Xie Youmei, Massa Stephen M, Ensslen-Craig Sonya E, Major Denice L, Yang Tao, Tisi Michelle A, Derevyanny Vicki D, Runge William O, Mehta Brijesh P, Moore Laura A, Brady-Kalnay Susann M, Longo Frank M
Department of Neurology, University of North Carolina, Chapel Hill, NC 27599, USA.
J Biol Chem. 2006 Jun 16;281(24):16482-92. doi: 10.1074/jbc.M603131200. Epub 2006 Apr 12.
Inhibition of protein-tyrosine phosphatases (PTPs) counterbalancing protein-tyrosine kinases (PTKs) offers a strategy for augmenting PTK actions. Conservation of PTP catalytic sites limits development of specific PTP inhibitors. A number of receptor PTPs, including the leukocyte common antigen-related (LAR) receptor and PTPmu, contain a wedge-shaped helix-loop-helix located near the first catalytic domain. Helix-loop-helix domains in other proteins demonstrate homophilic binding and inhibit function; therefore, we tested the hypothesis that LAR wedge domain peptides would exhibit homophilic binding, bind to LAR, and inhibit LAR function. Fluorescent beads coated with LAR or PTPmu wedge peptides demonstrated PTP-specific homophilic binding, and LAR wedge peptide-coated beads precipitated LAR protein. Administration of LAR wedge Tat peptide to PC12 cells resulted in increased proliferation, decreased cell death, increased neurite outgrowth, and augmented Trk PTK-mediated responses to nerve growth factor (NGF), a phenotype matching that found in PC12 cells with reduced LAR levels. PTPmu wedge Tat peptide had no effect on PC12 cells but blocked the PTPmu-dependent phenotype of neurite outgrowth of retinal ganglion neurons on a PTPmu substrate, whereas LAR wedge peptide had no effect. The survival- and neurite-promoting effect of the LAR wedge peptide was blocked by the Trk inhibitor K252a, and reciprocal co-immunoprecipitation demonstrated LAR/TrkA association. The addition of LAR wedge peptide inhibited LAR co-immunoprecipitation with TrkA, augmented NGF-induced activation of TrkA, ERK, and AKT, and in the absence of exogenous NGF, induced activation of TrkA, ERK, and AKT. PTP wedge domain peptides provide a unique PTP inhibition strategy and offer a novel approach for augmenting PTK function.
抑制与蛋白酪氨酸激酶(PTK)起平衡作用的蛋白酪氨酸磷酸酶(PTP)为增强PTK活性提供了一种策略。PTP催化位点的保守性限制了特异性PTP抑制剂的开发。许多受体PTP,包括白细胞共同抗原相关(LAR)受体和PTPμ,在第一个催化结构域附近含有一个楔形螺旋-环-螺旋结构。其他蛋白质中的螺旋-环-螺旋结构域表现出同源性结合并抑制功能;因此,我们测试了这样一个假设,即LAR楔形结构域肽会表现出同源性结合、与LAR结合并抑制LAR功能。包被有LAR或PTPμ楔形肽的荧光珠表现出PTP特异性同源性结合,且包被有LAR楔形肽的珠子沉淀出LAR蛋白。将LAR楔形Tat肽给予PC12细胞导致细胞增殖增加、细胞死亡减少、神经突生长增加以及Trk PTK介导的对神经生长因子(NGF)的反应增强,这种表型与LAR水平降低的PC12细胞中发现的表型相符。PTPμ楔形Tat肽对PC12细胞没有影响,但在PTPμ底物上阻断了视网膜神经节神经元神经突生长的PTPμ依赖性表型,而LAR楔形肽没有影响。LAR楔形肽的存活促进和神经突促进作用被Trk抑制剂K252a阻断,相互免疫共沉淀证明了LAR/TrkA相互作用。添加LAR楔形肽抑制了LAR与TrkA的免疫共沉淀,增强了NGF诱导的TrkA、ERK和AKT的激活,并且在没有外源性NGF的情况下,诱导了TrkA、ERK和AKT的激活。PTP楔形结构域肽提供了一种独特的PTP抑制策略,并为增强PTK功能提供了一种新方法。