Cdc37 suppression induces plasma cell immaturation and bortezomib resistance in multiple myeloma via Xbp1s

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作者
Meirong Zang
Jiaojiao Guo
Lanting Liu
Fengyan Jin
Xiangling Feng
Gang An
Xiaoqi Qin
Yangbowen Wu
Qian Lei
Bin Meng
Yinghong Zhu
Yongjun Guan
Shuhui Deng
Mu Hao
Yan Xu
Dehui Zou
Minghua Wu
Lugui Qiu
Wen Zhou
机构
[1] Chinese Academy of Medical Science & Peking Union Medical College,State Key Laboratory of Experimental Hematology, National Clinical Research Center for Blood Diseases, Institute of Hematology & Blood Diseases Hospital
[2] The Third Affiliated Hospital of Hebei Medical University,Department of Hematology
[3] Central South University,Cancer Research Institute, School of Basic Medical Science Key Laboratory of Carcinogenesis and Cancer Invasion, Ministry of Education; Key Laboratory of Carcinogenesis, National Health and Family Planning Commission
[4] Cancer Center,Xiang Ya School of Public Health
[5] The First Hospital of Jilin University,undefined
[6] Central South University,undefined
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Oncogenesis | / 9卷
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摘要
Multiple myeloma (MM) is the second most prevalent hematologic malignancy. Although the use of bortezomib (BTZ) significantly improves MM therapy, intrinsic and acquired drug resistance to BTZ remains a major clinical problem. In this study, we find that Cdc37, a key co-chaperone of Hsp90, is downregulated in relapsed MM patients, especially after BTZ treatment, suggesting a link between Cdc37 and BTZ resistance. Suppression of Cdc37 or inhibition of Cdc37/Hsp90 association induces plasma cell dedifferentiation, quiescence of MM cells, and BTZ resistance in MM. Furthermore, we discover that Cdc37 expression correlates positively with Xbp1s, a critical transcription factor for plasma cell differentiation in MM samples. Depletion/inhibition of Cdc37 downregulates Xbp1s, while overexpression of Xbp1s in MM cell lines partially rescues plasma immaturation and BTZ resistance. It is suggested that Xbp1s may act as a key downstream effector of Cdc37. Experiments with a mouse model also demonstrate that Cdc37 inhibition promotes plasma cell immaturation, confers BTZ resistance, and increases MM progression in vivo. Together, we identify a critical factor and a new signaling mechanism that regulate plasma cell immaturation and BTZ resistance in MM cells. Our findings may constitute a novel strategy that overcomes BTZ resistance in MM therapy.
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