Ha Sang Hoon, Kim Do-Hyung, Kim Il-Shin, Kim Jung Hwan, Lee Mi Nam, Lee Hyun Ju, Kim Jong Heon, Jang Sung Key, Suh Pann-Ghill, Ryu Sung Ho
Division of Molecular and Life Sciences, Pohang University of Science and Technology, Pohang, Kyungbook 790-784, Republic of Korea.
Cell Signal. 2006 Dec;18(12):2283-91. doi: 10.1016/j.cellsig.2006.05.021. Epub 2006 Jun 3.
Mammalian target-of-rapamycin (mTOR), which is a master controller of cell growth, senses a mitogenic signal in part through the lipid second messenger phosphatidic acid (PA), generated by phospholipase D (PLD). To understand further which isozymes of PLD are involved in this process, we compared the effect of PLD isozymes on mTOR activation. We found that PLD2 has an essential role in mitogen-induced mTOR activation as the siRNA-mediated knockdown of PLD2, not of PLD1, profoundly reduced the phosphorylations of S6K1 and 4EBP1, well-known mTOR effectors. Furthermore, exogenous PA-induced mTOR activation was abrogated by PLD2 knockdown, but not by PLD1 knockdown. This abrogation was found to be the result of complex formation between PLD2 and mTOR/raptor. PLD2 possesses a TOS-like motif (Phe-Glu-Val-Gln-Val, a.a. 265-269), through which it interacts with raptor independently of the other TOS motif-containing proteins, S6K1 and 4EBP1. PLD2-dependent mTOR activation appears to require PLD2 binding to mTOR/raptor with lipase activity, since lipase-inactive PLD2 cannot trigger mTOR activation despite its ability to interact with mTOR/raptor. Abrogation of mitogen-dependent mTOR activation by PLD2 knockdown was rescued only by wild type PLD2, but not by raptor binding-deficient and lipase-inactive PLD2. Our results demonstrate the importance of localized PA generation for the mitogen-induced activation of mTOR, which is achieved by a specific interaction between PLD2 and mTOR/raptor.
哺乳动物雷帕霉素靶蛋白(mTOR)是细胞生长的主要调控因子,它部分通过磷脂酶D(PLD)产生的脂质第二信使磷脂酸(PA)来感知促有丝分裂信号。为了进一步了解哪些PLD同工酶参与了这一过程,我们比较了PLD同工酶对mTOR激活的影响。我们发现PLD2在促有丝分裂剂诱导的mTOR激活中起关键作用,因为小干扰RNA介导的PLD2而非PLD1的敲低显著降低了著名的mTOR效应分子S6K1和4EBP1的磷酸化水平。此外,外源性PA诱导的mTOR激活被PLD2敲低所消除,但未被PLD1敲低所消除。这种消除被发现是PLD2与mTOR/ Raptor之间形成复合物的结果。PLD2具有一个TOS样基序(苯丙氨酸-谷氨酸-缬氨酸-谷氨酰胺-缬氨酸,第265-269位氨基酸),通过该基序它独立于其他含TOS基序的蛋白S6K1和4EBP1与Raptor相互作用。依赖PLD2的mTOR激活似乎需要具有脂肪酶活性的PLD2与mTOR/ Raptor结合,因为尽管脂肪酶失活的PLD2能够与mTOR/ Raptor相互作用,但它不能触发mTOR激活。仅野生型PLD2而非Raptor结合缺陷型和脂肪酶失活型PLD2能够挽救PLD2敲低对依赖促有丝分裂剂的mTOR激活的消除作用。我们的结果证明了局部PA生成对于促有丝分裂剂诱导的mTOR激活的重要性,这是通过PLD2与mTOR/ Raptor之间的特异性相互作用实现的。