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Glutathione reductase deficiency potentiates the immunogenicity of ferroptosis and cuproptosis via amplified reactive oxygen species accumulation and cGAS-STING pathway activation.

BACKGROUND: Cancer remains a major therapeutic challenge due to drug resistance and metastasis, processes driven by oxidative stress and redox imbalance. Targeting this vulnerability through ferroptosis (iron-dependent lipid peroxidation) and cuproptosis (copper-driven mitochondrial dysfunction), two ROS-mediated cell death pathways, offers a promising therapeutic strategy. However, clinical translation is hindered by incomplete understanding of their redox regulation and limited immunogenicity. METHODS: A genome-wide CRISPR knockout screen was performed to identify key regulators of ferroptosis. Genetic depletion or pharmacological inhibition of candidate genes was evaluated across multiple cancer cell lines for sensitivity to ferroptosis inducer RSL3 and the cuproptosis inducer elesclomol (Es). Antitumor efficacy was assessed in xenograft, orthotopic, metastatic, and syngeneic mouse models, alone or combined with immune checkpoint inhibitors. Mechanistic studies also examined ROS production, mitochondrial stress, mitochondrial DNA release, cGAS-STING activation, and immune responses within the tumor microenvironment. RESULTS: Glutathione reductase (GSR), a central enzyme maintaining reduced glutathione (GSH) homeostasis, was identified as the top suppressor of ferroptosis. GSR knockout or pharmacological inhibition markedly sensitized diverse cancer cell lines to RSL3-induced ferroptosis, while GSR overexpression conferred resistance. Strikingly, GSR depletion also enhanced sensitivity to cuproptosis triggered by the copper ionophore Es. In multiple in vivo tumor models, GSR inhibition synergizes with RSL3 or Es to suppress tumor growth, inhibit lung metastasis, and prolong survival. Mechanistically, GSR deficiency amplified ROS production, induced mitochondrial stress, and triggered the cytosolic mitochondrial DNA release under ferroptotic or cuproptotic stress, activating the cGAS-STING pathway in vitro and in vivo. This increased inflammatory cytokine production, promoted immunogenic cell death, and enhanced the release of damage-associated molecular patterns (DAMPs), including HMGB1. Together, GSR inhibition combined with a ferroptosis or cuproptosis inducer transformed the tumor microenvironment into a highly immune stimulatory state, thereby enhancing the efficacy of immune checkpoint blockade through increased dendritic cell activation and T-cell infiltration and activation. CONCLUSIONS: GSR represents a key molecular node connecting and modulating ferroptosis and cuproptosis through redox regulation. Targeting GSR amplifies ROS-mediated immunogenic cell death, triggers cGAS-STING activation in cancer cells, and enhances the efficacy of cancer immunotherapy, providing a promising redox-based therapeutic strategy.

Ferroptosis

Mycobacterium tuberculosis Rv0158 negatively regulates the cGAS-STING pathway mediated type I IFN production and enhances intracellular survival.

BACKGROUND: Type I interferons (IFN) play an important role in the host defense against Mycobacterium tuberculosis (M. tb) infection and disease pathogenesis. Although M. tb has evolved several mechanisms to evade host immune surveillance, the mechanism used to regulate type I IFN expression remains unclear. METHODS: In this study, genome-wide high-throughput loss-of-function screening was performed to screen M. tb determinants that regulate the Type I IFN pathway, and the role for M. tb Rv0158 in inhibiting type I IFN responses was identified in vitro and in vivo. RESULTS: The M. tb coding protein Rv0158 was identified among many transposon (Tn) insertion mutants, which increased the expression of IFN-β and some pro-inflammatory cytokines. The results suggested that Rv0158 is associated with reduced STING protein levels and suppression of cGAS-STING-mediated innate immune responses, suggesting that Rv0158 may indirectly facilitate STING degradation or modulate its stability through host-interacting partners. Rv0158 also down-regulated the transcription of interferon-stimulated genes (ISGs) and increased the bacterial load in mice. CONCLUSION: Overall, our finding identified a new bacterial factor Rv0158, these results reveal an important role for M. tb Rv0158 in inhibiting Type I IFN responses, which improves our understanding of the immune evasion mechanisms of M. tb.

Immune escape

Evaluation of bee sting allergy by skin tests and serum antibody assays.

We studied 55 subjects who had had anaphylactic reactions to bee stings within the previous 3 years. 38 out of 54 tested had IgE antibody to honey bee venom (HBV) as measured by radioallergosorbent test (RAST). On skin testing, 30 out of 34 had a positive test to HBV. Of these, 26 had a positive RAST. A positive skin test to HBV at high dilution or else a high anti-HBV RAST score appeared to identify those who, in a 6-month follow-up period, were at risk of developing further anaphylaxis following bee stings or immunotherapy. Of the two tests, RAST appeared to be the less sensitive. Measurements of IgG antibody to phospholipase A were seldom available for the period immediately preceding an anaphylactic episode and proved to be a poor means of predicting the liability to bee sting anaphylaxis in subsequent months.

Anaphylaxis

Bee-sting anaphylaxis in childhood.

The syndrome of bee-sting anaphylaxis is described. Children who have suffered crescendo reactions to previous bee stings, especially children with a history of asthma, are significantly at risk. Desensitization is required in such cases; adrenaline should be kept in the home, and parents should be trained in its emergency use. The immunological mechanisms of bee-sting anaphylaxis are described. The striking seasonal incidence of anaphylaxis suggests that pollen or plant products which are incorporated in the venom may also be important in its genesis; it suggests also that antigens prepared from either whole-body or pure-venom extracts should be prepared from bees which are collected in late spring.

Aerosols

tRNA m1A modification orchestrates STING translation in macrophages to enhance antitumor immunity and CAR-macrophage immunotherapy.

Tumor-associated macrophages (TAMs) play crucial roles in tumor progression. However, the mechanisms underlying the posttranscriptional regulation of TAMs remain largely unknown. Here, we demonstrated that Trmt61a, the "writer" enzyme of tRNA N1-methyladenosine (m1A) modification, is highly expressed in proinflammatory macrophages in tumor microenvironment. We generated conditional knockout (KO) mice for Trmt61a and observed that Trmt61a deletion in macrophages significantly promoted tumor growth. Mechanistically, we identified that m1A maintains the translation of STING, enhances STING-TBK1-IFN-β signaling in macrophages and therefore suppresses tumor cell growth. We further generated TRMT61A-overexpressing human iPSC-derived CAR-macrophage and demonstrated that human TRMT61A effectively promoted antitumor CAR-macrophage therapy in vivo. Collectively, our findings reveal a novel regulatory mechanism of tRNA m1A modification in macrophages, highlighting the antitumor therapeutic potential of targeting tRNA m1A modification in macrophages.

Animals

Enzyme-linked immunosorbent assay of allergen-specific IgG antibodies in bee sting allergic patients hyposensitized with pure bee venom.

An ELISA is presented for detection of IgG antibodies to bee venom. By this method, sera of 11 bee sting allergic patients, who were treated with rapid hyposensitization with pure bee venom, were tested. The highest antibody titers were observed after 30 days of treatment, a maximum rise of 7.4 +/- 1.5 log 2-titer steps. Pure bee venom is shown to be more potent immunologically than whole body bee extract. Prediction of the clinical success, measured by tolerance to a bee sting challenge, is not yet possible using venom specific IgG determinations.

Adolescent

Use of RAST technique in wasp sting hypersensitivity. Cross-reactions between various insect antigens are specially considered.

Clinical hypersensitivity to wasp stings was found to be fairly well correlated with the presence of serum IgE-antibodies against yellow jacket venom as detected by the RAST technique. Such antibodies were never found in a control group of non-allergic blood donors, but they were detected in a surprisingly large proportion of patients with bee sting allergy without known allergic reactions to wasps. Studies using RAST inhibition technique failed to prove cross-reactions between bee and wasp venoms. Considerably better results were obtained when venom antigens instead of whole body antigens were used in the RAST. RAST inhibition studies suggested that IgE-antibodies detected with RAST using whole body antigen are directed against bee venom constituents in the whole body extract.

Antibodies

Comparison of skin tests and RAST for the diagnosis of bee sting allergy.

Skin tests and estimation of specific IgE-antibodies by the RAST are evaluated as diagnostic procedures in bee sting hypersensitivity with the followiny extracts. (2) With bee venom results of skin tests and RAST correspond in 82%, with bee wholebody extracts in 68%. (3) Both with skin tests and the RAST with bee venom a good discrimination between patients with bee sting hypersensitivity and non-allergic controls is observed. Skin tests with bee venom are somewhat more sensitive than bee venom-RAST. (4) With the careful skin test procedure chosen, no adverse reactions were observed.

Allergens

Diagnosis of allergy to stinging insects by skin testing with Hymenoptera venoms.

SKin testing was done on 30 patients with a history of anaphylactic reactions after a Hymenoptera sting and on 30 control subjects. The patients all had positive basophilhistamine release to one or more venoms on challenge with the specific venoms used for skin testing (honey bee, yellow jacket, white-faced hornet, yellow hornet, and Polistes). At 0.1 mug of venom/ml and at 1.0 mug of venom/ml, 75% and 100%, respectively, of the sensitive patients had a positive skin test. There was a significant (P less than 0.001) correlation between skin test and histamine release results. Of the 150 skin tests in control patients, only 1 was positive. Venom skin tests provide, for the first time, a simple, readily available technique to accurately diagnose allergy to stinging insects.

Clinical Trials as Topic

The use and interpretation of RAST to stinging insect venoms.

Quality controlled, standardized RAST systems for five stinging insect venoms are described. These systems were evaluated using 375 sera from insect reactive patients from six diverse geographic regions. Ninety-four percent of patients with recent histories of systemic allergic reactions to stings were positive to at least one venom while 4 percent of normal local reactors were positive. The cross reactions between honey bee and vespid venoms were studied by RAST inhibition. A quantitative method for interpretation of venom RAST is presented to account for cross-reactivities and the approach to diagnosis is discussed.

Animals

Maintenance of protection in patients treated for stinging insect hypersensitivity: a booster injection program.

A program of annual booster injections of mixed stinging insect whole body extract was given to 133 patients who had previously had three years or more of immunological treatment for systemic reactions of Hymenoptera stings. Two patients who were restung had mild symptoms that were evidenced by a few scattering hives with itching. No patient on a dose of 0.2 ml of 1:10 dilution extract had any reaction when they were restung. It is believed, therefore, that this program merits continuation with that dosage for a period long enough to determine its true effectiveness. There is some indication that this is an improvement over the program which stops treatment after three years. There is further support for the belief that this condition and the treatment are dose related. There is also evidence for my belief that this sensitivity, and the treatment, differ from the usual atopic sensitivity in antibody-antigen response.

Evaluation Studies as Topic

The hemoglobin of the common sting-ray, Dasyatis sabina: structural and functional properties.

1. The hemoglobin of the sting-ray, Dasyatis sabina, is both polymorphic and heterogeneous; three components predominate. 2. One major component has two kinds of polypeptide chain, of which one, presumably an alpha-chain, has a blocked NH2-terminus and an arginyl COOH-terminus, whereas carboxypeptidases A and B release tyrosine and histidine from the COOH-terminus of the beta-chain. 3. The amino acid sequence of the beginning NH2-terminal segment of the beta-chain of the major component has been determined. 4. The hemoglobin of the sting-ray, Dasyatis sabina, is highly resistant to urea and does not dissociate readily into subunits. 5. Oxygen binding by the hemoglobin is not affected by organic phosphates or high concentrations of either NaCl or urea. 6. The hemoglobin does not polymerize beyond tetramers. 7. Cooperativity, as monitored by n in the Hill equation, is pH-dependent and maximal between pH 8.5 and 9.0. 8. The hemoglobin has a large Bohr effect; the oxygen affinity is 16 times higher at pH 10 than at pH 6.5.

Animals

VHL synthetic lethality screens uncover CBF-β as a negative regulator of STING.

Clear cell renal cell carcinoma (ccRCC) represents the most common form of kidney cancer and is typified by biallelic inactivation of the von Hippel-Lindau (VHL) tumour suppressor gene. Here, we undertake genome-wide CRISPR/Cas9 screening to reveal synthetic lethal interactors of VHL, and uncover that loss of Core Binding Factor β (CBF-β) causes cell death in VHL-null ccRCC cell lines and impairs tumour establishment and growth in vivo. This synthetic relationship is independent of the elevated activity of hypoxia inducible factors (HIFs) in VHL-null cells, but does involve the RUNX transcription factors that are known binding partners of CBF-β. Mechanistically, CBF-β loss leads to upregulation of type I interferon signalling, and we uncover a direct inhibitory role for CBF-β at the STING locus controlling Interferon Stimulated Gene expression. Targeting CBF-β in kidney cancer both selectively induces tumour cell lethality and promotes activation of type I interferon signalling.

Humans

Unusual reactions following insect stings. Clinical features and immunologic analysis.

Fifteen patients were studied who had unusual reactions following insect stings. These included serum sickness, neurologic disease, renal disease, and delayed hypersensitivity-type reactions. The clinical features are briefly outlined. Measurements were made of serum venom-specific IgE and IgG antibodies. These antibodies were present in some patients and in these instances suggested an immunologic pathogenesis for the reactions. Alternative etiologies for the unusual reactions are also discussed.

Acute Kidney Injury

Inhibiting macrophage-derived lactate transport restores cGAS-STING signalling and enhances antitumour immunity in glioblastoma.

Glioblastoma (GBM) is a malignancy with a complex tumour microenvironment (TME) dominated by GBM stem cells (GSCs) and infiltrated by tumour-associated macrophages (TAMs) and exhibits aberrant metabolic pathways. Lactate is a critical glycolytic metabolite that promotes tumour progression; however, the mechanisms of lactate transport and lactylation in the TME of GBM remain elusive. Here we show that lactate is transported from TAMs to GSCs via MCT4-MCT1. TAMs provide lactate to GSCs, promoting GSC proliferation and inducing lactylation of the non-homologous end joining protein KU70 at lysine 317 (K317), which inhibits cGAS-STING signalling and remodels the immunosuppressive TME. Inhibition of lactate transport or targeting the lactylation of KU70, in combination with the immune checkpoint blockade, demonstrates additive therapeutic benefits in immunocompetent xenograft models. This study unveils TAM-derived lactate and lactylation as critical regulators in GSCs to enforce an immunosuppressive microenvironment, opening avenues for developing combinatorial therapy for GBM.

Glioblastoma

Immunotherapy in bee sting hypersensitivity. Bee venom versus wholebody extract.

Fifty-six patients with serologically confirmed bee sting hypersensitivity were treated for 1-3 years with either bee venom (BV) (31 patients) or wholebody extract (WBE) (25 per cent of re-exposed patients on BV-therapy showed a diminished reaction and 75% no reaction. Thirty-three per cent of re-exposed patients on WBE-therapy developed an unchanged or worse reaction, 42% a diminished reaction and 25% no reaction at all. An initial rise in BV-specific IgE was observed in BV-treated patients, whereas IgE levels after 1 year of treatment lay significantly below pretreatment values in both treatment groups. BV-specific IgG increased markedly in patients on BV-therapy and decreased slightly in those on WBE-therapy. The initial IgE increase induced by BV-therapy was insignificant in patients with high pretreatment levels of specific IgG-antibodies. Similarly, re-exposed patients with high BV-specific IgG showed no IgE increase, whereas a substantial rise in specific IgE was observed in those with low IgG. On the basis of clinical and serological results immunotherapy with BV is considered to be clearly superior to immunotherpy with WBE.

Adult

Desensitization of patients with bee sting allergy using pure bee venom.

Forty patients who had previously experienced severe systemic reactions after a bee sting were desensitized using pure bee venom. A modified 'Rush' regimen was employed whereby patients received two injections a week and reached maximal desensitization in 5 weeks. Eleven patients have subsequently been stung again and have developed no generalized reaction. Although this form of desensitization is considered to be highly effective in protecting sensitive patients, both generalized and local side-effects were frequent. Maintenance desensitizing injections are required every month for an indefinite period. It is concluded that desensitization with pure been venom should be undertaken only in highly selected sensitive patients, and should be performed under strict control.

Adolescent

Comparison of the radioallergosorbent test to intradermal skin testing in the diagnosis of stinging insect venom allergy.

RAST and skin tests were compared for five venoms in a group of 60 patients with histories of stinging insect allergy. Twelve patients were skin test negative to all venoms and also RAST negative. The 48 skin test positive patients gave an 88% correlation of RAST and skin test with 92% of the skin test positive patients RAST positive and 82% of the RAST positive patients skin test positive. If patients strongly positive to honey bee showing positive RAST to vespids with negative skin test were not counted, then 91% of the RAST positive patients were skin positive. The term "false" should not be used in relating RAST to skin test results without supporting challenge evidence.

Bee Venoms