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  • SIRT2 Affects Primary Cilia Formation by Regulating mTOR Signaling in Retinal Pigmented Epithelial Cells.

SIRT2 Affects Primary Cilia Formation by Regulating mTOR Signaling in Retinal Pigmented Epithelial Cells.

International journal of molecular sciences (2020-03-28)
Jeaho Lim, Juyoung Son, Jaewook Ryu, Ja-Eun Kim
ABSTRACT

SIRT2, a member of the Class III HDAC family, participates in diverse cellular processes and regulates several pathological conditions. Although a few reports show that SIRT2 regulates the cell cycle, the causes and outcomes of SIRT2-dependent cell proliferation remain unclear. Here, we examined the effects of SIRT2 suppression in human RPE1 cells using siRNA targeting SIRT2, and AK-1, a SIRT2-specific inhibitor. The number of primary cilia in SIRT2-suppressed cells increased under serum-present conditions. Suppressing SIRT2 induced cell cycle arrest at G0/G1 phase by inactivating mammalian target of rapamycin (mTOR) signaling, possibly through mTORC1. Treatment with torin 1, an inhibitor of mTORC1/mTORC2, yielded results similar to those observed after SIRT2 suppression. However, SIRT2 suppression did not affect primary cilia formation or mTOR signaling following serum starvation. This suggests that SIRT2 acts as a critical sensor that links growth factor-dependent signal transduction and primary cilia formation by regulating the cell cycle.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Anti-Acetylated Tubulin antibody, Mouse monoclonal, clone 6-11B-1, purified from hybridoma cell culture
Millipore
Protease Inhibitor Cocktail Set III, Animal-Free, Protease Inhibitor Cocktail Set III, Animal-Free, is a cocktail of six protease inhibitors with broad specificity for the inhibition of aspartic, cysteine & serine proteases & aminopeptidases.
Sigma-Aldrich
SIRT2 Inhibitor II, AK-1, The SIRT2 Inhibitor II, AK-1, also referenced under CAS 330461-64-8, controls the biological activity of SIRT2. This small molecule/inhibitor is primarily used for Cell Structure applications.