Misfolded Gβ is recruited to cytoplasmic dynein by Nudel for efficient clearance

The Gβγ heterodimer is an important signal transducer. Gβ, however, is prone to misfoiding due to its requirement for GT and chaperones for proper folding. How cells dispose of misfolded Gβ (mfGβ) is not clear. Here, we showed that mfGβ was able to be polyubiquitinated and subsequently degraded by t...

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Veröffentlicht in:Cell research 2012-07, Vol.22 (7), p.1140-1154
Hauptverfasser: Wan, Yihan, Yang, Zhenye, Guo, Jing, Zhang, Qiangge, Zeng, Liyong, Song, Wei, Xiao, Yue, Zhu, Xueliang
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Sprache:eng
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Zusammenfassung:The Gβγ heterodimer is an important signal transducer. Gβ, however, is prone to misfoiding due to its requirement for GT and chaperones for proper folding. How cells dispose of misfolded Gβ (mfGβ) is not clear. Here, we showed that mfGβ was able to be polyubiquitinated and subsequently degraded by the proteasome. It was sequestered in aggresomes after the inhibition of the proteasome activity with MG132. Sustained activation of Gβγ signaling further elevated cellular levels of the ubiquitinated Gβ. Moreover, Nudel, a regulator of cytoplasmic dynein, the microtubule minus end-directed motor, directly interacted with both the unubiquitinated and ubiquitinated mfGβ. Increasing the levels of both mfGβ and Nudel promoted the association of Gβ with both Nudel and dynein, resulting in robust aggresome formation in a dyneinependent manner. Depletion of Nudel by RNAi reduced the dynein-associated mfGβ, impaired the MG132-induced aggresome formation, and markedly prolonged the half-life of nascent Gβ. Therefore, cytosolic mfGβ is recruited to dynein by Nudel and transported to the centrosome for rapid sequestration and degradation. Such a process not only eliminates mfGβ efficiently for the control of protein quality, but may also help to terminate the Gβγ signaling.
ISSN:1001-0602
1748-7838
DOI:10.1038/cr.2012.41