A regulatory role for the unstructured C-terminal domain of the CtBP transcriptional corepressor.
A regulatory role for the unstructured C-terminal domain of the CtBP transcriptional corepressor.
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CtBP 转录辅阻遏物非结构化 C 端结构域的调节作用。
DOI:
10.1101/2023.05.19.541472
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发表时间:
2023
期刊:
影响因子:
--
通讯作者:
Arnosti,DavidN
中科院分区:
文献类型:
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作者:
Raicu,Ana-Maria;Suresh,Megha;Arnosti,DavidN
The C-terminal binding protein (CtBP) is a transcriptional corepressor that plays critical roles in development, tumorigenesis, and cell fate. CtBP proteins are structurally similar to alpha hydroxyacid dehydrogenases and feature a prominent intrinsically disordered region in the C terminus. In the mammalian system, CtBP proteins lacking the C-terminal domain (CTD) are able to function as transcriptional regulators and oligomerize, putting into question the significance of this unstructured domain for gene regulation. Yet, the presence of an unstructured CTD of ∼100 residues, including some short motifs, is conserved across Bilateria, indicating the importance of maintaining this domain over evolutionary time. To uncover the significance of the CtBP CTD, we functionally tested naturally occurringDrosophilaisoforms of CtBP that possess or lack the CTD, namely CtBP(L) and CtBP(S). We used the CRISPRi system to recruit dCas9-CtBP(L) and dCas9-CtBP(S) to endogenous promoters to directly compare their transcriptional impactsin vivo. Interestingly, CtBP(S) was able to significantly repress transcription of theMpp6promoter, while CtBP(L) was much weaker, suggesting that the long CTD may modulate CtBP’s repression activity. In contrast, in cell culture, the isoforms behaved similarly on a transfectedMpp6reporter gene. The context-specific differences in activity of these two developmentally regulated isoforms suggests that the CTD may help provide a spectrum of repression activity suitable for developmental programs.