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PIM2抑制通过整合应激反应驱动的NOXA表达促进浆细胞对MCL1的依赖性。

PIM2 inhibition promotes MCL1 dependency in plasma cells involving integrated stress response-driven NOXA expression.

作者信息

Haas Marion, Cherfa Sabrina, Nguyen Léa, Bourgoin Maxence, Caron Gersende, Dessauge Elise, Marchand Tony, Delpy Laurent, Auberger Patrick, Moreaux Jérôme, Jacquel Arnaud, Fest Thierry

机构信息

Université de Rennes 1, INSERM, Établissement Français du Sang de Bretagne, UMR_S1236, F-35043, Rennes, France.

Laboratoire d'hématologie, Pôle de Biologie, Centre Hospitalier Universitaire, F-35033, Rennes, France.

出版信息

Nat Commun. 2025 Jan 2;16(1):256. doi: 10.1038/s41467-024-55572-5.

Abstract

Our study explores the complex dynamics of the integrated stress response (ISR) axis, highlighting PIM2 kinase's critical role and its interaction with the BCL2 protein family, uncovering key mechanisms of cell survival and tumor progression. Elevated PIM2 expression, a marker of various cancers, often correlates with disease aggressiveness. Using a model of normal and malignant plasma cells, we show that inhibiting PIM2 kinase inhibits phosphorylated BAD production and activates ISR-mediated NOXA expression. This shift towards MCL1 dependence underscores the synergy achieved through combined PIM/MCL1 inhibition, driven largely by ISR-mediated NOXA expression. In mouse xenograft models, dual targeting of PIM2 and MCL1 effectively controls tumor growth-a response reversed by ISR-specific inhibition and upregulation of genes linked to tumor cell dissemination. This work elucidates the molecular intricacies of PIM2 inhibition and its implications for cancer therapy, especially in tumors with elevated PIM2 expression.

摘要

我们的研究探讨了综合应激反应(ISR)轴的复杂动态,突出了PIM2激酶的关键作用及其与BCL2蛋白家族的相互作用,揭示了细胞存活和肿瘤进展的关键机制。PIM2表达升高是多种癌症的一个标志,通常与疾病侵袭性相关。利用正常和恶性浆细胞模型,我们发现抑制PIM2激酶可抑制磷酸化BAD的产生,并激活ISR介导的NOXA表达。这种向依赖MCL1的转变强调了通过联合抑制PIM/MCL1所实现的协同作用,这在很大程度上是由ISR介导的NOXA表达驱动的。在小鼠异种移植模型中,双重靶向PIM2和MCL1可有效控制肿瘤生长——这种反应可被ISR特异性抑制以及与肿瘤细胞播散相关基因的上调所逆转。这项工作阐明了抑制PIM2的分子复杂性及其对癌症治疗的影响,特别是在PIM2表达升高的肿瘤中。

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