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Mutant huntingtin induces neuronal apoptosis via derepressing the non-canonical poly(A) polymerase PAPD5

Nature Communications. 2025-04; 
Zhefan Stephen Chen, Shaohong Isaac Peng, Lok I Leong, Terence Gall-Duncan, Nathan Siu Jun Wong, Tsz Ho Li, Xiao Lin, Yuming Wei, Alex Chun Koon, Junzhe Huang, Jacquelyne Ka-Li Sun, Clinton Turner, Lynette Tippett, Maurice A. Curtis, Richard L. M. Faull, Kin Ming Kwan, Hei-Man Chow, Ho Ko, Ting-Fung Chan, Kevin Talbot, Christopher E. Pearson & Ho Yin Edwin Chan The Chinese University of Hong Kong
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Gene Synthesis To generate PAPD5+561/+860 wild-type-luciferase and PAPD5+561/+860 YY1 mutant-luciferase constructs, the PAPD5+561/+860 wild-type and PAPD5+561/+860 YY1 mutant DNA sequences were synthesized by GenScript and subcloned into pGL4.17[luc2/Neo] firefly luciferase vector (E6721, Promega) using NheI and HindIII. Get A Quote

摘要

MicroRNAs (miRNAs) are small non-coding RNAs that play crucial roles in post-transcriptional gene regulation. Poly(A) RNA polymerase D5 (PAPD5) catalyzes the addition of adenosine to the 3′ end of miRNAs. In this study, we demonstrate that the Yin Yang 1 protein, a transcriptional repressor of PAPD5, is recruited to both RNA foci and protein aggregates, resulting in an upregulation of PAPD5 expression in Huntington’s disease (HD). Additionally, we identify a subset of PAPD5-regulated miRNAs with increased adenylation and reduced expression in our disease model. We focus on miR-7-5p and find that its reduction causes the activation of the TAB2-mediated TAK1–MKK4–JNK pro-apoptotic pathway. This pathway is... More

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