Young Deborah A, Nickerson-Nutter Cheryl L
Wyeth Research, 200 CambridgePark Drive, Cambridge, Massachusetts 02140, USA.
Curr Opin Pharmacol. 2005 Aug;5(4):418-23. doi: 10.1016/j.coph.2005.03.004.
mTOR kinase plays a central role in the activation of many cell types, and blocking mTOR function with rapamycin results in arrest of the cell cycle at the G1 phase. Recently, several additional molecules have been identified in the mTOR pathway, providing further opportunities to interfere with cell activation and develop novel therapeutic agents. Under certain conditions and in specific cell types, activation can occur independently of mTOR and in the presence of rapamycin. Selective inhibition of cell activation in the appropriate setting might prove to be beneficial for several autoimmune or inflammatory diseases.
mTOR激酶在多种细胞类型的激活中起核心作用,用雷帕霉素阻断mTOR功能会导致细胞周期在G1期停滞。最近,在mTOR信号通路中又发现了几种其他分子,为干扰细胞激活和开发新型治疗药物提供了更多机会。在某些条件下和特定细胞类型中,激活可以独立于mTOR且在有雷帕霉素存在的情况下发生。在适当的情况下选择性抑制细胞激活可能对几种自身免疫性或炎性疾病有益。