the microtubule-binding protein CLIP-170 induces a +TIP network superstructure consistent with a biomolecular condensate | PLOS ONE
biosights: October 26, 2015 - CLIP-170 tips its hand in viral transport - YouTube
Ninein is essential for apico-basal microtubule formation and CLIP-170 facilitates its redeployment to non-centrosomal microtubule organizing centres | Open Biology
Mapping multivalency in the CLIP-170–EB1 microtubule plus-end complex - ScienceDirect
CLIP1 Antibodies & ELISA Kits, CLIP170 Proteins
CLIP-170 tracks growing microtubule ends by dynamically recognizing composite EB1/tubulin-binding sites | Journal of Cell Biology | Rockefeller University Press