Functional Coordination among the Golgi Complex, the Centrosome and the Microtubule Cytoskeleton during the Cell Cycle
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Summary
Findings indicating how the Golgi complex and the centrosome cooperate in organizing the microtubule network for the directional protein transport and centrosomes positioning required for cell polarization and regulating fundamental cell division processes are summarized.
- Type
- review
- Published
- 2022-01-21
- Cited by
- 24
- References
- 129
- Access
- Open access
- OpenAlex
- https://openalex.org/W4206182605
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:246191010
Keywords
Centrosome, Golgi apparatus, Cell biology, Centrosome cycle, Microtubule organizing center
References
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- Intermediate compartment (IC): from pre-Golgi vacuoles to a semi-autonomous membrane system
- Microtubule Plus End: A Hub of Cellular Activities
- GM130 regulates Golgi-derived spindle assembly by activating TPX2 and capturing microtubules
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- Exiting the Golgi complex
- Neuronal polarity and trafficking.
- Molecular mechanism and functional role of brefeldin A-mediated ADP-ribosylation of CtBP1/BARS
- Microtubule nucleation at the cis‐side of the Golgi apparatus requires AKAP450 and GM130
- Recruitment of CG‐NAP to the Golgi apparatus through interaction with dynein–dynactin complex
- Mechanical role of actin dynamics in the rheology of the Golgi complex and in Golgi-associated trafficking events.
- Anisotropy of cell adhesive microenvironment governs cell internal organization and orientation of polarity
- Modulation of Golgi-associated microtubule nucleation throughout the cell cycle
- HEF1-Aurora A Interactions: Points of Dialog between the Cell Cycle and Cell Attachment Signaling Networks
- Spindle-dependent partitioning of the Golgi ribbon
- Spatial control of Cdc42 signalling by a GM130-RasGRF complex regulates polarity and tumorigenesis
- The Golgi Protein p115 Associates with γ-Tubulin and Plays a Role in Golgi Structure and Mitosis Progression*
- Pericentrin, a highly conserved centrosome protein involved in microtubule organization.
- Emerging new roles of GM130, a cis-Golgi matrix protein, in higher order cell functions.
- Mechanisms of leading edge protrusion in interstitial migration
Cited by
- Golgi Complex: A Signaling Hub in Cancer
- Structural Organization and Function of the Golgi Ribbon During Cell Division
- Vimentin intermediate filaments provide structural stability to the mammalian Golgi apparatus
- New insights into the role of the Golgi apparatus in the pathogenesis and therapeutics of human diseases
- The JMJD6/HURP axis promotes cell migration via NF‐κB‐dependent centrosome repositioning and Cdc42‐mediated Golgi repositioning
- Divergent Contribution of the Golgi Apparatus to Microtubule Organization in Related Cell Lines
- Morphological Evidence for Novel Roles of Microtubules in Macrophage Phagocytosis
- The Chlamydia trachomatis IncM Protein Interferes with Host Cell Cytokinesis, Centrosome Positioning, and Golgi Distribution and Contributes to the Stability of the Pathogen-Containing Vacuole
- WAVE facilitates polarized E-cadherin transport
- Aberrant centrosome biogenesis disrupts nephron progenitor cell renewal and fate resulting in fibrocystic kidney disease
- Novel Acrylate-Based Derivatives: Design, Synthesis, Antiproliferative Screening, and Docking Study as Potential Combretastatin Analogues
- Split but merge: Golgi fragmentation in physiological and pathological conditions
- The role of Map1b in regulating osteoblast polarity, proliferation, differentiation and migration.
- Reevaluating Golgi fragmentation and its implications in wound repair
- RNA scaffolds the Golgi ribbon by forming condensates with GM130
- Microchip construction for migration assays: investigating the impact of physical confinement on cell morphology and motility during vaccinia virus infection
- Megakaryocyte centrosomal and Golgi structural perturbations in patients with primary myelofibrosis and with RUNX1 germline mutation
- The role of Golgi complex proteins in cell division and consequences of their dysregulation
- Tumor-derived exosomal LINC01812 induces M2 macrophage polarization to promote perineural invasion in cholangiocarcinoma.
- Seeing the Unseen: Structured Illumination Microscopy for Organelles Dynamics
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