Manipulation of the Unfolded Protein Response by Intracellular Bacterial Pathogens: Mechanisms of ER Hijacking and Therapeutic Implications
文献类型: 外文期刊
作者: Enhui Dai;Dongjie Sun;Yanxiao Zhao;Mengtao Zhang;Yifan Wu;Jiabo Ding
作者机构:
关键词: bacterial infection;effector proteins;endoplasmic reticulophagy;immune response;therapeutic strategy;unfolded protein response
期刊名称: FASEB Journal
ISSN: 0892-6638
年卷期: 2026 年 40 卷 2 期
页码:
收录情况: SCIE(2025版)
摘要: The unfolded protein response (UPR) is a cellular stress response mechanism that maintains endoplasmic reticulum (ER) homeostasis through three signaling pathways mediated by IRE1α, PERK, and ATF6 sensors. While UPR's role in viral infections has been well documented, recent studies indicate that intracellular bacterial pathogens have evolved specific mechanisms to hijack UPR signaling for survival and replication. This review examines UPR manipulation strategies employed by major bacterial pathogens, including Brucella, Mycobacterium tuberculosis, Legionella, and Salmonella. These pathogens utilize effector proteins that target specific UPR components: Brucella effectors VceC, BspB, TcpB, and BspL interact with ER chaperones and ERAD machinery; M. tuberculosis proteins Rv0297, ESAT-6, HBHA, and CdhM disrupt calcium homeostasis and alter ER morphology; Legionella Lpg0519 activates atypical ATF6 signaling; and bacterial toxins including cholera toxin bind IRE1α structural motifs for pathway activation. The molecular basis of UPR manipulation includes direct protein–protein interactions, calcium signaling interference, ER morphological disruption, and transcriptional program modulation. Bacterial hijacking of UPR pathways affects ER-phagy processes and host immune responses, facilitating intracellular survival. UPR pathway components serve as potential targets for host-directed therapy against persistent and drug-resistant infections. Small molecule modulators targeting IRE1α kinase activity, PERK inhibitors, and ATF6 pathway regulators may complement conventional antimicrobial approaches. Characterization of these host-pathogen interactions provides insights for developing therapeutic strategies that target bacterial dependencies on cellular stress responses.
分类号:
- 相关文献
作者其他论文 更多>>
-
Serum Proteomic Profiling Identifies ACSL4 and S100A2 as Novel Biomarkers in Feline Calicivirus Infection
作者:Chunmei Xu;Hao Liu;Haotian Gu;Di Wu;Xinming Tang;Lin Liang;Shaohua Hou;Jiabo Ding;Ruiying Liang
关键词:ACSL4;biomarker;feline calicivirus;S100A2;serum proteomics
-
Genetic manipulation for the non-model protozoan Eimeria: Advancements, challenges, and future perspective
作者:Yaru Li;Jingxia Suo;Ruiying Liang;Lin Liang;Xianyong Liu;Jiabo Ding;Xun Suo;Xinming Tang
关键词:Parasitology;Techniques in genetics
-
Adaptation mechanisms of Brucella abortus to low magnesium ion stress
作者:Hengtai Wang;Lang Lv;Yike Huang;Hui Jiang;Xiaowen Yang;Jiabo Ding;Liangquan Zhu;Lei Xu;Huaiming Sang;Jianxia Jiang;Nan Wang;Peng Li
关键词:Brucella abortus;HP3;Low Mg2+;MgtC;Transcriptome analysis
-
La Sota-vectored recombinant vaccine with chimeric hemagglutinin-neuraminidase for enhanced protection against highly pathogenic pigeon paramyxovirus type 1
作者:Shan Zhang;Xusheng Qiu;Dahu Liu;Ziyan Zhang;Baojing Liu;Guangzhi Zhang;Ruiying Liang;Lin Liang;Xinming Tang;Shaohua Hou;Chan Ding;Jiabo Ding
关键词:antigenic difference;biological characteristic;immune efficacy;Pigeon Paramyxovirus Type 1
-
Comparative analysis of model antigen expression level driven by the microneme protein promoters in Eimeria tenella: HIGH-EXPRESSION LEVEL MICRONEME PROTEIN PROMOTER
作者:Lei Wang;Yanzhen Liao;Jingxia Suo;Lin Liang;Ruiying Liang;Jiabo Ding;Yonglan Yu;Xianyong Liu;Xun Suo;Xinming Tang
关键词:Coccidiosis;Expression level;Microneme protein;Model antigen;Vaccine vector
-
Fusion with CTB enhances the immunogenicity and protective efficacy of MIC2 subunit vaccine against Eimeria tenella
作者:Hanbing Wei;Sixuan Chen;Chen Liu;Huoqing Huang;Xiaoyun Su;Yingguo Bai;Lin Liang;Jiabo Ding;Xinming Tang;Huiying Luo;Bin Yao;Yuan Wang;Honglian Zhang
关键词:Cholera toxin B;Coccidiosis;Eimeria tenella;MIC2;Subunit vaccine
-
A tailored nanocarrier DMON and CpGs synergistically drive the formulation of a highly immunogenic and long-acting vaccine against echinococcosis
作者:Ting Xin;Xintao Gao;Siyi Tao;Chenghao Zhou;Zhifang Zhang;Jiabo Ding;Jiaxi Ru;Yinü Li
关键词:CpG adjuvants;DMON nanoparticle;Early, robust and long-lasting immunity;Echinococcosis;Nanocarrier;Vaccine