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Details on Person A BBSome subunit links ciliogenesis, microtubule stability, and acetylation

Class:IdLiteratureReference:5618164
_displayNameA BBSome subunit links ciliogenesis, microtubule stability, and acetylation
_timestamp2014-08-19 14:49:11
author[Person:5617503] Loktev, Alexander V
[Person:5609740] Zhang, Qihong
[Person:5618166] Beck, John S
[Person:5618168] Searby, Charles C
[Person:4416525] Scheetz, Todd E
[Person:3769065] Bazan, J Fernando
[Person:3965162] Slusarski, Diane C
[Person:4416516] Sheffield, Val C
[Person:5609712] Jackson, Peter K
[Person:5617507] Nachury, Maxence V
created[InstanceEdit:5618165] Rothfels, Karen, 2014-08-19
journalDev. Cell
modified[InstanceEdit:5618177] Rothfels, Karen, 2014-08-19
pages854-65
pubMedIdentifier19081074
titleA BBSome subunit links ciliogenesis, microtubule stability, and acetylation
volume15
year2008
(literatureReference)[Complex:5617794] BBSome [cytosol] [Homo sapiens]
[Reaction:5617815] BBSome binds RAB3IP [Homo sapiens]
[Reaction:5618328] ATAT acetylates microtubules [Homo sapiens]
[Reaction:5618331] HDAC6 deacetylates microtubules [Homo sapiens]
[Pathway:5620920] Cargo trafficking to the periciliary membrane [Homo sapiens]
[Pathway:5620922] BBSome-mediated cargo-targeting to cilium [Homo sapiens]
[Reaction:5624125] Formation of the BBSome [Homo sapiens]
[Reaction:5638014] RAB11A:GTP-containing Golgi vesicles recruit RAB3IP [Homo sapiens]
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No pathways have been reviewed or authored by A BBSome subunit links ciliogenesis, microtubule stability, and acetylation (5618164)