Bruton’s tyrosine kinase inhibition re-sensitizes multidrug-resistant DLBCL tumors driven by BCL10 gain-of-function mutants to venetoclax

IF 12.9 1区 医学 Q1 HEMATOLOGY
Caroline A. Coughlin, Dhanvantri Chahar, Marianna Lekakis, Abdessamad A. Youssfi, Lingxiao Li, Evan Roberts, Natalia Campos Gallego, Claude-Henry Volmar, Ola Landgren, Shaun Brothers, Anthony J. Griswold, Catalina Amador, Daniel Bilbao, Francesco Maura, Jonathan H. Schatz
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Abstract

Disparate pathogenic mechanisms complicate precision-medicine efforts to treat diffuse large B-cell lymphoma (DLBCL), the most common lymphoma diagnosis. Though potentially curable with frontline combination chemoimmunotherapy, DLBCL carries persistently poor prognosis for those with relapsed or refractory (rel/ref) disease, despite recent advances in immunotherapy. Here, we build on recent findings implicating gain-of-function mutations in the BCL10 signaling protein as drivers of resistance to Bruton’s tyrosine kinase (BTK) inhibitors. We show mutant BCL10-driven DLBCL is resistant to multiple additional drug classes, demonstrating urgency to derive mechanistically rooted strategies to overcome undruggable BCL10 mutants that stabilize BTK-independent signaling filaments upstream of NF-kB activation. BCL10 mutants promote a cytokine-reinforced positive feedback loop of lymphomagenesis driving not just NF-kB but multiple additional pathways converging on diffuse activation of oncogenic transcription factors. Up-regulation of anti-apoptotic genes increases mitochondrial membrane potential, underlying multidrug resistance. Increased expression of BCL2, BCL2L1 (BCL-XL), and BCL2A1 (BFL1) drives resistance to venetoclax, but expression can be overcome by the potent non-covalent BTK inhibitor pirtobrutinib. Venetoclax plus pirtobrutinib synergized in overcoming resistance and potently killed BCL10-mutant lymphomas in vitro and in vivo. BTK therefore retains key roles protecting DLBCL from apoptosis even when downstream activation of the BCL10 signaling complex activates NF-kB independently.

Abstract Image

布鲁顿酪氨酸激酶抑制使BCL10功能获得突变体驱动的多药耐药DLBCL肿瘤对venetoclax重新敏感
弥漫性大b细胞淋巴瘤(DLBCL)是最常见的淋巴瘤诊断,不同的致病机制使精准医学治疗工作复杂化。尽管一线联合化疗免疫治疗有可能治愈,但DLBCL对于复发或难治性(rel/ref)疾病患者的预后一直很差,尽管最近免疫治疗取得了进展。在这里,我们以最近的研究结果为基础,暗示BCL10信号蛋白的功能获得突变是对布鲁顿酪氨酸激酶(BTK)抑制剂耐药的驱动因素。我们发现突变体BCL10驱动的DLBCL对多种其他药物具有耐药性,这表明迫切需要获得机制上的根植策略来克服无法治疗的BCL10突变体,这些突变体可以稳定NF-kB激活上游的btk独立信号丝。BCL10突变体促进细胞因子增强的淋巴瘤形成正反馈回路,不仅驱动NF-kB,还驱动多种其他途径聚集在致癌转录因子的弥漫性激活上。抗凋亡基因的上调增加了线粒体膜电位,是多药耐药的基础。BCL2、BCL2L1 (BCL-XL)和BCL2A1 (BFL1)的表达增加会导致对venetoclax的耐药性,但这种表达可以被有效的非共价BTK抑制剂pirtobrutinib克服。Venetoclax和pirtobrutinib在体外和体内协同克服耐药性并有效杀死bcl10突变淋巴瘤。因此,即使BCL10信号复合物的下游激活独立激活NF-kB, BTK仍保留了保护DLBCL免于凋亡的关键作用。
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来源期刊
CiteScore
16.70
自引率
2.30%
发文量
153
审稿时长
>12 weeks
期刊介绍: Blood Cancer Journal is dedicated to publishing high-quality articles related to hematologic malignancies and related disorders. The journal welcomes submissions of original research, reviews, guidelines, and letters that are deemed to have a significant impact in the field. While the journal covers a wide range of topics, it particularly focuses on areas such as: Preclinical studies of new compounds, especially those that provide mechanistic insights Clinical trials and observations Reviews related to new drugs and current management of hematologic malignancies Novel observations related to new mutations, molecular pathways, and tumor genomics Blood Cancer Journal offers a forum for expedited publication of novel observations regarding new mutations or altered pathways.
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