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LCP2 介导 SUV39H1 驱动的细胞衰老相关化疗耐药在自然杀伤/T 细胞淋巴瘤中的作用

英文原题:LCP2 mediates SUV39H1-driven cellular senescence-related chemoresistance in natural killer/T-cell lymphoma.

PubMed 2026/05/28(内容时间) Cell Death Dis Q1 · IF 12.2(JCR 2025)

研究概要

本研究首次揭示 LCP2 是 NKTCL 中衰老相关化疗耐药的关键生物标志物,为 senolytics 治疗 R/R NKTCL 的临床转化提供了理论依据。

中文摘要

自然杀伤/T细胞淋巴瘤(NKTCL)是一种侵袭性血液系统恶性肿瘤,预后较差,尤其是复发/难治性(R/R)患者。NKTCL多药耐药的机制尚不清楚,是临床治疗中亟待解决的难题。采用阿霉素(ADM)建立多药耐药NKTCL模型,并通过P16、P21和衰老相关β-半乳糖苷酶(SA-β-gal)等标志物证实细胞衰老。对临床患者血浆和耐药细胞进行蛋白质组学测序,鉴定出LCP2为关键蛋白。磷酸化蛋白质组学、质谱和免疫共沉淀分析揭示了LCP2在介导衰老相关化疗耐药中的作用。采用体内衰老微环境模型评估靶向LCP2介导的轴是否能消除化疗耐药的衰老细胞。结果显示,ADM耐药的NKTCL细胞表现出表型和衰老特征。其中,LCP2表达在R/R NKTCL患者血浆和化疗耐药细胞中显著降低,与衰老标志物SA-β-gal呈负相关。此外,LCP2敲低增强了NKTCL细胞的化疗耐药性、衰老相关分泌表型分泌和G0/G1细胞周期阻滞。机制上,LCP2缺失激活了IQGAP2/LaminA/C/SUV39H1轴,从而驱动DNA损伤、端粒应激诱导的衰老,并促进免疫抑制微环境的形成。重要的是,用Epitalon和Chaetocin靶向该轴可以部分消除治疗诱导的衰老细胞,增强对化疗药物的反应,并在体内一定程度上缓解免疫抑制微环境。总之,本研究首次揭示 LCP2 是 NKTCL 中衰老相关化疗耐药的关键生物标志物,为 senolytics 治疗 R/R NKTCL 的临床转化提供了理论依据。

展开英文摘要原文

Natural killer/T-cell lymphoma (NKTCL) is an aggressive haematological malignancy with poor prognosis, particularly in patients with relapsed/refractory (R/R) disease. The mechanisms underlying multidrug resistance in NKTCL remain unclear and present an urgent challenge that must be addressed during clinical treatment. Multidrug-resistant NKTCL models were established using adriamycin (ADM), and cellular senescence was confirmed by markers including P16, P21, and senescence-associated β-galactosidase (SA-β-gal). Proteomic sequencing of plasma from clinical patients and resistant cells identified LCP2 as a key protein. Phosphoproteomics, mass spectrometry, and co-immunoprecipitation analyses revealed LCP2's role in mediating senescence-associated chemoresistance. An in vivo ageing microenvironment model was used to assess whether targeting the LCP2-mediated axis could eliminate chemoresistant senescent cells. Results show that ADM-resistant NKTCL cells exhibited phenotypic and senescence features. Of these, LCP2 expression was significantly reduced in the plasma of R/R NKTCL patients and in chemoresistant cells, correlating inversely with senescence marker SA-β-gal. Moreover, LCP2 knockdown enhanced the chemoresistance, senescent-associated secretory phenotype secretion, and G0/G1 cell cycle arrest in NKTCL cells. Mechanistically, LCP2 deficiency activated the IQGAP2/LaminA/C/SUV39H1 axis, thus driving DNA damage, telomere stress-induced senescence, and facilitating the formation of an immunosuppressive microenvironment. Importantly, targeting this axis with Epitalon and Chaetocin can partially eliminate therapy-induced senescent cells, enhance response to chemotherapeutics, and alleviate the immunosuppressive microenvironment to a certain extent in vivo. In conclusion, this study is the first to uncover LCP2 as a critical biomarker of senescence-related chemoresistance in NKTCL, providing a theoretical basis for the clinical translation of senolytics for treating R/R NKTCL.

论文信息

作者
Zhang Y、Qian S、Yang Q、Shi Z、Dong M、Wang Z、Yang Z、Wu S
第一作者单位
Department of Oncology, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.China
通讯作者单位
Department of Oncology, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China. qingjiang_c@zzu.edu.cn.China
期刊
Cell death & disease2026 May 28
原文标识
PubMed 42209466 · DOI 10.1038/s41419-026-08897-6