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Linking cortical microtubule attachment and... | F1000Research
Linking cortical microtubule attachment and... | F1000Research

CLIP-170S is a microtubule +TIP variant that confers resistance to taxanes  by impairing drug-target engagement - ScienceDirect
CLIP-170S is a microtubule +TIP variant that confers resistance to taxanes by impairing drug-target engagement - ScienceDirect

Tension of plus-end tracking protein Clip170 confers directionality and  aggressiveness during breast cancer migration | Cell Death & Disease
Tension of plus-end tracking protein Clip170 confers directionality and aggressiveness during breast cancer migration | Cell Death & Disease

Model for plus-end tracking activity of mammalian EB1 and CLIP-170. (A)...  | Download Scientific Diagram
Model for plus-end tracking activity of mammalian EB1 and CLIP-170. (A)... | Download Scientific Diagram

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

Overexpression of the microtubule-binding protein CLIP-170 induces a +TIP  network superstructure consistent with a biomolecular condensate | PLOS ONE
Overexpression of the microtubule-binding protein CLIP-170 induces a +TIP network superstructure consistent with a biomolecular condensate | PLOS ONE

Overexpression of the microtubule-binding protein CLIP-170 induces a +TIP  network superstructure consistent with a biomolecular condensate | bioRxiv
Overexpression of the microtubule-binding protein CLIP-170 induces a +TIP network superstructure consistent with a biomolecular condensate | bioRxiv

CLIP-170S is a microtubule +TIP variant that confers resistance  to taxanes by impairing drug-target engageme
CLIP-170S is a microtubule +TIP variant that confers resistance to taxanes by impairing drug-target engageme

CLIP-170S is a microtubule +TIP variant that confers resistance  to taxanes by impairing drug-target engageme
CLIP-170S is a microtubule +TIP variant that confers resistance to taxanes by impairing drug-target engageme

Microtubule “Plus-End-Tracking Proteins”: Cell
Microtubule “Plus-End-Tracking Proteins”: Cell

CLIP‐170 spatially modulates receptor tyrosine kinase recycling to  coordinate cell migration - Zaoui - 2019 - Traffic - Wiley Online Library
CLIP‐170 spatially modulates receptor tyrosine kinase recycling to coordinate cell migration - Zaoui - 2019 - Traffic - Wiley Online Library

CLIP170 Recombinant Rabbit Monoclonal Antibody [JE63-82] (HA721004) – HUABIO
CLIP170 Recombinant Rabbit Monoclonal Antibody [JE63-82] (HA721004) – HUABIO

HIV‐1 capsids mimic a microtubule regulator to coordinate early stages of  infection | The EMBO Journal
HIV‐1 capsids mimic a microtubule regulator to coordinate early stages of infection | The EMBO Journal

The microtubule plus-end-tracking protein CLIP-170 associates with the  spermatid manchette and is essential for spermatogenesis
The microtubule plus-end-tracking protein CLIP-170 associates with the spermatid manchette and is essential for spermatogenesis

Model for plus-end tracking activity of mammalian EB1 and CLIP-170. (A)...  | Download Scientific Diagram
Model for plus-end tracking activity of mammalian EB1 and CLIP-170. (A)... | Download Scientific Diagram

RCSB PDB - 2E3H: Crystal structure of the CLIP-170 CAP-Gly domain 2
RCSB PDB - 2E3H: Crystal structure of the CLIP-170 CAP-Gly domain 2

CLIP1 Antibodies & ELISA Kits, CLIP170 Proteins
CLIP1 Antibodies & ELISA Kits, CLIP170 Proteins

CLIP-170 protein interactions are regulated in an... | Download Scientific  Diagram
CLIP-170 protein interactions are regulated in an... | Download Scientific Diagram

Ubiquitination of CLIP-170 family protein restrains polarized growth upon  DNA replication stress | Nature Communications
Ubiquitination of CLIP-170 family protein restrains polarized growth upon DNA replication stress | Nature Communications

Mapping multivalency in the CLIP-170–EB1 microtubule plus-end complex -  ScienceDirect
Mapping multivalency in the CLIP-170–EB1 microtubule plus-end complex - ScienceDirect

Overexpression of the microtubule-binding protein CLIP-170 induces a +TIP  network superstructure consistent with a biomolecular condensate | PLOS ONE
Overexpression of the microtubule-binding protein CLIP-170 induces a +TIP network superstructure consistent with a biomolecular condensate | PLOS ONE

Overexpression of the microtubule-binding protein CLIP-170 induces a +TIP  network superstructure consistent with a biomolecular condensate | PLOS ONE
Overexpression of the microtubule-binding protein CLIP-170 induces a +TIP network superstructure consistent with a biomolecular condensate | PLOS ONE

Phase separation of +TIP-networks regulates microtubule dynamics | bioRxiv
Phase separation of +TIP-networks regulates microtubule dynamics | bioRxiv

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