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A Tale of Two Cbls: Interplay of c-Cbl and Cbl-b in Epidermal Growth Factor Receptor Downregulation▿

机译:两个Cbl的故事:c-Cbl和Cbl-b在表皮生长因子受体下调中的相互作用▿

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摘要

The precise role of Cbl in epidermal growth factor (EGF) receptor (EGFR) endocytosis and trafficking remains to be fully uncovered. Here, we showed that mutant EGFR1044, which was truncated after residue 1044, did not associate with c-Cbl and was not ubiquitinated initially in response to EGF but was internalized with kinetics similar to those of wild-type EGFR. This finding indicates that c-Cbl-mediated ubiquitination is not required for EGF-induced EGFR endocytosis. We also showed that the previously identified internalization-deficient mutant receptor EGFR1010LL/AA bound to c-Cbl and was fully ubiquitinated in response to EGF, which indicates that c-Cbl binding and ubiquitination are not sufficient for EGFR internalization. We next investigated EGFR trafficking following EGFR internalization. We found that c-Cbl disassociation from EGFR occurred well in advance of EGFR degradation and that this event was concurrent with the selective dephosphorylation of EGFR at Y1045. This finding suggests that once EGFR is ubiquitinated, continual Cbl association is not required for EGFR degradation. Because EGFR1044 is ubiquitinated and degraded similarly to wild-type EGFR, we examined the role of another prominent Cbl homologue, Cbl-b, and found that Cbl-b was associated with both EGFR and EGFR1044. Further study showed that Cbl-b bound to EGFR at two regions: one in the C-terminal direction from residue 1044 and one in the N-terminal direction from residue 958. Moreover, Cbl-b association with EGFR rose markedly following a decrease in c-Cbl association, corresponding to a second peak of EGFR ubiquitination occurring later in EGFR trafficking. Using RNA interference to knock down both c-Cbl and Cbl-b, we were able to abolish EGFR downregulation. This knockdown had no affect on the rate of EGF-induced EGFR internalization. We found that the two Cbls accounted for total receptor ubiquitination and that while c-Cbl and Cbl-b are each alone sufficient to effect EGFR degradation, both are involved in the physiological, EGF-mediated process of receptor downregulation. Furthermore, these data ultimately reveal a previously unacknowledged temporal interplay of two major Cbl homologues with the trafficking of EGFR.
机译:Cbl在表皮生长因子(EGF)受体(EGFR)内吞和运输中的确切作用仍有待完全发现。在这里,我们显示了在残基1044之后被截断的突变型EGFR1044,它不与c-Cbl结合,并且在响应EGF时并未被泛素化,但其内在动力学类似于野生型EGFR。该发现表明,EGF诱导的EGFR胞吞作用不需要c-Cbl介导的泛素化。我们还显示,先前鉴定的内在缺陷型突变受体EGFR1010LL / AA与c-Cbl结合,并在响应EGF时被完全泛素化,这表明c-Cbl结合和泛素化不足以使EGFR内在化。接下来,我们调查了EGFR内部化后的EGFR转运。我们发现与c-Cbl的EGFR分离早在EGFR降解之前就已经发生,并且该事件与Y1045时EGFR的选择性去磷酸化同时发生。这一发现表明,一旦EGFR被泛素化,EGFR降解就不需要持续的Cbl结合。因为EGFR1044与野生型EGFR类似地被泛素化和降解,所以我们检查了另一个著名的Cbl同源物Cbl-b的作用,发现Cbl-b与EGFR和EGFR1044都相关。进一步的研究表明,Cbl-b在两个区域与EGFR结合:一个在残基1044的C端方向,一个在残基958的N端方向。此外,随着EGFR的降低,Cbl-b与EGFR的结合显着增加。 c-Cbl关联,对应于EGFR转运稍后出现的EGFR泛素化的第二个高峰。使用RNA干扰敲低c-Cbl和Cbl-b,我们能够消除EGFR下调。这种击倒对EGF诱导的EGFR内在化的速率没有影响。我们发现,这两个Cbl占总受体泛素化的程度,并且虽然c-Cbl和Cbl-b各自单独足以影响EGFR降解,但它们都参与了生理性,EGF介导的受体下调过程。此外,这些数据最终揭示了两个主要的Cbl同源物与EGFR转运之间先前未被认可的时间相互作用。

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