4.8 Article

Wwp2 mediates Oct4 ubiquitination and its own auto-ubiquitination in a dosage-dependent manner

期刊

CELL RESEARCH
卷 20, 期 3, 页码 332-344

出版社

INST BIOCHEMISTRY & CELL BIOLOGY
DOI: 10.1038/cr.2009.136

关键词

degradation; embryonal carcinoma cells; Oct4; auto-ubiquitination; ubiquitin chain linkage; Wwp2

资金

  1. National Natural Science Foundation of China [30871257, 30730051]
  2. National High Technology Research, Development Program of China [2006CB943901, 2007CB947904]
  3. Shanghai Science and Technology Developmental Foundation [08JC1413100]
  4. Shanghai Leading Academic Discipline [S30201]

向作者/读者索取更多资源

Transcription factor Oct4 plays critical roles in maintaining pluripotency and controlling lineage commitment of embryonic stem cells (ESCs). Our previous study indicates that Wwp2, a mouse HECT-type E3 ubiquitin ligase, ubiquitinates Oct4 and promotes its degradation in a heterologous system. However, roles of Wwp2 in regulating endogenous Oct4 protein levels as well as molecular characteristics of the function of Wwp2 have not been determined. Here, we report that Wwp2 plays an important role in Oct4 ubiquitination and degradation during differentiation of embryonal carcinoma cells (ECCs), although it does not appear to affect Oct4 protein levels in the undifferentiated ECCs and ESCs. Importantly, inhibition of Wwp2 expression by specific RNA interference elevates the Oct4 protein level, leading to attenuation in retinoid acid-induced activation of differentiation-related marker genes. Mechanistically, Wwp2 catalyzes Oct4 poly-ubiquitination via the lysine 63 linkage in a dosage-dependent manner. Interestingly, Wwp2 also regulates its own ligase activity in a similar manner. Moreover, auto-ubiquitination of Wwp2 occurs through an intra-molecular mechanism. Taken together, these results demonstrate a crucial role of Wwp2 in controlling endogenous Oct4 protein levels during differentiation processes of ECCs and suggest an interesting dosage-dependent mechanism for regulating the catalytic activity of the E3 ubiquitin ligase, Wwp2.

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