Department of Hematology, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, 1-5-45 Yushima, Bunkyoku, Tokyo 113-8519, Japan.
Department of Hematology, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, 1-5-45 Yushima, Bunkyoku, Tokyo 113-8519, Japan.
J Biol Chem. 2011 Sep 2;286(35):30263-30273. doi: 10.1074/jbc.M111.232348. Epub 2011 Jul 18.
The class III receptor-tyrosine kinase Flt3 regulates normal hematopoiesis. An internal tandem duplication (ITD) in the juxtamembrane domain of Flt3 (Flt3-ITD) contributes to transformation and is associated with poor prognosis in acute myeloid leukemia. Here, we demonstrate that, as compared with wild-type Flt3 (Flt3-WT), Flt3-ITD more rapidly undergoes degradation through the proteasomal and lysosomal pathways in model hematopoietic 32D cells and in human leukemic MV4-11 cells. The Hsp90 inhibitor 17-allylaminodemethoxygeldanamycin (17-AAG) preferentially induced the polyubiquitination and proteasomal degradation of Flt3-ITD autophosphorylated on Tyr-591 in these cells. The E3 ubiquitin ligases c-Cbl and to a lesser extent Cbl-b facilitated at least partly Lys-48-linked polyubiquitination of autophosphorylated Flt3-ITD when coexpressed in 293T cells. Moreover, c-Cbl and Cbl-b facilitated degradation of Flt3-ITD in 293T cells and significantly enhanced the 17-AAG-induced decline in autophosphorylated Flt3-ITD. The enhancement of Flt3-ITD degradation was also observed in 32D cells inducibly overexpressing c-Cbl or Cbl-b. Furthermore, overexpression of loss-of-function mutants of both c-Cbl (c-Cbl-R420Q) and Cbl-b (Cbl-b-C373A) together in 32D cells retarded the degradation of autophosphorylated Flt3-ITD and significantly inhibited the 17-AAG-induced degradation of Flt3-ITD to confer the resistance to cytotoxicity of 17-AAG on these cells. These results suggest that c-Cbl as well as Cbl-b may play important roles in Hsp90 inhibitor-induced degradation of Flt3-ITD through the ubiquitin proteasome system and in regulation of the basal expression level of Flt3-ITD in leukemic cells.
III 类受体酪氨酸激酶 Flt3 调节正常造血。Flt3 近膜区的内部串联重复(ITD)有助于转化,与急性髓性白血病的预后不良相关。在这里,我们证明与野生型 Flt3(Flt3-WT)相比,Flt3-ITD 在模型造血 32D 细胞和人类白血病 MV4-11 细胞中更快速地通过蛋白酶体和溶酶体途径降解。Hsp90 抑制剂 17-allylaminodemethoxygeldanamycin(17-AAG)优先诱导这些细胞中 Flt3-ITD 的 Tyr-591 自身磷酸化的多泛素化和蛋白酶体降解。E3 泛素连接酶 c-Cbl 并在较小程度上 Cbl-b 有助于共表达于 293T 细胞中时,至少部分 Lys-48 连接的 Flt3-ITD 自身磷酸化的多泛素化。此外,c-Cbl 和 Cbl-b 促进 293T 细胞中 Flt3-ITD 的降解,并显著增强 17-AAG 诱导的 Flt3-ITD 自身磷酸化的下降。在诱导性过表达 c-Cbl 或 Cbl-b 的 32D 细胞中也观察到 Flt3-ITD 降解的增强。此外,c-Cbl(c-Cbl-R420Q)和 Cbl-b(Cbl-b-C373A)的失活突变体在 32D 细胞中的共表达延迟了自身磷酸化的 Flt3-ITD 的降解,并显著抑制了 17-AAG 诱导的 Flt3-ITD 的降解,从而赋予这些细胞对 17-AAG 的细胞毒性抗性。这些结果表明,c-Cbl 以及 Cbl-b 可能通过泛素蛋白酶体系统在 Hsp90 抑制剂诱导的 Flt3-ITD 降解以及调节白血病细胞中 Flt3-ITD 的基础表达水平方面发挥重要作用。