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ALDH1A1 promotes immune escape of tumor cells through ZBTB7B-glycolysis pathway
by
Wang, Taoli
, Yang, Yuexin
, Liao, Jingnan
, Wang, Mingyuan
, Chen, Huan
, Wang, Jinjin
, Li, Xi
in
13/1
/ 13/31
/ 14/105
/ 14/19
/ 38/77
/ 42/47
/ 631/67/580
/ 692/53/2422
/ Aldehyde Dehydrogenase 1 Family - genetics
/ Aldehyde Dehydrogenase 1 Family - metabolism
/ Animal models
/ Animals
/ Antibodies
/ Biochemistry
/ Biomedical and Life Sciences
/ Cell Biology
/ Cell Culture
/ Cell Line, Tumor
/ DNA-Binding Proteins - genetics
/ DNA-Binding Proteins - metabolism
/ Female
/ Flow cytometry
/ Gene Expression Regulation, Neoplastic
/ Glycolysis
/ Humans
/ Immune checkpoint inhibitors
/ Immune Checkpoint Inhibitors - pharmacology
/ Immune Checkpoint Inhibitors - therapeutic use
/ Immune evasion
/ Immune system
/ Immunology
/ Immunotherapy
/ L-Lactate Dehydrogenase - genetics
/ L-Lactate Dehydrogenase - metabolism
/ Life Sciences
/ Mice
/ Mice, Nude
/ Monoclonal antibodies
/ Neoplasms - genetics
/ Neoplasms - immunology
/ Neoplasms - pathology
/ PD-1 protein
/ PD-L1 protein
/ Promoter Regions, Genetic - genetics
/ Reporter gene
/ Retinal Dehydrogenase - genetics
/ Retinal Dehydrogenase - metabolism
/ SUMO protein
/ Transcription factors
/ Transcription Factors - genetics
/ Transcription Factors - metabolism
/ Translation
/ Tumor cells
/ Tumor Escape
/ Tumors
/ Xenograft Model Antitumor Assays
2024
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ALDH1A1 promotes immune escape of tumor cells through ZBTB7B-glycolysis pathway
by
Wang, Taoli
, Yang, Yuexin
, Liao, Jingnan
, Wang, Mingyuan
, Chen, Huan
, Wang, Jinjin
, Li, Xi
in
13/1
/ 13/31
/ 14/105
/ 14/19
/ 38/77
/ 42/47
/ 631/67/580
/ 692/53/2422
/ Aldehyde Dehydrogenase 1 Family - genetics
/ Aldehyde Dehydrogenase 1 Family - metabolism
/ Animal models
/ Animals
/ Antibodies
/ Biochemistry
/ Biomedical and Life Sciences
/ Cell Biology
/ Cell Culture
/ Cell Line, Tumor
/ DNA-Binding Proteins - genetics
/ DNA-Binding Proteins - metabolism
/ Female
/ Flow cytometry
/ Gene Expression Regulation, Neoplastic
/ Glycolysis
/ Humans
/ Immune checkpoint inhibitors
/ Immune Checkpoint Inhibitors - pharmacology
/ Immune Checkpoint Inhibitors - therapeutic use
/ Immune evasion
/ Immune system
/ Immunology
/ Immunotherapy
/ L-Lactate Dehydrogenase - genetics
/ L-Lactate Dehydrogenase - metabolism
/ Life Sciences
/ Mice
/ Mice, Nude
/ Monoclonal antibodies
/ Neoplasms - genetics
/ Neoplasms - immunology
/ Neoplasms - pathology
/ PD-1 protein
/ PD-L1 protein
/ Promoter Regions, Genetic - genetics
/ Reporter gene
/ Retinal Dehydrogenase - genetics
/ Retinal Dehydrogenase - metabolism
/ SUMO protein
/ Transcription factors
/ Transcription Factors - genetics
/ Transcription Factors - metabolism
/ Translation
/ Tumor cells
/ Tumor Escape
/ Tumors
/ Xenograft Model Antitumor Assays
2024
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ALDH1A1 promotes immune escape of tumor cells through ZBTB7B-glycolysis pathway
by
Wang, Taoli
, Yang, Yuexin
, Liao, Jingnan
, Wang, Mingyuan
, Chen, Huan
, Wang, Jinjin
, Li, Xi
in
13/1
/ 13/31
/ 14/105
/ 14/19
/ 38/77
/ 42/47
/ 631/67/580
/ 692/53/2422
/ Aldehyde Dehydrogenase 1 Family - genetics
/ Aldehyde Dehydrogenase 1 Family - metabolism
/ Animal models
/ Animals
/ Antibodies
/ Biochemistry
/ Biomedical and Life Sciences
/ Cell Biology
/ Cell Culture
/ Cell Line, Tumor
/ DNA-Binding Proteins - genetics
/ DNA-Binding Proteins - metabolism
/ Female
/ Flow cytometry
/ Gene Expression Regulation, Neoplastic
/ Glycolysis
/ Humans
/ Immune checkpoint inhibitors
/ Immune Checkpoint Inhibitors - pharmacology
/ Immune Checkpoint Inhibitors - therapeutic use
/ Immune evasion
/ Immune system
/ Immunology
/ Immunotherapy
/ L-Lactate Dehydrogenase - genetics
/ L-Lactate Dehydrogenase - metabolism
/ Life Sciences
/ Mice
/ Mice, Nude
/ Monoclonal antibodies
/ Neoplasms - genetics
/ Neoplasms - immunology
/ Neoplasms - pathology
/ PD-1 protein
/ PD-L1 protein
/ Promoter Regions, Genetic - genetics
/ Reporter gene
/ Retinal Dehydrogenase - genetics
/ Retinal Dehydrogenase - metabolism
/ SUMO protein
/ Transcription factors
/ Transcription Factors - genetics
/ Transcription Factors - metabolism
/ Translation
/ Tumor cells
/ Tumor Escape
/ Tumors
/ Xenograft Model Antitumor Assays
2024
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ALDH1A1 promotes immune escape of tumor cells through ZBTB7B-glycolysis pathway
Journal Article
ALDH1A1 promotes immune escape of tumor cells through ZBTB7B-glycolysis pathway
2024
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Overview
The primary impediment to the success of immunotherapy lies in the immune evasion orchestrated by tumors, contributing to the suboptimal overall response rates observed. Despite this recognition, the intricacies of the underlying mechanisms remain incompletely understood. Through preliminary detection of clinical patient tissues, we have found that ALDH1A1 was a key gene for the prognosis of cancer patients and tumor glycolysis. In vitro experiments and tumor formation in nude mice suggested that targeting ALDH1A1 could inhibit tumor growth. Through further analysis of xenograft tumor models in immune-normal mice and flow cytometry, we found that deficiency in ALDH1A1 could promote immune system suppression of tumors in vivo. Specifically, RNA-seq analysis, combined with qPCR and western blot, identified the transcription factor ZBTB7B as downstream of ALDH1A1. The binding sites of the transcription factor ZBTB7B on the LDHA promoter region, which is responsible for regulating the rate-limiting enzyme gene LDHA in glycolysis, were determined using luciferase reporter gene detection and Chip-qPCR, respectively. In addition, the increased SUMOylation of ZBTB7B stabilized its transcriptional activity. Further in vivo and in vitro experiments confirmed that the combination of targeting ALDH1A1 and ZBTB7B with immune checkpoint inhibitors could synergistically inhibit tumors in vivo. Finally, after conducting additional verification of patient tissue and clinical data, we have confirmed the potential translational value of targeting ALDH1A1 and ZBTB7B for tumor immunotherapy. These results emphasize the potential translational significance of targeting ALDH1A1 and ZBTB7B in the realm of tumor immunotherapy. The convergence of ALDH1A1 inhibition and immune checkpoint blockade, particularly with PD-L1/PD-1 mAb, presents a compelling avenue for curtailing tumor immune escape.
Publisher
Nature Publishing Group UK,Springer Nature B.V,Nature Publishing Group
Subject
/ 13/31
/ 14/105
/ 14/19
/ 38/77
/ 42/47
/ Aldehyde Dehydrogenase 1 Family - genetics
/ Aldehyde Dehydrogenase 1 Family - metabolism
/ Animals
/ Biomedical and Life Sciences
/ DNA-Binding Proteins - genetics
/ DNA-Binding Proteins - metabolism
/ Female
/ Gene Expression Regulation, Neoplastic
/ Humans
/ Immune checkpoint inhibitors
/ Immune Checkpoint Inhibitors - pharmacology
/ Immune Checkpoint Inhibitors - therapeutic use
/ L-Lactate Dehydrogenase - genetics
/ L-Lactate Dehydrogenase - metabolism
/ Mice
/ Promoter Regions, Genetic - genetics
/ Retinal Dehydrogenase - genetics
/ Retinal Dehydrogenase - metabolism
/ Transcription Factors - genetics
/ Transcription Factors - metabolism
/ Tumors
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