Li Brian, Maslan Annie, Kitayama Sean E, Pierce Corinne, Streets Aaron M, Sohn Lydia L
UC Berkeley - UCSF Graduate Program in Bioengineering, Berkeley and San Francisco, CA 94709, USA.
Department of Molecular and Cellular Biology, University of California, Berkeley, Berkeley 94720, USA.
iScience. 2022 Jan 15;25(2):103772. doi: 10.1016/j.isci.2022.103772. eCollection 2022 Feb 18.
All-trans retinoic acid (ATRA) is an essential therapy in the treatment of acute promyelocytic leukemia (APL), but nearly 20% of patients with APL are resistant to ATRA. As there are no biomarkers for ATRA resistance that yet exist, we investigated whether cell mechanics could be associated with this pathological phenotype. Using mechano-node-pore sensing, a single-cell mechanical phenotyping platform, and patient-derived APL cell lines, we discovered that ATRA-resistant APL cells are less mechanically pliable. By investigating how different subcellular components of APL cells contribute to whole-cell mechanical phenotype, we determined that nuclear mechanics strongly influence an APL cell's mechanical response. Moreover, decondensing chromatin with trichostatin A is especially effective in softening ATRA-resistant APL cells. RNA-seq allowed us to compare the transcriptomic differences between ATRA-resistant and ATRA-responsive APL cells and highlighted gene expression changes that could be associated with mechanical changes. Overall, we have demonstrated the potential of "physical" biomarkers in identifying APL resistance.
全反式维甲酸(ATRA)是治疗急性早幼粒细胞白血病(APL)的重要疗法,但近20%的APL患者对ATRA耐药。由于目前尚无ATRA耐药的生物标志物,我们研究了细胞力学是否与这种病理表型相关。使用机械节点孔传感技术(一种单细胞机械表型分析平台)和患者来源的APL细胞系,我们发现对ATRA耐药的APL细胞机械柔韧性较差。通过研究APL细胞的不同亚细胞成分如何影响全细胞机械表型,我们确定核力学强烈影响APL细胞的机械反应。此外,用曲古抑菌素A使染色质解聚在软化对ATRA耐药的APL细胞方面特别有效。RNA测序使我们能够比较对ATRA耐药和对ATRA敏感的APL细胞之间的转录组差异,并突出显示了可能与机械变化相关的基因表达变化。总体而言,我们已经证明了“物理”生物标志物在识别APL耐药性方面的潜力。