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The driver of malignancy in KG-1a leukemic cells, FGFR1OP2-FGFR1, encodes an HSP90 addicted oncoprotein

机译:KG-1a白血病细胞FGFR1OP2-FGFR1的恶性驱动因子编码HSP90成瘾的癌蛋白

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The KG-1a cell line is developed from a human stem cell myeloproliferative neoplasm as the result of intragenic disruption and a chromosomal translocation of the FGFR1 gene and the FGFR1OP2 gene encoding a protein of unknown function called FOP2 (FGFR1 Oncogene Partner 2). The resulting fusion protein FOP2-FGFR1 is soluble and has constitutive tyrosine kinase activity. Since the heat shock protein HSP90 and its co-chaperone CDC37 have been shown to stabilize many oncogenic proteins, we investigated the requirement for HSP90 or HSP90-CDC37 assistance to maintain the stability or activity of FOP2-FGFR1 expressed in KG-1a cells. We found that HSP90-CDC37 forms a permanent complex with FOP2-FGFR1. This results in protection against degradation of FOP2-FGFR1 and holds the oncoprotein in a permanently active conformation. Inhibition of HSP90 or depletion of CDC37 or heat shock factor 1 (HSF1) reduced the expression level of FOP2-FGFR1 and was sufficient to block the oncoprotein induced proliferation of KG-1a cells. We conclude that the driver of malignancy in KG-1a leukemic cells, FOP2-FGFR1, is an HSP90 addicted oncoprotein. This provides a rationale for the therapeutic use of HSP90 inhibitors in myeloid leukemias that contain FGFR fusion proteins.
机译:KG-1a细胞系是由人类干细胞骨髓增生性肿瘤发展而来的,这是FGFR1基因和编码未知功能蛋白称为FOP2(FGFR1癌基因伴侣2)的FGFR1OP2基因发生染色体内移位和染色体易位的结果。所得的融合蛋白FOP2-FGFR1是可溶的并且具有组成型酪氨酸激酶活性。由于热休克蛋白HSP90及其伴侣蛋白CDC37已显示可以稳定许多致癌蛋白,因此我们研究了对HSP90或HSP90-CDC37辅助剂的需求,以维持在KG-1a细胞中表达的FOP2-FGFR1的稳定性或活性。我们发现HSP90-CDC37与FOP2-FGFR1形成永久复合物。这导致针对FOP2-FGFR1降解的保护,并将癌蛋白保持在永久活性的构象中。抑制HSP90或减少CDC37或热休克因子1(HSF1)会降低FOP2-FGFR1的表达水平,足以阻止癌蛋白诱导的KG-1a细胞增殖。我们得出的结论是,KG-1a白血病细胞FOP2-FGFR1的恶性驱动因素是HSP90成瘾的癌蛋白。这为HSP90抑制剂在含有FGFR融合蛋白的髓样白血病中的治疗用途提供了理论依据。

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