Cuproptotic nanoinducer-driven proteotoxic stress potentiates cancer immunotherapy by activating the mtDNA–cGAS–STING signaling

IF 12.9 1区 医学 Q1 ENGINEERING, BIOMEDICAL
Xinying Yu , Bei Li , Jie Yan , Wenxi Li , Hao Tian , Guohao Wang , Songtao Zhou , Yunlu Dai
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Abstract

Proteotoxic stress, caused by the accumulation of abnormal unfolded or misfolded cellular proteins, can efficiently activate inflammatory innate immune response. Initiating the mitochondrial proteotoxic stress might go forward to enable the cytosolic release of intramitochondrial DNA (mtDNA) for the immune-related mtDNA–cGAS–STING activation, which however is easily eliminated by a cell self-protection, i.e., mitophagy. In light of this, a nanoinducer (PCM) is reported to trigger mitophagy-inhibited cuproptotic proteotoxicity. Through a simple metal-phenolic coordination, PCMs reduce the original Cu2+ with the phenolic group of PEG-polyphenol-chlorin e6 (Ce6) into Cu+. Cu+ thereby performs its high binding affinity to dihydrolipoamide S-acetyltransferase (DLAT) and aggregates DLAT for cuproptotic proteotoxic stress and mitochondrial respiratory inhibition. Meanwhile, intracellular oxygen saved from the respiratory failure can be utilized by PCM-conjugated Ce6 to boost the proteotoxic stress. Next, PCM-loaded mitophagy inhibitor (Mdivi-1) protects proteotoxic products from being mitophagy-eliminated, which allows more mtDNA to be released in the cytosol and successfully stimulate the cGAS–STING signaling. In vitro and in vivo studies reveal that PCMs can upregulate the tumor-infiltrated NK cells by 24% and enhance the cytotoxic killing of effector T cells. This study proposes an anti-tumor immunotherapy through mitochondrial proteotoxicity.

Abstract Image

杯状纳米诱导剂驱动的蛋白毒性应激通过激活mtDNA-cGAS-STING信号转导增强癌症免疫疗法的效力
异常折叠或错误折叠的细胞蛋白质积累所导致的蛋白毒性应激可有效激活炎症性先天免疫反应。启动线粒体蛋白毒性应激可能会使线粒体内 DNA(mtDNA)在细胞内释放,从而激活与免疫相关的 mtDNA-cGAS-STING,但这种应激很容易被细胞自我保护(即有丝分裂)所消除。有鉴于此,一种纳米诱导剂(PCM)被报道可触发抑制有丝分裂的杯突蛋白毒性。通过简单的金属-酚配位,PCMs 可将带有 PEG-多酚-氯素 e6(Ce6)酚基的原始铜还原为铜。这样,铜就能与二氢脂酰胺 S-乙酰转移酶(DLAT)产生高结合亲和力,并聚集 DLAT,产生杯突蛋白毒性应激和线粒体呼吸抑制。同时,呼吸衰竭产生的细胞内氧可被 PCM 结合的 Ce6 利用,以增强蛋白毒性应激。接下来,PCM 负载的有丝分裂抑制剂(Mdivi-1)可保护蛋白毒性产物不被有丝分裂清除,从而使更多的 mtDNA 释放到细胞膜中,并成功刺激 cGAS-STING 信号转导。这项研究提出了一种通过线粒体蛋白毒性的抗肿瘤免疫疗法。
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来源期刊
Biomaterials
Biomaterials 工程技术-材料科学:生物材料
CiteScore
26.00
自引率
2.90%
发文量
565
审稿时长
46 days
期刊介绍: Biomaterials is an international journal covering the science and clinical application of biomaterials. A biomaterial is now defined as a substance that has been engineered to take a form which, alone or as part of a complex system, is used to direct, by control of interactions with components of living systems, the course of any therapeutic or diagnostic procedure. It is the aim of the journal to provide a peer-reviewed forum for the publication of original papers and authoritative review and opinion papers dealing with the most important issues facing the use of biomaterials in clinical practice. The scope of the journal covers the wide range of physical, biological and chemical sciences that underpin the design of biomaterials and the clinical disciplines in which they are used. These sciences include polymer synthesis and characterization, drug and gene vector design, the biology of the host response, immunology and toxicology and self assembly at the nanoscale. Clinical applications include the therapies of medical technology and regenerative medicine in all clinical disciplines, and diagnostic systems that reply on innovative contrast and sensing agents. The journal is relevant to areas such as cancer diagnosis and therapy, implantable devices, drug delivery systems, gene vectors, bionanotechnology and tissue engineering.
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