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Published on: April 24, 2021
Knockdown of pre-mRNA cleavage factor Im 25 kDa promotes neurite outgrowth
Hidefumi Fukumitsu1, Hitomi Soumiya, Shoei Furukawa
1Laboratory of Molecular Biology, Department of Biofunctional Analysis, Gifu Pharmaceutical University, Daigakunishi 1-25-4, Gifu 501 1196, Japan. hfukumi@gifu-pu.ac.jp
Abstract:
Mammalian precursor mRNA (pre-mRNA) cleavage factor I (CFIm) plays important roles in the selection of poly(A) sites in a 3'-untranslated region (3'-UTR), producing mRNAs with variable 3' ends. Because 3'-UTRs often contain cis elements that impact stability or localization of mRNA or translation, alternative polyadenylation diversifies utilization of primary transcripts in mammalian cells. However, the physiological role of CFIm remains unclear. CFIm acts as a heterodimer comprising a 25kDa subunit (CFIm25) and one of the three large subunits-CFIm59, CFIm68, or CFIm72. CFIm25 binds directly to RNA and introduces and anchors the larger subunit. To examine the physiological roles of CFIm, we knocked down the CFIm25 gene in neuronal cells using RNA interference. Knockdown of CFIm25 increased the number of primary dendrites of developing hippocampal neurons and promoted nerve growth factor (NGF)-induced neurite extension from rat pheochromocytoma PC12 cells without affecting the morphology of proliferating PC12 cells. On the other hand, CFIm25 knockdown did not influence constitutively active or dominantly negative RhoA suppression or promotion of NGF-induced neurite extension from PC12 cells, respectively. Taken together, our results indicate that endogenous CFIm may promote neuritogenesis in developing neurons by coordinating events upstream of NGF-induced RhoA inactivation.
Insights
Mammalian precursor mRNA (pre-mRNA) cleavage factor I (CFIm) knockdown promotes neuronal development by enhancing dendrite formation and neurite extension. This suggests CFIm plays a key role in neuritogenesis.
Area of Science:
- Molecular Biology
- Neuroscience
Background:
- Mammalian precursor mRNA (pre-mRNA) cleavage factor I (CFIm) is crucial for alternative polyadenylation, diversifying mRNA 3' ends.
- CFIm's physiological roles, particularly in neuronal development, remain largely uncharacterized.
- CFIm functions as a heterodimer, with CFIm25 binding RNA and anchoring larger subunits.
Purpose of the Study:
- To investigate the physiological roles of CFIm in neuronal cells.
- To elucidate the function of CFIm25 in neuritogenesis and neurite extension.
Main Methods:
- RNA interference (RNAi) was used to knock down CFIm25 expression in neuronal cells.
- Effects on primary dendrite number in hippocampal neurons were assessed.
- Nerve growth factor (NGF)-induced neurite extension in PC12 cells was analyzed, including RhoA signaling pathways.
Main Results:
- CFIm25 knockdown significantly increased primary dendrite numbers in developing hippocampal neurons.
- Knockdown promoted NGF-induced neurite extension in PC12 cells, without altering their general morphology.
- CFIm25 knockdown did not affect RhoA signaling in response to NGF.
Conclusions:
- Endogenous CFIm appears to promote neuritogenesis in developing neurons.
- CFIm may coordinate events upstream of NGF-induced RhoA inactivation during neuronal development.
- CFIm25 is a key regulator of neuronal differentiation and neurite outgrowth.
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