Results 311 to 320 of about 108,192 (330)
mTORC1 inhibition by sirolimus as adjunctive treatment in experimental pneumococcal meningitis. [PDF]
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Science Signaling, 2013
A protein complex identified as a negative regulator of the mTORC1 protein kinase complex has tumor suppressor functions.
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A protein complex identified as a negative regulator of the mTORC1 protein kinase complex has tumor suppressor functions.
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Science, 2016
Structural information reveals how a multiprotein complex responds to amino acid abundance [Also see Research Articles by Wolfson et al. and Aylett et al. and
Gwen R. Buel, John Blenis
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Structural information reveals how a multiprotein complex responds to amino acid abundance [Also see Research Articles by Wolfson et al. and Aylett et al. and
Gwen R. Buel, John Blenis
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MTORC1-dependent reprogramming
Science Signaling, 2020DDIT4 and IFRD1 trigger the inhibition and reactivation of MTORC1 during regenerative repair.
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Lysosomal cholesterol activates mTORC1
Science, 2017Cholesterol Sensing The mTORC1 kinase is a master nutrient sensor that governs cellular metabolism. When dysregulated, this kinase drives several human diseases, including cancer and diabetes. Recent work has delineated a pathway through which amino acids regulate mTORC1.
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Science Signaling, 2019
A metabolite of leucine regulates mTORC1 through acetylation of Raptor in certain cell types and tissues.
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A metabolite of leucine regulates mTORC1 through acetylation of Raptor in certain cell types and tissues.
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mTORC1 signalling and mRNA translation
Biochemical Society Transactions, 2009Signalling through mTORC1 (mammalian target of rapamycin complex 1) is important in controlling many cell functions, including protein synthesis, which it activates. mTORC1 signalling is activated by stimuli which promote protein accumulation such as anabolic hormones, growth factors and hypertrophic stimuli.
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Science Signaling, 2010
Chaperone availability regulates mTORC1 signaling, providing a link between protein quality control and translation.
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Chaperone availability regulates mTORC1 signaling, providing a link between protein quality control and translation.
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