Regulation of human Dicer by the resident ER membrane protein CLIMP-63
Geneviève Pépin1, Marjorie P Perron, Patrick Provost
1CHUQ Research Center/CHUL, 2705 Blvd Laurier, QC, G1V 4G2, Canada.
Abstract:
The ribonuclease Dicer plays a central role in the microRNA pathway by catalyzing the formation of microRNAs, which are known to regulate messenger RNA (mRNA) translation. In order to improve our understanding of the molecular context in which Dicer functions and how it is regulated in human cells, we sought to expand its protein interaction network by employing a yeast two-hybrid screening strategy. This approach led to the identification and characterization of cytoskeleton-linking endoplasmic reticulum (ER) membrane protein of 63 kDa (CLIMP-63) as a novel Dicer-interacting protein. CLIMP-63 interacts with Dicer to form a high molecular weight complex, which is electrostatic in nature, is not mediated by RNA and is catalytically active in pre-microRNA processing. CLIMP-63 is required for stabilizing Dicer protein and for optimal regulation of a reporter gene coupled to the 3' untranslated region of HMGA2 mRNA in human cells. Interacting with a portion of the luminal domain of CLIMP-63 and within minutes of its synthesis, our results suggest that Dicer transits through the ER, is glycosylated and can be secreted by cultured human cells with CLIMP-63. Our findings define CLIMP-63 as a novel protein interactor and regulator of Dicer function, involved in maintaining Dicer protein levels in human cells.
Insights
Cytoskeleton-linking endoplasmic reticulum membrane protein of 63 kDa (CLIMP-63) interacts with Dicer, a key enzyme in microRNA biogenesis. This interaction stabilizes Dicer and influences microRNA-mediated gene regulation in human cells.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Dicer is essential for microRNA (miRNA) biogenesis, regulating messenger RNA (mRNA) translation.
- Understanding Dicer's cellular context and regulation is crucial for comprehending miRNA pathway control.
Purpose of the Study:
- To identify novel Dicer-interacting proteins and elucidate Dicer's regulatory network in human cells.
- To characterize the functional significance of Dicer-CLIMP-63 interactions.
Main Methods:
- Yeast two-hybrid screening to identify Dicer-binding partners.
- Biochemical assays to characterize the Dicer-CLIMP-63 complex.
- Reporter gene assays to assess functional impact on miRNA regulation.
Main Results:
- CLIMP-63 was identified as a novel Dicer-interacting protein.
- CLIMP-63 forms a stable, RNA-independent, high molecular weight complex with Dicer.
- CLIMP-63 stabilizes Dicer protein levels and is required for optimal regulation of HMGA2 mRNA.
- Dicer appears to transit through the ER, undergo glycosylation, and can be secreted with CLIMP-63.
Conclusions:
- CLIMP-63 is a novel interactor and regulator of Dicer function.
- CLIMP-63 plays a critical role in maintaining Dicer protein stability and influencing miRNA-mediated gene silencing.
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