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Kuppel Erobern Fertigkeit clip 170 Perseus Osten Jonglieren

Domain architecture of CLIP-170 and EB1. A, domain architecture of EB1... |  Download Scientific Diagram
Domain architecture of CLIP-170 and EB1. A, domain architecture of EB1... | Download Scientific Diagram

Cytoplasmic Linker Protein-170 Enhances Spreading and Phagocytosis in  Activated Macrophages by Stabilizing Microtubules | The Journal of  Immunology
Cytoplasmic Linker Protein-170 Enhances Spreading and Phagocytosis in Activated Macrophages by Stabilizing Microtubules | The Journal of Immunology

Microtubule binding proteins CLIP-170, EB1, and p150Glued form distinct  plus-end complexes. - Abstract - Europe PMC
Microtubule binding proteins CLIP-170, EB1, and p150Glued form distinct plus-end complexes. - Abstract - Europe PMC

Interactions between CLIP-170, Tubulin, and Microtubules: Implications for  the Mechanism of CLIP-170 Plus-End Tracking Behavior | Molecular Biology of  the Cell
Interactions between CLIP-170, Tubulin, and Microtubules: Implications for the Mechanism of CLIP-170 Plus-End Tracking Behavior | Molecular Biology of the Cell

Stress-induced phosphorylation of CLIP-170 by JNK promotes microtubule  rescue | Journal of Cell Biology | Rockefeller University Press
Stress-induced phosphorylation of CLIP-170 by JNK promotes microtubule rescue | Journal of Cell Biology | Rockefeller University Press

Ninein is essential for apico-basal microtubule formation and CLIP-170  facilitates its redeployment to non-centrosomal microtubule organizing  centres | Open Biology
Ninein is essential for apico-basal microtubule formation and CLIP-170 facilitates its redeployment to non-centrosomal microtubule organizing centres | Open Biology

CLIP-170 Highlights Growing Microtubule Ends In Vivo: Cell
CLIP-170 Highlights Growing Microtubule Ends In Vivo: Cell

Purification and Analysis of Authentic CLIP-170 and Recombinant Fragments*  - Journal of Biological Chemistry
Purification and Analysis of Authentic CLIP-170 and Recombinant Fragments* - Journal of Biological Chemistry

CLIP-170 microtuble found to bind tightly to formins to accelerate actin  filament elongation
CLIP-170 microtuble found to bind tightly to formins to accelerate actin filament elongation

Anti-CLIP-170 Antibody (F-3) | SCBT - Santa Cruz Biotechnology
Anti-CLIP-170 Antibody (F-3) | SCBT - Santa Cruz Biotechnology

Stress-induced phosphorylation of CLIP-170 by JNK promotes microtubule  rescue | Journal of Cell Biology | Rockefeller University Press
Stress-induced phosphorylation of CLIP-170 by JNK promotes microtubule rescue | Journal of Cell Biology | Rockefeller University Press

Figure 2. Model for the Role o [IMAGE] | EurekAlert! Science News Releases
Figure 2. Model for the Role o [IMAGE] | EurekAlert! Science News Releases

Model of phosphorylation-mediated autoinhibition of CLIP-170. CLIP-170... |  Download Scientific Diagram
Model of phosphorylation-mediated autoinhibition of CLIP-170. CLIP-170... | Download Scientific Diagram

CLIP-170 and IQGAP1 Cooperatively Regulate Dendrite Morphology | Journal of  Neuroscience
CLIP-170 and IQGAP1 Cooperatively Regulate Dendrite Morphology | Journal of Neuroscience

CLIP-170 and IQGAP1 Cooperatively Regulate Dendrite Morphology | Journal of  Neuroscience
CLIP-170 and IQGAP1 Cooperatively Regulate Dendrite Morphology | Journal of Neuroscience

CLIP-170 siRNA (m), shRNA and Lentiviral Particle Gene Silencers | SCBT -  Santa Cruz Biotechnology
CLIP-170 siRNA (m), shRNA and Lentiviral Particle Gene Silencers | SCBT - Santa Cruz Biotechnology

α-Tubulin Tyrosination and CLIP-170 Phosphorylation Regulate the Initiation  of Dynein-Driven Transport in Neurons - ScienceDirect
α-Tubulin Tyrosination and CLIP-170 Phosphorylation Regulate the Initiation of Dynein-Driven Transport in Neurons - ScienceDirect

CLIP-170 Highlights Growing Microtubule Ends In Vivo: Cell
CLIP-170 Highlights Growing Microtubule Ends In Vivo: Cell

AMPK regulates cell shape of cardiomyocytes by modulating turnover of  microtubules through CLIP-170 | bioRxiv
AMPK regulates cell shape of cardiomyocytes by modulating turnover of microtubules through CLIP-170 | bioRxiv

α-Tubulin Tyrosination and CLIP-170 Phosphorylation Regulate the Initiation  of Dynein-Driven Transport in Neurons - ScienceDirect
α-Tubulin Tyrosination and CLIP-170 Phosphorylation Regulate the Initiation of Dynein-Driven Transport in Neurons - ScienceDirect

H. Goodson - Microtubule Plus-ends
H. Goodson - Microtubule Plus-ends

Ninein is essential for apico-basal microtubule formation and CLIP-170  facilitates its redeployment to non-centrosomal microtubule organizing  centres | Open Biology
Ninein is essential for apico-basal microtubule formation and CLIP-170 facilitates its redeployment to non-centrosomal microtubule organizing centres | Open Biology

AMPK regulates cell shape of cardiomyocytes by modulating turnover of  microtubules through CLIP‐170 | EMBO reports
AMPK regulates cell shape of cardiomyocytes by modulating turnover of microtubules through CLIP‐170 | EMBO reports

LIS1, CLIP-170's Key to the Dynein/Dynactin Pathway | Molecular and  Cellular Biology
LIS1, CLIP-170's Key to the Dynein/Dynactin Pathway | Molecular and Cellular Biology