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Updated: May 7, 2026

Deacetylation Assays to Unravel the Interplay between Sirtuins SIRT2 and Specific Protein-substrates
Published on: February 27, 2016
Sirtuin 7 plays a role in ribosome biogenesis and protein synthesis
Yuan-Chin Tsai1, Todd M Greco, Ileana M Cristea
1Department of Molecular Biology, Princeton University, Princeton, New Jersey 08544.
Abstract:
It has been shown that SIRT7 regulates rDNA transcription and that reduced SIRT7 levels inhibit tumor growth. This anti-tumor effect could be due to reduced Pol I activity and perturbed ribosome biogenesis. In this study, using pulse labeling with RNA and amino acid analogs, we found that SIRT7 knockdown efficiently suppressed both RNA and protein synthesis. Surprisingly, SIRT7 knockdown preferentially inhibited protein synthesis over rDNA transcription, whereas the levels of both were reduced to similar extents following Pol I knockdown. Using an affinity purification mass spectrometry approach and functional analyses of the resulting SIRT7 interactome, we identified and validated SIRT7 interactions with proteins involved in ribosomal biogenesis. Indeed, SIRT7 co-fractionated with monoribosomes within a sucrose gradient. Using reciprocal isolations, we determined that SIRT7 interacts specifically with mTOR and GTF3C1, a component of the Pol III transcription factor TFIIIC2 complex. Further studies found that SIRT7 knockdown triggered an increase in the levels of LC3B-II, an autophagosome marker, suggesting a link between SIRT7 and the mTOR pathway. Additionally, we provide several lines of evidence that SIRT7 plays a role in modulating Pol III function. Immunoaffinity purification of SIRT7-GFP from a nuclear fraction demonstrated specific SIRT7 interaction with five out of six components of the TFIIIC2 complex, but not with the TFIIIA or TFIIIB complex, the former of which is required for Pol III-dependent transcription of tRNA genes. ChIP assays showed SIRT7 localization to the Pol III targeting genes, and SIRT7 knockdown triggered a reduction in tRNA levels. Taken together, these data suggest that SIRT7 may regulate Pol III transcription through mTOR and the TFIIIC2 complex. We propose that SIRT7 is involved in multiple pathways involved in ribosome biogenesis, and we hypothesize that its down-regulation may contribute to an antitumor effect, partly through the inhibition of protein synthesis.
Insights
Reduced SIRT7 levels inhibit tumor growth by suppressing protein synthesis and ribosome biogenesis. This study reveals SIRT7
Area of Science:
- Molecular Biology
- Cancer Research
- Cellular Metabolism
Background:
- Sirtuin 7 (SIRT7) is known to regulate ribosomal DNA (rDNA) transcription.
- Reduced SIRT7 levels have been associated with inhibited tumor growth.
- The anti-tumor effects of SIRT7 reduction may involve decreased RNA Polymerase I (Pol I) activity and impaired ribosome biogenesis.
Purpose of the Study:
- To investigate the precise mechanisms by which SIRT7 influences RNA and protein synthesis.
- To identify novel SIRT7 interactors involved in ribosome biogenesis and transcription.
- To explore the role of SIRT7 in regulating Pol I and Pol III transcription and its connection to the mTOR pathway.
Main Methods:
- Pulse labeling with RNA and amino acid analogs to assess synthesis rates.
- Affinity purification followed by mass spectrometry to identify SIRT7-interacting proteins.
- Sucrose gradient fractionation, reciprocal isolations, immunoaffinity purification, and Chromatin Immunoprecipitation (ChIP) assays.
Main Results:
- SIRT7 knockdown significantly suppressed both RNA and protein synthesis, with a preferential inhibition of protein synthesis.
- SIRT7 was identified to interact with key proteins in ribosome biogenesis, including mTOR and GTF3C1 (a component of the Pol III transcription factor TFIIIC2 complex).
- SIRT7 knockdown increased LC3B-II levels, indicating activation of autophagy, and led to reduced tRNA levels, suggesting a role in Pol III transcription regulation.
Conclusions:
- SIRT7 plays a multifaceted role in regulating ribosome biogenesis and both Pol I and Pol III transcription.
- SIRT7 interacts with mTOR and TFIIIC2, suggesting a regulatory role in Pol III transcription via these pathways.
- The down-regulation of SIRT7 may contribute to its anti-tumor effects, partly by inhibiting protein synthesis and potentially through modulating autophagy.
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