Centriolar satellites: busy orbits around the centrosome.

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Last updated 01 novembro 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.
Cep126 is required for pericentriolar satellite localisation to the centrosome and for primary cilium formation - Bonavita - 2014 - Biology of the Cell - Wiley Online Library
Centriolar satellites: busy orbits around the centrosome.
Full article: Centriolar satellites associate with condensed chromatin in early mouse oocytes and undergo redistribution during transition to dictyate
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.
Centriolar satellites expedite mother centriole remodeling to promote ciliogenesis
Centriolar satellites: busy orbits around the centrosome.
PDF] Osmotic Stress Blocks Mobility and Dynamic Regulation of Centriolar Satellites
Centriolar satellites: busy orbits around the centrosome.
Centriolar satellites expedite mother centriole remodeling to promote ciliogenesis
Centriolar satellites: busy orbits around the centrosome.
Differential requirement for centriolar satellites in cilium formation among different vertebrate cells
Centriolar satellites: busy orbits around the centrosome.
Centriolar Satellite Markers - Atlas Antibodies
Centriolar satellites: busy orbits around the centrosome.
Centrosomes back in the limelight Philosophical Transactions of the Royal Society B: Biological Sciences
Centriolar satellites: busy orbits around the centrosome.
C2cd3 is critical for centriolar distal appendage assembly and ciliary vesicle docking in mammals
Centriolar satellites: busy orbits around the centrosome.
Cells, Free Full-Text
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.
Spatial and proteomic profiling reveals centrosome-independent features of centriolar satellites. - Abstract - Europe PMC
Centriolar satellites: busy orbits around the centrosome.
Centriole splitting caused by loss of the centrosomal linker protein C-NAP1 reduces centriolar satellite density and impedes centrosome amplification

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