Chen Jian-Kang, Nagai Kojiro, Chen Jianchun, Plieth David, Hino Masayo, Xu Jinxian, Sha Feng, Ikizler T Alp, Quarles C Chad, Threadgill David W, Neilson Eric G, Harris Raymond C
J Clin Invest. 2015 Jun;125(6):2429-44. doi: 10.1172/JCI78945. Epub 2015 May 18.
Kidney size adaptively increases as mammals grow and in response to the loss of 1 kidney. It is not clear how kidneys size themselves or if the processes that adapt kidney mass to lean body mass also mediate renal hypertrophy following unilateral nephrectomy (UNX). Here, we demonstrated that mice harboring a proximal tubule-specific deletion of Pten (Pten(ptKO)) have greatly enlarged kidneys as the result of persistent activation of the class I PI3K/mTORC2/AKT pathway and an increase of the antiproliferative signals p21(Cip1/WAF) and p27(Kip1). Administration of rapamycin to Pten(ptKO) mice diminished hypertrophy. Proximal tubule-specific deletion of Egfr in Pten(ptKO) mice also attenuated class I PI3K/mTORC2/AKT signaling and reduced the size of enlarged kidneys. In Pten(ptKO) mice, UNX further increased mTORC1 activation and hypertrophy in the remaining kidney; however, mTORC2-dependent AKT phosphorylation did not increase further in the remaining kidney of Pten(ptKO) mice, nor was it induced in the remaining kidney of WT mice. After UNX, renal blood flow and amino acid delivery to the remaining kidney rose abruptly, followed by increased amino acid content and activation of a class III PI3K/mTORC1/S6K1 pathway. Thus, our findings demonstrate context-dependent roles for EGFR-modulated class I PI3K/mTORC2/AKT signaling in the normal adaptation of kidney size and PTEN-independent, nutrient-dependent class III PI3K/mTORC1/S6K1 signaling in the compensatory enlargement of the remaining kidney following UNX.
随着哺乳动物的生长以及对一侧肾脏缺失的反应,肾脏大小会适应性增加。目前尚不清楚肾脏如何调节自身大小,以及使肾脏质量与瘦体重相适应的过程是否也介导了单侧肾切除术后(UNX)的肾肥大。在此,我们证明,近端肾小管特异性缺失Pten(Pten(ptKO))的小鼠,由于I类PI3K/mTORC2/AKT信号通路的持续激活以及抗增殖信号p21(Cip1/WAF)和p27(Kip1)的增加,肾脏显著增大。给Pten(ptKO)小鼠施用雷帕霉素可减轻肥大。在Pten(ptKO)小鼠中近端肾小管特异性缺失Egfr也会减弱I类PI3K/mTORC2/AKT信号传导,并减小增大的肾脏的大小。在Pten(ptKO)小鼠中,UNX进一步增加了剩余肾脏中mTORC1的激活和肥大;然而,Pten(ptKO)小鼠剩余肾脏中mTORC2依赖性AKT磷酸化并未进一步增加,在野生型小鼠的剩余肾脏中也未诱导。UNX后,剩余肾脏的肾血流量和氨基酸输送量突然增加,随后氨基酸含量增加以及III类PI3K/mTORC1/S6K1信号通路激活。因此,我们的研究结果表明,EGFR调节的I类PI3K/mTORC2/AKT信号在肾脏大小的正常适应中具有背景依赖性作用,而在UNX后剩余肾脏的代偿性增大中,III类PI3K/mTORC1/S6K1信号是不依赖PTEN且依赖营养物质的。