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De novo formation of basal bodies in Naegleria gruberi: regulation by phosphorylation.


ABSTRACT: The de novo formation of basal bodies in Naegleria gruberi was preceded by the transient formation of a microtubule (MT)-nucleating complex containing gamma-tubulin, pericentrin, and myosin II complex (GPM complex). The MT-nucleating activity of GPM complexes was maximal just before the formation of visible basal bodies and then rapidly decreased. The regulation of MT-nucleating activity of GPM complexes was accomplished by a transient phosphorylation of the complex. Inhibition of dephosphorylation after the formation of basal bodies resulted in the formation of multiple flagella. 2D-gel electrophoresis and Western blotting showed a parallel relationship between the MT-nucleating activity of GPM complexes and the presence of hyperphosphorylated gamma-tubulin in the complexes. These data suggest that the nucleation of MTs by GPM complexes precedes the de novo formation of basal bodies and that the regulation of MT-nucleating activity of GPM complexes is essential to the regulation of basal body number.

SUBMITTER: Kim HK 

PROVIDER: S-EPMC2171617 | biostudies-literature | 2005 Jun

REPOSITORIES: biostudies-literature

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De novo formation of basal bodies in Naegleria gruberi: regulation by phosphorylation.

Kim Hong-Kyung HK   Kang Jeong-Gu JG   Yumura Shigehiko S   Walsh Charles J CJ   Cho Jin Won JW   Lee Joohun J  

The Journal of cell biology 20050601 5


The de novo formation of basal bodies in Naegleria gruberi was preceded by the transient formation of a microtubule (MT)-nucleating complex containing gamma-tubulin, pericentrin, and myosin II complex (GPM complex). The MT-nucleating activity of GPM complexes was maximal just before the formation of visible basal bodies and then rapidly decreased. The regulation of MT-nucleating activity of GPM complexes was accomplished by a transient phosphorylation of the complex. Inhibition of dephosphorylat  ...[more]

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