Eiras Sonia, Camiña Jesus P, Diaz-Rodriguez Esther, Gualillo Oreste, Casanueva Felipe F
Molecular and Cellular Endocrinology Laboratory, Department of Medicine, Complejo Hospitalario Universitario de Santiago (C.H.U.S.) and University of Santiago de Compostela, Santiago de Compostela, Spain.
J Cell Physiol. 2004 Nov;201(2):214-26. doi: 10.1002/jcp.20046.
Leptin communicates the status of body energy stores to the central nervous system, regulating appetite, metabolic rate, and neuroendocrine functions. These effects are mediated by leptin binding and activation of the cognate cell surface receptor, a member of type I cytokine receptor family, which lead to the activation of receptor-associated kinases of the Janus family. In this work, we demonstrate that leptin inhibits the l-alpha-lysophosphatidic acid (LPA)-induced intracellular calcium mobilization in a dose-dependent manner in HEK-293 cells stably expressing full-length leptin receptor (OB-Rb). This action appears to be selective, as it was not observed when other signaling families, such as VIP or EGF, were studied. Pretreatment with the phosphatidylinositol 3-kinase (PI3K) inhibitor, wortmannin, reversed the effect of leptin, pointing to PI3K as an intermediate molecule involved in this process. An unspecific protein kinase C (PKC) inhibitor, staurosporine, disrupted the inhibitory action of leptin. Furthermore, intracellular levels of phosphorylated PKCepsilon and PKCdelta rose to a maximum 5 min after leptin administration, suggesting that these atypical PKC isoforms are involved in the observed cross-desensitization. To define the regions of the OB-Rb intracellular domain required for the cross-desensitization, a series of C-terminal deletion mutants were transfected into HEK-293 cells. C-terminal truncation that removed the consensus Box 3 motif of OB-Rb prevented leptin action, indicating that heterologous desensitization over LPA was exerted at the level of this intracellular motif. Our date demonstrate that leptin plays a key role in the regulation of the earliest signaling pathways activated by growth factors, such as LPA, through a signaling pathway involving PKCdelta and PKCepsilon coupled to Box 3 motif of the OB-Rb through PI3K.
瘦素将身体能量储备状态传递给中枢神经系统,调节食欲、代谢率和神经内分泌功能。这些作用是由瘦素与同源细胞表面受体结合并激活介导的,该受体是I型细胞因子受体家族的成员,会导致Janus家族受体相关激酶的激活。在这项研究中,我们证明,在稳定表达全长瘦素受体(OB-Rb)的HEK-293细胞中,瘦素以剂量依赖的方式抑制溶血磷脂酸(LPA)诱导的细胞内钙动员。这一作用似乎具有选择性,因为在研究其他信号家族(如VIP或EGF)时未观察到这种情况。用磷脂酰肌醇3激酶(PI3K)抑制剂渥曼青霉素预处理可逆转瘦素的作用,表明PI3K是参与这一过程的中间分子。一种非特异性蛋白激酶C(PKC)抑制剂星形孢菌素会破坏瘦素的抑制作用。此外,瘦素给药后5分钟,细胞内磷酸化PKCε和PKCδ水平升至最高,表明这些非典型PKC亚型参与了观察到的交叉脱敏。为了确定交叉脱敏所需的OB-Rb细胞内结构域区域,将一系列C末端缺失突变体转染到HEK-293细胞中。去除OB-Rb共有Box 3基序的C末端截短阻止了瘦素的作用,表明对LPA的异源脱敏作用发生在这个细胞内基序水平。我们的数据表明,瘦素在通过涉及PKCδ和PKCε并通过PI3K与OB-Rb的Box 3基序偶联的信号通路调节由生长因子(如LPA)激活的最早信号通路中起关键作用。