File:Regulation of mTOR signaling through primary cilia.png
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editDescriptionRegulation of mTOR signaling through primary cilia.png | Figure 4. Regulation of mTOR signaling through primary cilia. Ciliary localized LKB1 inhibits mTOR, and keeps mTORC1 activity at a lower level. Inhibition of primary cilia formation results in increased mTORC1 activity, increased levels of active S6K, and larger cell size. Created with BioRender.com. |
Date | |
Source | https://www.mdpi.com/2073-4409/10/6/1428 https://doi.org/10.3390/cells10061428 Cilium Is Involved in Stem Cell Differentiation and Renewal through the Regulation of Multiple Signaling Pathways. Cells 2021, 10, 1428. |
Author | Yanardag, S.; Pugacheva, E.N. Primary |
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current | 13:45, 5 May 2024 | 2,155 × 2,571 (527 KB) | Rasbak (talk | contribs) | {{Information |description=Figure 4. Regulation of mTOR signaling through primary cilia. Ciliary localized LKB1 inhibits mTOR, and keeps mTORC1 activity at a lower level. Inhibition of primary cilia formation results in increased mTORC1 activity, increased levels of active S6K, and larger cell size. Created with BioRender.com. |date=2021-06-08 |source=https://www.mdpi.com/2073-4409/10/6/1428 https://doi.org/10.3390/cells10061428 Cilium Is Involved in Stem Cell Differentiation and Renewal th... |
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