Hyperthermia promotes degradation of the acute promyelocytic leukemia driver oncoprotein ZBTB16/RARα

被引:0
作者
Qian-qian Wang
Liaqat Hussain
Pei-han Yu
Chang Yang
Chen-ying Zhu
Ya-fang Ma
Si-chun Wang
Tao Yang
Yuan-yuan Kang
Wen-juan Yu
Yasen Maimaitiyiming
Hua Naranmandura
机构
[1] Zhejiang University School of Medicine,Department of Hematology of First Affiliated Hospital, and Department of Public Health
[2] Zhejiang Province Key Laboratory of Haematology Oncology Diagnosis and Treatment,Cancer Center
[3] Zhejiang University,Faculty of Pharmaceutical Sciences
[4] Government College University,Department of Hematology, First Affiliated Hospital
[5] Zhejiang University School of Medicine,Department of Neurobiology, NHC and CAMS Key Laboratory of Medical Neurobiology, School of Brain Science and Brain Medicine, and MOE Frontier Science Center for Brain Science and Brain
[6] Zhejiang University School of Medicine,machine Integration
来源
Acta Pharmacologica Sinica | 2023年 / 44卷
关键词
acute promyelocytic leukemia; ZBTB16/RARα fusion protein; hyperthermia; proteolysis; nuclear receptor corepressors; arsenicals;
D O I
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中图分类号
学科分类号
摘要
The acute promyelocytic leukemia (APL) driver ZBTB16/RARα is generated by the t(11;17) (q23;q21) chromosomal translocation, which is resistant to combined treatment of all-trans retinoic acid (ATRA) and arsenic trioxide (ATO) or conventional chemotherapy, resulting in extremely low survival rates. In the current study, we investigated the effects of hyperthermia on the oncogenic fusion ZBTB16/RARα protein to explore a potential therapeutic approach for this variant APL. We showed that Z/R fusion protein expressed in HeLa cells was resistant to ATO, ATRA, and conventional chemotherapeutic agents. However, mild hyperthermia (42 °C) rapidly destabilized the ZBTB16/RARα fusion protein expressed in HeLa, 293T, and OCI-AML3 cells, followed by robust ubiquitination and proteasomal degradation. In contrast, hyperthermia did not affect the normal (i.e., unfused) ZBTB16 and RARα proteins, suggesting a specific thermal sensitivity of the ZBTB16/RARα fusion protein. Importantly, we found that the destabilization of ZBTB16/RARα was the initial step for oncogenic fusion protein degradation by hyperthermia, which could be blocked by deletion of nuclear receptor corepressor (NCoR) binding sites or knockdown of NCoRs. Furthermore, SIAH2 was identified as the E3 ligase participating in hyperthermia-induced ubiquitination of ZBTB16/RARα. In short, these results demonstrate that hyperthermia could effectively destabilize and subsequently degrade the ZBTB16/RARα fusion protein in an NCoR-dependent manner, suggesting a thermal-based therapeutic strategy that may improve the outcome in refractory ZBTB16/RARα-driven APL patients in the clinic.
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页码:822 / 831
页数:9
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