Andersen J N, Elson A, Lammers R, Rømer J, Clausen J T, Møller K B, Møller N P
Signal Transduction, Novo Nordisk, DK-2880 Bagsvaerd, Denmark.
Biochem J. 2001 Mar 15;354(Pt 3):581-90. doi: 10.1042/0264-6021:3540581.
To study the influence of subcellular localization as a determinant of signal transduction specificity, we assessed the effects of wild-type transmembrane and cytoplasmic protein tyrosine phosphatase (PTP) epsilon on tyrosine kinase signalling in baby hamster kidney (BHK) cells overexpressing the insulin receptor (BHK-IR). The efficiency by which differently localized PTPepsilon and PTPalpha variants attenuated insulin-induced cell rounding and detachment was determined in a functional clonal-selection assay and in stable cell lines. Compared with the corresponding receptor-type PTPs, the cytoplasmic PTPs (cytPTPs) were considerably less efficient in generating insulin-resistant clones, and exceptionally high compensatory expression levels were required to counteract phosphotyrosine-based signal transduction. Targeting of cytPTPepsilon to the plasma membrane via the Lck-tyrosine kinase dual acylation motif restored high rescue efficiency and abolished the need for high cytPTPepsilon levels. Consistent with these results, expression levels and subcellular localization of PTPepsilon were also found to determine the phosphorylation level of cellular proteins including focal adhesion kinase (FAK). Furthermore, PTPepsilon stabilized binding of phosphorylated FAK to Src, suggesting this complex as a possible mediator of the PTPepsilon inhibitory response to insulin-induced cell rounding and detachment in BHK-IR cells. Taken together, the present localization-function study indicates that transcriptional control of the subcellular localization of PTPepsilon may provide a molecular mechanism that determines PTPepsilon substrate selectivity and isoform-specific function.
为了研究亚细胞定位作为信号转导特异性决定因素的影响,我们评估了野生型跨膜和细胞质蛋白酪氨酸磷酸酶(PTP)ε对过表达胰岛素受体(BHK-IR)的幼仓鼠肾(BHK)细胞中酪氨酸激酶信号传导的影响。在功能克隆选择试验和稳定细胞系中,确定了不同定位的PTPε和PTPα变体减弱胰岛素诱导的细胞变圆和脱离的效率。与相应的受体型PTP相比,细胞质PTP(cytPTP)在产生胰岛素抵抗克隆方面的效率要低得多,并且需要异常高的补偿性表达水平来抵消基于磷酸酪氨酸的信号转导。通过Lck-酪氨酸激酶双酰化基序将cytPTPε靶向质膜可恢复高挽救效率,并消除了对高cytPTPε水平的需求。与这些结果一致,还发现PTPε的表达水平和亚细胞定位决定了包括粘着斑激酶(FAK)在内的细胞蛋白的磷酸化水平。此外,PTPε稳定了磷酸化FAK与Src的结合,表明这种复合物可能是PTPε对BHK-IR细胞中胰岛素诱导的细胞变圆和脱离的抑制反应的介质。综上所述,目前的定位-功能研究表明,PTPε亚细胞定位的转录控制可能提供一种决定PTPε底物选择性和同工型特异性功能的分子机制。