Department of Pharmacology, State University of New York Upstate Medical University, Syracuse, NY 13210, USA.
Blood. 2012 Aug 30;120(9):1888-98. doi: 10.1182/blood-2011-09-380808. Epub 2012 Jul 26.
The JAK2V617F mutation has been detected in most cases of Ph-negative myeloproliferative neoplasms (MPNs). The JAK2V617F protein is a constitutively activated tyrosine kinase that leads to transformation of hematopoietic progenitors. Previous studies have shown that several tyrosine residues within JAK2 are phosphorylated on growth factor or cytokine stimulation. However, the role of these tyrosine residues in signaling and transformation mediated by JAK2V617F remains unclear. In this study, we sought to determine the role of tyrosine 201, which is a potential binding site for Src homology 2 domain-containing proteins, in JAK2V617F-induced hematopoietic transformation by introducing a tyrosine-to-phenylalanine point mutation (Y201F) at this site. We observed that the Y201F mutation significantly inhibited cytokine-independent cell growth and induced apoptosis in Ba/F3-EpoR cells expressing JAK2V617F. The Y201F mutation also resulted in significant inhibition of JAK2V617F-mediated transformation of hematopoietic cells. Biochemical analyzes revealed that the Y201F mutation almost completely inhibited constitutive phosphorylation/activation of JAK2V617F. We also show that the Y201 site of JAK2V617F promotes interaction with Stat5 and Shp2, and constitutive activation of downstream signaling pathways. Furthermore, using a BM transduction/transplantation approach, we found that tyrosine 201 plays an important role in the induction of MPNs mediated by JAK2V617F.
JAK2V617F 突变已在大多数 Ph 阴性骨髓增殖性肿瘤(MPN)中被检测到。JAK2V617F 蛋白是一种组成性激活的酪氨酸激酶,可导致造血祖细胞的转化。先前的研究表明,JAK2 内的几个酪氨酸残基在生长因子或细胞因子刺激下发生磷酸化。然而,这些酪氨酸残基在 JAK2V617F 介导的信号转导和转化中的作用仍不清楚。在这项研究中,我们试图确定酪氨酸 201 的作用,酪氨酸 201 是Src 同源 2 结构域包含蛋白的潜在结合位点,通过在该位点引入酪氨酸到苯丙氨酸点突变(Y201F)来确定 JAK2V617F 诱导的造血转化。我们观察到,Y201F 突变显著抑制了表达 JAK2V617F 的 Ba/F3-EpoR 细胞的细胞因子非依赖性生长,并诱导了细胞凋亡。Y201F 突变还导致 JAK2V617F 介导的造血细胞转化的显著抑制。生化分析表明,Y201F 突变几乎完全抑制了 JAK2V617F 的组成性磷酸化/激活。我们还表明,JAK2V617F 的 Y201 位点促进与 Stat5 和 Shp2 的相互作用,以及下游信号通路的组成性激活。此外,使用 BM 转导/移植方法,我们发现酪氨酸 201 在 JAK2V617F 介导的 MPN 的诱导中发挥重要作用。