研究概要
我们的研究表明,肿瘤可能通过产生无细胞毒性的GSDMB亚型来阻断和逃避杀伤细胞触发的细胞焦亡。
中文摘要
杀伤性淋巴细胞释放的颗粒酶A切割gasdermin B(GSDMB),在靶向的人类肿瘤细胞中触发细胞焦亡,从而激发抗肿瘤免疫。然而,GSDMB在细胞焦亡中的作用存在争议,既被报道具有抗肿瘤功能,也被报道具有促肿瘤功能。本研究发现,GSDMB的剪接变体在功能上存在差异。GSDMB异构体3和4被切割后产生的N端(NT)片段可引发细胞焦亡,而异构体1、2和5则不能。无功能的异构体存在第6外显子缺失或修饰,因此缺乏稳定的带状基序。该带状结构可能有助于寡聚化的GSDMB-NT插入膜中。与此一致的是,无细胞毒性的GSDMB-NT以显性负性方式阻断了具有细胞毒性的GSDMB-NT所引发的细胞焦亡。在自然杀伤(NK)细胞攻击下,表达GSDMB3的细胞以细胞焦亡方式死亡,表达GSDMB4的细胞以细胞焦亡和凋亡混合方式死亡,而表达GSDMB1/2的细胞仅以凋亡方式死亡。GSDMB4部分抵抗NK细胞触发的切割,提示只有GSDMB3具有完全功能。在所检测的肿瘤细胞系中,GSDMB1-3是最丰富的异构体,并且可被干扰素-γ和化疗药物甲氨蝶呤类似诱导。具有细胞毒性的GSDMB3/4异构体的表达——而非在肿瘤中经常上调的GSDMB1/2异构体——与膀胱癌和宫颈癌更好的预后相关,提示GSDMB3/4介导的细胞焦亡在这些肿瘤中具有保护作用。本研究提示,肿瘤可能通过产生无细胞毒性的GSDMB异构体来阻断和逃避杀伤细胞触发的细胞焦亡。因此,促进通过替代剪接产生具有细胞毒性的GSDMB异构体的治疗策略可能改善抗肿瘤免疫。
展开英文摘要原文
Granzyme A from killer lymphocytes cleaves gasdermin B (GSDMB) and triggers pyroptosis in targeted human tumor cells, eliciting antitumor immunity. However, GSDMB has a controversial role in pyroptosis and has been linked to both anti- and protumor functions. Here, we found that GSDMB splicing variants are functionally distinct. Cleaved N-terminal (NT) fragments of GSDMB isoforms 3 and 4 caused pyroptosis, but isoforms 1, 2, and 5 did not. The nonfunctional isoforms have a deleted or modified exon 6 and therefore lack a stable belt motif. The belt likely contributes to the insertion of oligomeric GSDMB-NTs into the membrane. Consistently, noncytotoxic GSDMB-NTs blocked pyroptosis caused by cytotoxic GSDMB-NTs in a dominant-negative manner. Upon natural killer (NK) cell attack, GSDMB3-expressing cells died by pyroptosis, whereas GSDMB4-expressing cells died by mixed pyroptosis and apoptosis, and GSDMB1/2-expressing cells died only by apoptosis. GSDMB4 partially resisted NK cell-triggered cleavage, suggesting that only GSDMB3 is fully functional. GSDMB1-3 were the most abundant isoforms in the tested tumor cell lines and were similarly induced by interferon-γ and the chemotherapy drug methotrexate. Expression of cytotoxic GSDMB3/4 isoforms, but not GSDMB1/2 isoforms that are frequently up-regulated in tumors, was associated with better outcomes in bladder and cervical cancers, suggesting that GSDMB3/4-mediated pyroptosis was protective in those tumors. Our study indicates that tumors may block and evade killer cell-triggered pyroptosis by generating noncytotoxic GSDMB isoforms. Therefore, therapeutics that favor the production of cytotoxic GSDMB isoforms by alternative splicing may improve antitumor immunity.
论文信息
- 作者
- Kong Q、Xia S、Pan X、Ye K、Li Z、Li H、Tang X、Sahni N
- 单位
- Department of Immunology, University of Texas MD Anderson Cancer Center, Houston, TX 77054, USA.United States
- 文献类型
- 美国政府(非公共卫生署)资助研究 · 美国 NIH 资助研究 · 非美国政府资助研究
- 期刊
- Science immunology2023 Apr 28