Centriolar satellites: busy orbits around the centrosome.

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Last updated 19 dezembro 2024
Centriolar satellites: busy orbits around the centrosome.
Semantic Scholar extracted view of "Centriolar satellites: busy orbits around the centrosome." by F. Bärenz et al.
Centriolar satellites: busy orbits around the centrosome.
Frontiers Moonlighting at the Poles: Non-Canonical Functions of Centrosomes
Centriolar satellites: busy orbits around the centrosome.
Zika virus increases mind bomb 1 levels, causing degradation of pericentriolar material 1 (PCM1) and dispersion of PCM1-containing granules from the centrosome - Journal of Biological Chemistry
Centriolar satellites: busy orbits around the centrosome.
CEP90 Is Required for the Assembly and Centrosomal Accumulation of Centriolar Satellites, Which Is Essential for Primary Cilia Formation
Centriolar satellites: busy orbits around the centrosome.
Centriolar satellites are acentriolar assemblies of centrosomal proteins
Centriolar satellites: busy orbits around the centrosome.
Spatial and proteomic profiling reveals centrosome-independent features of centriolar satellites. - Abstract - Europe PMC
Centriolar satellites: busy orbits around the centrosome.
Centriolar satellites: key mediators of centrosome functions
Centriolar satellites: busy orbits around the centrosome.
Small organelle, big responsibility: the role of centrosomes in development and disease
Centriolar satellites: busy orbits around the centrosome.
PDF] The pericentriolar satellite protein CEP90 is crucial for integrity of the mitotic spindle pole
Centriolar satellites: busy orbits around the centrosome.
The centriolar satellite protein SSX2IP promotes centrosome maturation, Journal of Cell Biology
Centriolar satellites: busy orbits around the centrosome.
CP110 and its network of partners coordinately regulate cilia assembly, Cilia
Centriolar satellites: busy orbits around the centrosome.
The AmAZI1ng Roles of Centriolar Satellites during Development
Centriolar satellites: busy orbits around the centrosome.
Spatial and proteomic profiling reveals centrosome-independent features of centriolar satellites. - Abstract - Europe PMC
Centriolar satellites: busy orbits around the centrosome.
Frontiers Centrosome Dysfunction Contributes to Chromosome Instability, Chromoanagenesis, and Genome Reprograming in Cancer
Centriolar satellites: busy orbits around the centrosome.
Centriolar satellite– and hMsd1/SSX2IP-dependent microtubule anchoring is critical for centriole assembly
Centriolar satellites: busy orbits around the centrosome.
Regulation of centriolar satellite integrity and its physiology

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